Post on 10-May-2018
Test Pattern : NEET Test Date : 21 - 07 - 2016
TEST SYLLABUS : FULL SYLLABUS
1. A seat marked with Reg. No. will be allotted to each student. The student should ensure that he/she occupies the correct seat
only. If any student is found to have occupied the seat of another student, both the students shall be removed from the examinationand shall have to accept any other penalty imposed upon them.
izR;sd fo|kFkhZ dk jftLVªs'ku ua- ds vuqlkj LFkku fu;r gS rFkk os vius fu;r LFkku ij gh cSBsaA ;fn dksbZ fo|kFkhZ fdlh nwljs fo|kFkhZ ds LFkku
ij cSBk ik;k x;k rks nksuksa fo|kfFkZ;ksa dks ijh{kk d{k ls ckgj dj fn;k tk,xk vkSj nksuksa dks dksbZ vU; tqekZuk Hkh Lohdk;Z gksxkA
2. Duration of Test is 3 Hours and Questions Paper Contains 180 Questions. The Max. Marks are 720.
ijh{kk dh vof/k 3 ?k.Vs gS rFkk iz'u i= esa 180 iz'u gSaA vf/kdre vad 720 gSaA
3. Student can not use log tables and calculators or any other material in the examination hall.
fo|kFkhZ ijh{kk d{k esa yksx Vscy] dsYdwysVj ;k fdlh vU; lkexzh dk mi;ksx ugha dj ldrk gSA
4. Student must abide by the instructions issued during the examination, by the invigilators or the centre incharge.
ijh{kk ds le; fo|kFkhZ dks ifjoh{kd }kjk fn;s x;s funsZ'kksa dh ikyuk djuk vko';d gSA
5. Before attempting the question paper ensure that it contains all the pages and that no question is missing.
iz'u i= gy djus ls igys fo|kFkhZ vk'oLr gks tk, fd blesa lHkh ist layXu gSa vFkok ughaA
6. Each correct answer carries 4 marks, while 1 mark will be deducted for every wrong answer. Guessing of answer is harmful.
izR;sd lgh mÙkj ds 4 vad gSaA izR;sd xyr mÙkj ij 1 vad dkV fy;k tk,xkA mÙkj dks vuqeku ls Hkjuk gkfudkjd gks ldrk gSA
7. A candidate has to write his / her answers in the OMR sheet by darkening the appropriate bubble with the help of Blue / Black BallPoint Pen only as the correct answer(s) of the question attempted.
ijh{kkFkhZ dks gy fd;s x;s iz'u dk mÙkj OMR mÙkj iqfLrdk esa lgh LFkku ij dsoy uhys @ dkys ckWy ikWbUV isu ds }kjk mfpr xksys dks xgjk
djds nsuk gSA
8. Use of Pencil is strictly prohibited.
isfUly dk iz;ksx loZFkk oftZr gSA
Your Target is to secure Good Rank in NEET- II 2016
Do not open this Test Booklet until you are asked to do sobl ijh{kk iqfLrdk dks tc rd uk [kksys a tc rd dgk u tk,sA
Important Instructions / egRoiw.kZ funsZ'k
MOCK TEST : NEET - II 2016
Paper Code : 1001CM370715012
Corporate Office : ALLEN CAREER INSTITUTE, “SANKALP”, CP-6, Indra Vihar, Kota (Rajasthan)-324005
+91-744-5156100 info@allen.ac.in www.allen.ac.in
MOCK TEST/ Target: Pre-Medical / NEET-II-2016/21-07-2016
1/411001CM370715012
BEWARE OF NEGATIVE MARKINGHAVE CONTROL ¾® HAVE PATIENCE ¾® HAVE CONFIDENCE Þ 100% SUCCESS
1. A ball of mass m, travelling with velocity ˆ ˆi 3 j-receives an impulse of magnitude 2m in thenegative x-direction. What is the velocity of theball immediately after the impulse ?
(1) ˆ ˆi j- + (2) ˆ ˆi 3 j- +
(3) ˆ ˆi 3 j- - (4) ˆ ˆi 3 j-2. Three prisms 1,2 and 3 have the prism angle
A = 60°, but their refractive indices arerespectively 1.4, 1.5 and 1.6.If d 1, d 2,d 3, be theirrespective angles of deviation then :–(1) d3 > d2 > d 1 (2) d1 > d2 > d3
(3) d1 = d2 = d3 (4) d2 > d1 > d3
3. Find effective capacitance between L & N
(1) C (2) 2C (3) 4C (4) 8C4. Figure shows a balanced Wheatstone's bridge
G
S=10W P=100WS=10W
R=5WR=5W Q=50W
A
D
B
C
(A) If P is slightly increased, the current in thegalvanometer flows from C to A
(B) If P is slightly increased, the current in thegalvanometer flows from A to C
(C) If Q is slightly increased, the current in thegalvanometer flows from C to A
(D) If Q is slightly increased, the current in thegalvanometer flows from A to C
Select correct option :-(1) A, B (2) B, C (3) C, D (4) A, D
1. m nzO;eku dh ,d xsan ( ˆ ˆi 3 j- ) osx ls pyrs gq, ½.kkRed
x-fn'kk esa 2m ifjek.k dk vkosx izkIr djrh gSA vkosx
ds rqjUr ckn xsan dk osx gS ?
(1) ˆ ˆi j- + (2) ˆ ˆi 3 j- +
(3) ˆ ˆi 3 j- - (4) ˆ ˆi 3 j-
2. rhu fizTeksa 1,2 o 3 ds fizTe dks.k A = 60° ijUrq mudsviorZukad Øe'k% 1.4, 1.5 rFkk 1.6 gSA ;fn d 1, d 2,d 3,
muds fopyu dks.k gks rks –
(1) d3 > d2 > d 1 (2) d1 > d2 > d3
(3) d1 = d2 = d3 (4) d2 > d1 > d3
3. L rFkk N ds e/; izHkkoh /kkfjrk dk eku Kkr djsa
(1) C (2) 2C (3) 4C (4) 8C4. fp= esa ,d larqfyr OghVLVksu lsrq n'kkZ;k x;k gSA
G
S=10W P=100WS=10W
R=5WR=5W Q=50W
A
D
B
C
(A) ;fn P dk eku FkksM+k lk c<+k fn;k tk;s rks xsYosuksehVjesa /kkjk C ls A dh vksj izokfgr gksxhA
(B) ;fn P dk eku FkksM+k lk c<+k fn;k tk;s rks xsYosuksehVjesa /kkjk A ls C dh vksj izokfgr gksxhA
(C) ;fn Q dk eku FkksM+k lk c<+k fn;k tk;s rks xsYosuksehVjesa /kkjk C ls A dh vksj izokfgr gksxhA
(D) ;fn Q dk eku FkksM+k lk c<+k fn;k tk;s rks xsYosuksehVjesa /kkjk A ls C dh vksj izokfgr gksxhA
lgh fodYi pqfu, :-(1) A, B (2) B, C (3) C, D (4) A, D
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MOCK TEST : NEET-II- 2016/21-07-2016
1001CM370715012
5. Three tuning forks of frequencies 200, 203 and 207Hertz are sounded together. Find out the beat fre-quency.(1) 10 (2) 11(3) 12 (4) 13
6. A metallic rod of cross-sectional area 20 cm2, withthe lateral surface insulated to prevent heat loss,has one end immersed in boiling water and theother in ice water mixture. The heat conductedthrough the rod melts the ice at the rate of 1 gmfor every 84 sec. The thermal conductivity of therod is 160 Wm–1 K–1. Latent heat of ice = 80 cal/gm, 1 cal = 4.2 joule. What is the length (in m)of the rod?(1) 4 (2) 8(3) 12 (4) 16
7. Two ideal gases A & B are going throughadiabatic process. Choose the correct option.
AB
lnV
lnP
(1) both A & B are monoatomic(2) both A & B are diatomic(3) B is diatomic, A is monoatomic(4) B is monoatomic, A is diatomic
8. A small block slides with velocity 0.5 gr on the
horizontal frictionless surface as shown in thefigure. The block leaves the surface at point C.Calculate angle q in the figure.
v0 BA
q rO r
C
(1) 1 5cos
6- (2) 1 3
cos4
-
(3) 1 1cos
2- (4) 1 3
cos5
-
9. Four thin uniform rods each of length L and massm are joined to form a square. The moment ofinertia of square about an axis along its onediagonal is :
(1)2mL
6(2) 22
mL3
(3) 23mL
4(4)
24mL3
5. 200, 203 o 207 gVZ~t vkofÙk ds rhu f}Hkqt Lofj=ksa dks,d lkFk /ofur fd;k tkrk gSA foLian vko`fÙk Kkrdhft,A(1) 10 (2) 11(3) 12 (4) 13
6. ,d /kkfRod NM+ dk vuqizLFk dkV {ks=Qy 20 cm2 gSAbldh ik'oZ lrg ls Å"ek dh gkfu ugha gksrh gSA bl NM +ds ,d fljs dks mcyrs gq, ikuh esa rFkk nwljs dks cQZ rFkkikuh ds feJ.k esa j[kk tkrk gSA NM + ls Å"ek dk pkyugksrk gS tks cQZ dks fi?kykrh gSA izR;sd 84 s esa 1 g cQZfi?kyrh gSA NM+ dh Å"eh; pkydrk 160 Wm–1K–1, cQZdh xqIr Å"ek =80 cal/gm] 1 cal = 4.2 J gSA NM+ dhyEckbZ ehVj esa Kkr dhft;sA
(1) 4 (2) 8
(3) 12 (4) 16
7. nks vkn'kZ xSlsa A o B :¼ks"e izØe ls gksdj xqtjrh gSAlgh fodYi pqfu;sA
AB
lnV
lnP
(1) A rFkk B nksuksa ,dijek.kqd gSaA(2) A rFkk B nksuksa f}ijek.kqd gSaA(3) B f}ijek.kqd rFkk A ,dijek.kqd gSA(4) B ,dijek.kqd rFkk A f}ijek.kqd gSA
8. fp=kuqlkj ?k"kZ.k jfgr {kSfrt lrg ij 0.5 gr ds osx ls
,d NksVk CykWd fQlyrk gSA fcUnq C ij CykWd lrgdks NksM + nsrk gSA fp= esa iznf'kZr dks.k q dh x.kukdjksA
v0 BA
q rO r
C
(1) 1 5cos
6- (2) 1 3
cos4
-
(3) 1 1cos
2- (4) 1 3
cos5
-
9. L yEckbZ rFkk m nzO;eku dh pkj iryh le:i NM+ks dks,d oxZ ds :i es tksM+k x;k gSA blds ,d fod.kZ ds vuqfn'k
v{k ds ifjr% oxZ dk tM+Ro vk?kw.kZ gksxk :
(1)2mL
6(2) 22
mL3
(3) 23mL
4(4)
24mL3
MOCK TEST/ Target: Pre-Medical / NEET-II-2016/21-07-2016
3/411001CM370715012
10. Assuming the diodes to be of silicon with forwardresistance zero, the current I in the followingcircuit is
E=20V
I 2kW
(1) 0 (2) 9.65 mA(3) 10 mA (4) 10.36 mA
11. X and Y are large, parallel conducting platesclosed to each other. Each face has an area A. Xis given a charge Q. Y is without any charge.Points A, B and C are as shown in figure. Choosethe wrong statement :
X
A
Y
B C
(1) The field at B is 0
Q
2 Ae
(2) The field at B is 0
Q
Ae
(3) The fields at A, B and C are of the same magnitude(4) The field at A and C are of the same magnitude,
but in opposite directions12. The radius of a spherical nucleus as measured by
electron scattering is 3.6 fm. What is the likelymass number of the nucleus ?(1) 27 (2) 40(3) 56 (4) 120
13. The coercivity of a bar magnet is 2 × 103 A/m.It is placed lengthwise in an ideal solenoid oflength 15 cm having 150 turns. Calculate thecurrent required in the solenoid to fullydemagnetise the magnet :-(1) 1A (2) 2A(3) 3A (4) 4A
10. eku fyft;s fd Mk;ksM flfydu ds gS rFkk vxz izfrjksèk'kwU; gS rks fuEu ifjiFk esa /kkjk I dk eku gksxk\
E=20V
I 2kW
(1) 0 (2) 9.65 mA
(3) 10 mA (4) 10.36 mA
11. nks cM+h lekUrj pkyd IysVsa X rFkk Y ,d nwljs ds fudVgSa] izR;sd Qyd dk {ks=Qy A gSA X dks Q vkos'k fn;k
tkrk gSA Y ij dksbZ vkos'k ugha gSA fp=kuqlkj A, B rFkk
C fcUnq iznf'kZr gSa rks xyr dFku pqus %&
X
A
Y
B C
(1) B ij fo|qr {ks= 0
Q
2 Ae gSA
(2) B ij fo|qr {ks=0
Q
Ae gSA
(3) A, B rFkk C ij leku ifjek.k ds fo|qr {ks= gksaxsA
(4) A rFkk C ij ,d leku ifjek.k ijUrq foijhr fn'kk
ds fo|qr {ks= gksaxsA12. izdhf.kZr bysDVªkWu }kjk ekih xbZ xksyh; ukfHkd dh f=T;k
3.6 fm gSA ukfHkdks a dh lEHko æO;eku la[;k D;kgksxh\(1) 27 (2) 40(3) 56 (4) 120
13. ,d N+M pqEcd dh fuxzkfgrk 2 × 103 A/m gSa bls150 ?ksjks okyh 15cm yEckbZ dh vkn'kZ ifjukfydk esayEckbZ ds vuqfn'k j[kk x;k gSa pqEcd dks iw.kZr;k fopqEcfdrdjus ds fy, ifjukfydk esa vko';d /kkjk dh x.kukdjs :-(1) 1A (2) 2A(3) 3A (4) 4A
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MOCK TEST : NEET-II- 2016/21-07-2016
1001CM370715012
14. A string with a mass density of 4 × 10–3 kg/m isunder tension of 360 N and is fixed at both ends.One of its resonance frequencies is 375 Hz. Thenext higher resonance frequency is 450 Hz. Findthe mass of the string.(1) 2 × 10–3 kg (2) 4 × 10–3 kg(3) 8 × 10–3 kg (4) 6 × 10–3 kg
15. A vessel of volume 8.3 × 10–3 m3 contains an idealgas at temperature 27°C and pressure 200 kPa. Thegas is allowed to leak till the pressure falls to100 kPa and temperature increases to 327°C. Whatis the amount of gas in moles will be leaked out?
(1) 1
mol2
(2) 1
mol4
(3) 1
mol8
(4) 3
mol2
16. A glass tube of uniform
2 1
internal radius (r) has avalve separating the twoidentical ends. Initially,the valve is in a tightlyclosed position.End 1 has a hemispherical soap bubble of radiusr. End 2 has sub–hemispherical soap bubble asshown in figure. Just after opening the valve,(1) Air from end 1 flows towards end 2. No change
in the volume of the soap bubbles.(2) Air from end 1 flows towards end 2. Volume
of the soap bubble at end 1 decreases.(3) No change occurs(4) Air from end 2 flows towards end 1. Volume
of the soap bubble at end 1 increases.17. A particle is moving in a circular orbit with a
constant tangential acceleration. After 2 s fromthe beginning of motion, angle between the totalacceleration vector and the radius R becomes 45°.What is the angular acceleration of the particle?
aT®
aCP®
Center
a®
45°
(1) 14
(2) 12
(3) 1 (4) 2
14. 4 × 10–3 kg/m æO;eku ?kuRo dh ,d Mksjh esa 360 N
dk ruko gS vkSj nksuksa fljksa ij ca/kh gqbZ gSA bldh ,d
vuquknh vkofÙk 375 Hz gSA bldh vxyh mPp vuquknh
vkofÙk 450 Hz gSA Mksjh dk æO;eku Kkr dhft,A
(1) 2 × 10–3 kg (2) 4 × 10–3 kg
(3) 8 × 10–3 kg (4) 6 × 10–3 kg
15. ,d crZu 8.3 × 10–3 m3 vk;ru 27°C rki vkSj 200 kPa
nkc ij ,d vkn'kZ xSl j[krk gSA nkc 100 kPa rd fxjus
rd rFkk rki 327°C gksus rd xSl dk fjlko gksrk jgrk
gSA xSl dh fdruh eksy ek=k fjlkfor gks tk;sxh ?
(1) 1
mol2
Z(2) 1
mol4
(3) 1
mol8
(4) 3
mol2
16. dkap dh ,d ufydk] ftldh
2 1
,dleku vkarfjd f=T;k (r)gS] ds nksuksa fljksa dks] tks ,dtSls gSa] ,d okYo ds }kjk iFkdfd;k x;k gSA 'kq: esa ;g okYodldj cUn gSA fljk 1 ij f=T;k r dk ,d v/kZxksyh;lkcqu dk cqycqyk gSA fljk 2 ij ,d mi&v¼Z xksyh;(sub-hemispherical) lkcqu dk cqycqyk gS (fp= ns[ksa)AokYo dks [kksyus ds rqjar ckn(1) gok] fljs 1 ls fljs 2 dh vksj cgrh gSA cqycqyksa ds
vk;ru esa dksbZ ifjorZu ugha gksrk gSA(2) gok] fljs 1 ls fljs 2 dh vksj cgrh gSA fljs 1 ij
cqycqys dk vk;ru ?kVrk gSA(3) dksbZ ifjorZu ugha gksrk gSA(4) gok] fljs 2 ls fljs 1 dh vksj cgrh gSA fljs 1 ij
cqycqys dk vk;ru c<+rk gSA17. ,d d.k fu;r Li'kZ js[kh; Roj.k ls oÙkkdkj d{kk esa xfr'khy
gSA xfr izkjEHk djus ds 2 s i'pkr~ dqy Roj.k lfn'k rFkk
f=T;k R ds e/; dks.k 45° gks tkrk gSA d.k dk dks.kh;
Roj.k D;k gS\
nar
atr
ra
center
45°
(1) 14
(2) 12
(3) 1 (4) 2
MOCK TEST/ Target: Pre-Medical / NEET-II-2016/21-07-2016
5/411001CM370715012
18. A wire is bent as a parabolic curve and kept in thex-y plane. The curve can be described by theequation x2 = 6y. The wire carries a current i = 2A.
If a uniform magnetic field 3 ˆB 2 10 k-= ´r
tesla isapplied, force experienced by the wire is nearly :-
6
y(m)
O x(m)
i
(1)1.5 j N (2) –1.5 j N
(3)–0.05 j N (4) 2.5 j N
19. Let g be the acceleration due to gravity at earth'ssurface and K be the rotational kinetic energy ofthe earth. Suppose the earth's radius decreases by2% keeping all other quantities same, then :-(1) g decreases by 2% and K decreases by 4%(2) g decreases by 4% and K increases by 2%(3) g increases by 4% and K increases by 4%(4) g decreases by 4% and K increases by 4%
20. An LR circuit with a battery is connected att = 0. Which of the following quantities is not zerojust after the connection :-(a) Current in circuit(b) Magnetic potential energy in the inductor(c) Power delivered by the battery(d) Emf induced in the inductor(1) a, b (2) a, c
(3) c, d (4) Only d21. Minimum light intensity that can be perceived by
normal eye is about 10–10 Wm–2. What is theminimum number of photons of wavelength660nm that must enter the pupil in one second forone to see the object? Area of cross-section of thepupil is 10–4 m2 :-(1) 33 × 102 (2) 33 × 103
(3) 33 × 104 (4) 33 × 105
22. For a plano convex lenx (m = 1.5) has radius ofcurvature 10 cm. It is silvered on its plane surface.Find focal length after silvering:-(1) 10 cm (2) 20 cm(3) 15 cm (4) 25 cm
18. ,d rkj ijoy;kdkj eksM+ dj x-y ry esa j[kk x;k gSAoØ dh lehdj.k x2 = 6y }kjk nh tkrh gSA rkj esa
i = 2A dh /kkjk izokfgr gksrh gSA 3 ˆB 2 10 k-= ´r
T dk
,d leku pqEcdh; {ks= yxk, tkus ij] rkj }kjk vuqHko
fd;k x;k cy gS :-
6
y(m)
O x(m)
i
(1) 1.5 j N (2) –1.5 j N
(3) –0.05 j N (4) 2.5 j N
19. ;fn g i`Foh dh lrg ij xq:Roh; Roj.k] K i`Foh dh ?kw.khZxfrt ÅtkZ gSA 'ks"k lHkh jkf'k;k¡ fu;r ekurs gq;s i`Foh dh
f=T;k 2% de gks tk, rc :-
(1) g , 2% ?kV tkrk gS rFkk K , 4% ?kV tkrk gS
(2) g , 4% ?kV tkrk gS rFkk K , 2% c<+ tkrk gS
(3) g , 4% c<+ tkrk gS rFkk K , 4% c<+ tkrk gS(4) g , 4% ?kV tkrk gS rFkk K , 4% c<+ tkrk gS
20. ,d LR ifjiFk dks t = 0 ij cSVjh }kjk la;qDr fd;k tkrkgs] rks la;kstu djrs gh fuEu esa ls dkSulh jkf'k;k¡ v'kwU;gksxh :-(a) ifjiFk esa /kkjk(b) izsjdRo esa laxzfgr pqEcdh; fLFkfrt mtkZ(c) cSVjh }kjk iznÙk 'kfDr(d) izsjdRo esa izsfjr fo|qr okgd cy(1) a, b (2) a, c(3) c, d (4) dsoy d
21. fuEure rhozrk dk izdk'k ftls ge ns[k ldrs gS yxHkx10–10 Wm–2 gSA fdlh oLrq dks ns[kus ds fy, 1 lSd.M
esa iqryh ds vanj izos'k djus okys 660nm rjaxnS/;Z ds
QksVksuksa dh U;wure la[;k D;k gksxh iqryh dk vuqizLFk
{ks=Qy 10–4 m2 gSa :-
(1) 33 × 102 (2) 33 × 103
(3) 33 × 104 (4) 33 × 105
22. 10 cm oØrk f=T;k ds ,d leksÙky ysal dh lery lrgdks jftr dj nsrs gSaA rks jftr djus ds ckn ysal dh Qksdlnwjh gksxh%&(1) 10 cm (2) 20 cm(3) 15 cm (4) 25 cm
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MOCK TEST : NEET-II- 2016/21-07-2016
1001CM370715012
23. A scientist says that the efficiency of his heatengine which work at source temperature 127°Cand sink temperature 27° C is 26%, then(1) It is impossible(2) It is possible but less probable(3) It is quite probable(4) Data are incomplete
24. A uniform rod of length l and mass m is free torotate in a vertical plane about A. The rod initiallyin horizontal position is released. The initialangular acceleration of the rod is (Moment of
inertia of rod about A is ml2
3) :-
(1) 32gl
(2) 23l
g (3) 3
2
g
l2 (4) mg
l
2
25. The electric field part of an electromagnetic wavein a medium is represented by Ex = 0 ;
Ey = 2.5 NC
cos 6 2rad rad
2 10 t 10 xm s
-é ùæ ö æ öp´ - p ´ç ÷ ç ÷ê úè ø è øë û;
Ez = 0. The wave is :(1) Moving along – x direction with frequency
106 Hz and wave length 200 m.(2) Moving along y direction with frequency
2p × 106 Hz and wave length 200 m.(3) Moving along x direction with frequency
106 Hz and wave length 100 m.(4) Moving along x direction with frequency
106 Hz and wave length 200 m.26. The additional kinetic energy to be provided to
a satellite of mass m revolving around a planet ofmass M, to transfer it from a circular orbit of radiusR1 to another of radius R2(R2 > R1) is :-
(1) 1 2
1 1GmM
R R
æ ö-ç ÷
è ø(2)
1 2
1 12GmM
R R
æ ö-ç ÷
è ø
(3) 1 2
1 1 1GmM
2 R R
æ ö-ç ÷
è ø(4) 2 2
1 2
1 1GmM
R R
æ ö-ç ÷
è ø27. Electron in hydrogen atom first jumps from third
excited state to seconds excited state and then fromsecond excited to the first excited state. The ratioof the wavelengths l1 : l2 emitted in the two cases:
(1) 275
(2) 207
(3) 75
(4) 2720
23. ,d oSKkfud dgrk gS fd mldk batu 127°C L=ksr o 27°Cflad ds chp dk;Z djrk gS] ;fn batu dh n{krk 26% gS]rks ;g :–(1) ;g vlaHko gSA(2) ;g laHko gS ij de laHkkouk gSA(3) ;g yxHkx laHko gSA(4) vkadM+s i;kZIr ugha gSA
24. ,d vpj naM ftldh yEckbZ l vkSj lagfr m gS] Å/oZ ryesa A ds lkis{k ?kw.kZu djus dks Lora= gSA naM dks {kSfrtizkjfEHkd fLFkfr esa foeqä fd;k tkrk gSA naM dk izkjfEHkddks.kh; Roj.k gksxk (A ds lkis{k naM dk tM+Ro vk?kw.kZ gS
ml2
3) :-
(1) 32gl
(2) 23l
g (3) 3
2
g
l2 (4) mg
l
2
25. ,d ek/;e esa fo|qr pqEcdh; rjax dk oS|qr {ks=h HkkxfuEu izdkj lwfpr gS Ex = 0 ;
Ey = 2.5 NC
cos 6 2rad rad
2 10 t 10 xm s
-é ùæ ö æ öp´ - p ´ç ÷ ç ÷ê úè ø è øë û;
Ez = 0(1) ;g rjax – x fn'kk esa 106 Hz vko`fÙk ls py jgh gS
vkSj bldk rjaxnS/;Z 200 m gSA(2) ;g rjax y fn'kk esa 2p × 106 Hz vkofÙk ls py jgh
gS vkSj bldk rjaxnS/;Z 200 m gSA(3) ;g rjax x fn'kk esa 106 Hz vko`fÙk ls py jgh gS vkSj
bldk rjaxnS/;Z 100 m gSA(4) ;g rjax x fn'kk esa 106 Hz vko`fÙk ls py jgh gS vkSj
bldk rjaxnS/;Z 200 m gSA26. m æO;eku dk ,d mixzg] fdlh M æO;eku ds xzg dh
ifjØek R1 f=T;k dh o`Ùkh; d{kk esa dj jgk gSA bldhd{kk dh f=T;k dks R2 djus ds fy;s (R2 > R1), mixzgdks nh tkus okyh vfrfjä xfrt ÅtkZ gksxh :-
(1) 1 2
1 1GmM
R R
æ ö-ç ÷
è ø(2)
1 2
1 12GmM
R R
æ ö-ç ÷
è ø
(3) 1 2
1 1 1GmM
2 R R
æ ö-ç ÷
è ø(4) 2 2
1 2
1 1GmM
R R
æ ö-ç ÷
è ø27. fdlh gkbMªkstu ijek.kq esa ,d bysDVªkWu] igys r`rh; mÙksftr
voLFkk ls f}rh; mÙksftr voLFkk esa] vkSj fQj f}rh; mÙksftrvoLFkk esa izFke mÙksftr voLFkk esa laØe.k djrk gSA bunks n'kkvksa esa mRlftZr rjaxnS/;ksa dk vuqikr l1 : l2 gksxk%&
(1) 275
(2) 207
(3) 75
(4) 2720
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7/411001CM370715012
28. A transistor is operated in common emitterconfiguration at VC = 2V such that a change inthe base current from 100 µA to 300µA producesa change in the collector current from 10 mA to20 mA. The current gain is :-(1) 50 (2) 75
(3) 100 (4) 2529. A small square loop of wire of side l is placed
inside a large square loop of wire of side L (>> l).The loops are coplanar and their centres coincide.The mutual inductance of the system is :
l
L
(1) 02 2µ Lpl
(2) 2
02 2µ Lpl
(3) 02 2µLpl
(4) 2
02 2µLpl
30. An astronomical telescope has an eye piece offocal length 5 cm. If magnification produced is14 in normal adjustment, then calculate the lengthof the telescope.
(1) 75cm (2) 9cm (3) 50cm (4) 55cm
31. A force F acting on a body depends on itsdisplacement x as F µ xn. The power deliveredby F will be independent of x if n is–
(1) 13
(2) –13
(3) 12
(4) –12
32. S1 , S
2 are two coherent sources of sound
located along x -
axis separated by
4
l
where l is wavelength of sound emitted by
them. Number of maxima located on theelliptical boundary around it will be
S1 S2
4l
(1) 16 2) 12 (3) 8 (4) 4
28. ,d VªkaftLVj dk izpkyu VC = 2V ij mHk;fu"B mRltZdfoU;kl esa djus ij] vk/kkj&/kkjk esa 100 µA ls 300µA
ifjorZu ls lax z kgd&/ kkjk es a ifjorZu 10 mA ls
20 mA gks tkrk gS] rks /kkjk yfC/k gS %&
(1) 50 (2) 75
(3) 100 (4) 25
29. l Hkqtk ds rkj ds ,d NksVs&oxkZdkj ywi dks L (>> l) Hkqtkds rkj ds cM+s oxkZdkj ywi ds vUnj j[kk tkrk gSA ywileryh; gS rFkk buds dsUæ laikrh gSA fudk; dk vU;ksU;izsjdRo gksxk :
l
L
(1) 02 2µ Lpl
(2) 2
02 2µ Lpl
(3) 02 2µLpl
(4) 2
02 2µLpl
30. ,d [kxksyh; nwjn'khZ ds vfHkus= ySal dh Qksdl nwjh5 lseh gSA lkekU; O;oLFkk ds fy;s nwjn'khZ dk vko/kZu14 gksrk gSA bl fLFkfr esa nwjn'khZ dh yEckbZ dh x.kukdhft;sA(1) 75cm (2) 9cm (3) 50cm (4) 55cm
31. ,d oLrq ij yx jgk cy F, foLFkkiu x ij F µ xn dsvuqlkj fuHkZj djrk gSA F ds }kjk iznÙk 'kfDr x ij fuHkZj ughadjsxh] ;fn n dk eku gS&
(1) 13
(2) –13
(3) 12
(4) –12
32. S1
, S2 nks dyk lEc¼ /ofu L=ksr gSa] tks x-v{k ds
vuqfn'k 4 l nwjh ij fLFkr gSaA tgk¡ l mRlftZr /ofu dh
rjaxnS/;Z gSA buds pkjksa vksaj ,d nh?kZo`rkdkj ifjlhek ij
fLFkr mfPp"Bksa dh la[;k gksxh %&
S1 S2
4l
(1) 16 (2) 12 (3) 8 (4) 4
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MOCK TEST : NEET-II- 2016/21-07-2016
1001CM370715012
33. Three particles A, B and C of equal mass movewith equal speeds v along the medians of anequilateral triangle as shown in figure. Theycollide at the centroid G of the triangle. Aftercollision A comes to rest, B retraces its path withspeed v. The velocity of C is :-
A
B CG
(1) vr , direction GA (2) 2v
r, direction GA
(3) 2vr
, direction GB (4) vr , direction BG
34. The position vector of a particle is given as
rr
=(t2–4t + 6) i + (t2) j . The time after which the
velocity vector and acceleration vector becomesperpendicular to each other is equal to :-(1) 1 second (2) 2 second(3) 1.5 second (4) Not possible
35. A ring is rolling on a rough horizontal surfacewithout slipping with a linear speed 'v'. Ratio ofspeeds of points B and A is :
v
B
A
(1) 1 : 1 (2) 1 : 2 (3) 2 :1 (4) 1: 236. One mole of an ideal gas undergoes a process
whose molar heat capacity is 4R and in whichwork done by gas for small change in temperatureis given by the relation dW = 2RdT, then the ratio
P
V
CC is
(1) 75
(2) 53
(3) 32
(4) 2
37. Potentiometer wire length is 10 m, having a totalresistance of 10W. If a battery of emf 2 volt(negligible internal resistance) and a rheostat isconnected to it then potential gradient is 20mV/mfind the resistance applied through rheostat :-(1) 90W(2) 990W(3) 40W(4) 190W
33. rhu leku æO;eku ds d.k A, B o C fp=kuqlkj ,d leckgqf=Hkqt dh ekf/;dkvksa ds vuqfn'k v osx ls pyrs gS rFkkf=Hkqt ds dsUæd ij Vdjkrs gSA VDdj ds ckn iqu% A fLFkjgks tkrk gSA B iqu% viuk iFk v osx ls GB fn'kk esa r;djus yxrk gS rks C dk osx gS :-
A
B CG
(1) vr , o fn'kk GA (2) 2v
r, o fn'kk GA
(3) 2vr
, o fn'kk GB (4) vr , o fn'kk BG
34. ,d d.k dk fLFkfr lfn'k ( ) ( )2 2ˆ ˆr t 4t 6 i t j= - + +r
gSA
fdrus le; i'pkr~ osx lfn'k rFkk Roj.k lfn'k
,d&nwljs ds yEcor~ gksaxs%&
(1) 1 lsd.M (2) 2 lsd.M
(3) 1.5 lsd.M (4) lEHko ugha gS
35. ,d oy; [kqjnjh {kSfrt lrg ij fcuk fQlys js[kh; pky'v' ls yksVuh xfr dj jgh gS rks fcUnq B rFkk A ij pkyksadk vuqikr :
v
B
A
(1) 1 : 1 (2) 1 : 2 (3) 2 :1 (4) 1: 236. ,d eksy vkn'kZ xSl dks ,sls izØe ls gksdj xqtkjk tkrk
gS ftlesa rkieku esa vYi ifjorZu djus ij xSl }kjk fd;sx;s dk;Z dks lEcUèk dW = 2RdT }kjk fn;k tkrk gSA ;fnbl izØe ds fy;s eksyj Å"ek /kkfjrk 4R gks rks vuqikr
P
V
CC dk eku gksxk
(1) 75
(2) 53
(3) 32
(4) 2
37. foHkoekih ds rkj dh yEckbZ 10 eh rFkk dqy izfrjks/k 10WgSA blls 2 oksYV fo-ok- cy (vkUrfjd izfrjks/k ux.;)dhcSVjh o /kkjk fu;a=d dks tksM+k x;k gSA ;fn foHko izo.krkdk eku 20 feyh oksYV@ehVj gks rks /kkjk fu;a=d es iz;qDrizfrjksèk dk eku gksxk :–(1) 90W(2) 990W(3) 40W(4) 190W
MOCK TEST/ Target: Pre-Medical / NEET-II-2016/21-07-2016
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38. Pressure versus density graph of an ideal gas offixed mass is shown in figure -
P
r
C
DA
B
(1) during the process AB work done by the gasis positive
(2) during the process AB work done by the gasis negative
(3) during the process BC internal energy of thegas is increasing
(4) during the process BC, temperature of the gasremains constant
39. An alternating voltage = 200 sin 100t is applied toa series combination of R = 30 W and an inductorof 400 mH. The power factor of the circuit is :-(1) 0.01 (2) 0.6 (3) 0.5 (4) 0.042
40. After absorbing a slowly moving neutron of massmN (momentum ~0) a nucleus of mass M breaks intotwo nuclei of masses m1 and 3m1(4m1 = M + mN),respectively. If the de Broglie wavelength of thenucleus with mass m1 is l, then de Brogliewavelength of the other nucleus will be:-
(1) 9 l (2) 3 l (3) 3l
(4) l
41. Figure shows the graph of stopping potentialversus the frequency of a photosensitive metal.The plank's constant and work function of themetal are
V0
V2
V1 n1 n2n
(1) 2 1 2 1 1 2
2 2 2 1
V V V Ve, e
æ ö æ ö+ n + nç ÷ ç ÷n + n n + nè ø è ø
(2) 2 1 2 1 1 2
2 1 2 1
V V V Ve, e
æ ö æ ö+ n + nç ÷ ç ÷n - n n - nè ø è ø
(3) 2 1 2 1 1 2
2 1 2 1
V V V Ve, e
æ ö æ ö- n - nç ÷ ç ÷n + n n + nè ø è ø
(4) 2 1 2 1 1 2
2 1 2 1
V V V Ve, e
æ ö æ ö- n - nç ÷ ç ÷n - n n - nè ø è ø
38. nkc ,oa ?kuRo ds e/; ,d oØ fuf'pr nzO;eku dh ,dvkn'kZ xSl ds fy, fp=kuqlkj iznf'kZr gSA -
P
r
C
DA
B
(1) izfØ;k AB esa xSl }kjk fd;k x;k dk;Z /kukRed
gSA
(2) izfØ;k AB esa xSl }kjk fd;k x;k dk;Z ½.kkRed
gSA
(3) izfØ;k BC esa xSl dh vkarfjd ÅtkZ c<+rh gSA
(4) izfØ;k BC esa xSl dk rki fu;r cuk jgrk gSaA39. izfr jks/k R = 30 W rFkk 400 mH izsjdRo ds Js.khØe
la;kstu ij ,d izR;korhZ foHko = 200 sin 100t vkjksfirfd;k tkrk gSA ifjiFk dk 'kfDr xq.kkad gksxk :-(1) 0.01 (2) 0.6 (3) 0.5 (4) 0.042
40. ,d /kheh xfr ls xfr'khy mN æO;eku ds U;wVªkWu (laosx~0)dk vo'kks"k.k dj æO;eku M dk ,d ukfHkd æO;ekuØe'k% m1 ,oa 3 m1 (4 m1 = M + mN) ds nks ukfHkdksaesa VwVrk gSA ;fn æO;eku m1 okys ukfHkd dh Mh&czksXyhrjaxnS/;Z l gS] rc nwljs ukfHkd dh Mh&czk sXyh rjaxnS/;Zgksxh :-
(1) 9 l (2) 3 l (3) 3l
(4) l
41. fujks/kh foHko dk izdk'k laosnh /kkrq dh vko`fÙk ds lkFkxzkQ fp= esa iznf'kZr fd;k x;k gSA /kkrq dk Iykad fu;rkad
rFkk dk;Z Qyu gksxk%&
V0
V2
V1 n1 n2n
(1) 2 1 2 1 1 2
2 2 2 1
V V V Ve, e
æ ö æ ö+ n + nç ÷ ç ÷n + n n + nè ø è ø
(2) 2 1 2 1 1 2
2 1 2 1
V V V Ve, e
æ ö æ ö+ n + nç ÷ ç ÷n - n n - nè ø è ø
(3) 2 1 2 1 1 2
2 1 2 1
V V V Ve, e
æ ö æ ö- n - nç ÷ ç ÷n + n n + nè ø è ø
(4) 2 1 2 1 1 2
2 1 2 1
V V V Ve, e
æ ö æ ö- n - nç ÷ ç ÷n - n n - nè ø è ø
10/41
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1001CM370715012
42. The logic symbols shown here are logicallyequivalent to :–
Y
(a)
AB
AB
Y
(b)
(1) 'a' AND and 'b' OR gate
(2) 'a' NOR and 'b' NAND gate
(3) 'a' OR and 'b' AND gate
(4) 'a' NAND and 'b' NOR gate
43. A racing car moving towards a cliff sounds itshorn. The driver observes that the sound reflectedfrom the cliff has a pitch one octave higher thanthe actual sound of the horn. If v is the velocityof sound then the velocity of the car is
(1) v
2(2)
v2
(3) v3
(4) v4
44. In the shown circuit, when the voltage betweenA and B is 16 V then voltage between C and Dis 8 V. When the voltage between C and D is15 V, what is the voltage between A and B ?
8W2W
2W 8WR
C
D
A
B
(1) 4 V (2) 3 V
(3) 2 V (4) zero
45. 120 km/hr = vS
300m CRailway track
400m
PersonA
B q
v = speed of sound inair = 340 m/sec.n=640 Hz
If engine of train produce horn at B point then findapparent frequency observed by observer at A point.
(1) 680 Hz (2) 640 Hz
(3) 660 Hz (4) 670 Hz
42. fp= es a iznf'k Zr ladsr rkfdZd :i ls fdlds rqY;gSa :–
Y
(a)
AB
AB
Y
(b)
(1) 'a' AND and 'b' OR gate
(2) 'a' NOR and 'b' NAND gate
(3) 'a' OR and 'b' AND gate
(4) 'a' NAND and 'b' NOR gate
43. ,d dkj ,d igkM+h dh vk sj xfr djrs gq, gk Wu Zctkrh gSA dkj ds MªkbZoj dk s igkM+ h ls ijkofrZr/ofu] gkWuZ dh okLrfod /ofu ls 2 xquk vf/kd rkjRookyh izsf{kr gksrh gSA ;fn /ofu dk osx v gks rks dkj dkosx gS&
(1) v
2(2)
v2
(3) v3
(4) v4
44. iznf'kZr ifjiFk esa] tc A o B ds eè; oksYVrk 16VgS] C o D ds eè; oksYVrk 8V gSA tc C o D dseè; oksYVrk 15V gS rks A o B ds eè; oksYVrk D;kgksxh ?
8W2W
2W 8WR
C
D
A
B
(1) 4 V (2) 3 V
(3) 2 V (4) 'kwU;
45. 120 km/hr = vS
300m CRailway track
400m
PersonA
B q
v = speed of sound inair = 340 m/sec.n=640 Hz
fcUnq A ij [kM+s O;fDr dks Vªsu ds gksuZ dh vko`fr D;k lqukbZnsxh tc Vªsu dk batu B ij gkWuZ ctkrk gSA
(1) 680 Hz (2) 640 Hz
(3) 660 Hz (4) 670 Hz
MOCK TEST/ Target: Pre-Medical / NEET-II-2016/21-07-2016
11/411001CM370715012
46. In ice crystal number of first nearst oxygen atoms,to oxygen atom of water molecule are :-
(1) 1 (2) 4 (3) 6 (4) 8
47. Which of the following order is incorrectaccording to their property indicated in thebracket:-
(1) Ba < Sr < Ca < Mg < Be (Hydration enthalpy)
(2) Mg < Ba < Sr < Ca < Be (Melting point)
(3) Be < Mg < Ca < Sr < Ba (Density)
(4) Cs < Rb < K < Na < Li (Boiling point)
48. Which of the following is not a mineral silicate:-
(1) Feldspar (2) Zeolites
(3) Asbestos (4) Calgon
49. Which of the following statement is incorrect ?
(1) Mn+2 ion is more stable than Mn+3 ion
(2) Little difference in the size & ionisationpotential of transition metal atoms in a series
(3) Mostly transition metals are paramagnetic
(4) Although the outermost electronicconfiguration of transition elements is ns1 orns2 like alkali and alkaline earth metals, sothey are as reactive as them
50. Spin magnetic moment of the compoundHg[Co(SCN)4] is
(1) 3 (2) 15 (3) 24 (4) 851. With respect to graphite and diamond, which of
the statement(s) given is(are) correct ?(1) Graphite is harder than diamond.(2) Graphite has higher electrical conductivity
than diamond.(3) Graphite has higher thermal conductivity
than diamond.(4) Graphite has lower C – C bond order than
diamond.
52. In the reaction :-2 3NaNH / NH ( )
3CH C C H (A)- º - ¾¾¾¾¾¾®l
the product (B) is
(1) CH3–CºC–CH2–CH2–CH3
(2) CH3–CH=CH2
(3) CH3–CH2–CºC–CH2–CH3
(4) CH3–CH=C=CH–CH2–CH3
46. cQZ ds fØLVy esa] ty ds v.kq ds vkDlhtu ijek.kq ds]izFke utnhdh vkDlhtu ijek.kqvksa dh la[;k gS :-(1) 1 (2) 4 (3) 6 (4) 8
47. fuEu esa ls dks×d esa n'kkZ;suqlkj dkSulk y{k.k dk Øe xyr
gS:-
(1) Ba < Sr < Ca < Mg < Be (ty;kstu ,UFkSYih)
(2) Mg < Ba < Sr < Ca < Be (xyukad)
(3) Be < Mg < Ca < Sr < Ba (?kuRo)
(4) Cs < Rb < K < Na < Li (DoFkukad)
48. fuEu esa ls dkSu ,d [kfut flyhdsV ugha gS:-(1) QSYlikj (2) ft;ksykbV
(3) ,LcsLVkWl (4) dkyxu49. fuEu esa ls dkSulk dFku vlR; gS\
(1) Mn+2 vk;u] Mn+3 vk;u ls vf/kd LFkk;h gSA(2) laØe.k Js.kh esa muds /kkrqvksa ds ijek.kqvksa ds vkdkj
vkSj vk;uu fOkHko esa cgqr de varj gksrk gSA
(3) vf/kdrj laØe.k /kkrq vk;u vuqpqEcdh; gksrs gSA
(4) {kkj /kkrq rFkk {kkjh; e`nk /kkvksa dh Hkk¡fr laØe.k rRpksa
dk Hkh ckg;re bysDVªkWfud foU;kl ns1 vFkok ns2
gksrk gS blfy;s ;s muds leku gh fØ;k'khy gksrs gSaA
50. Hg[Co(SCN)4] esa pØ.k pqEcdh; vk?kw.kZ gS&
(1) 3 (2) 15 (3) 24 (4) 8
51. xzSQkbV vkSj ghjs ds lanHkZ esa dkSulk dFku lgh gS@gSa \
(1) xzSQkbV ghjs ls dBksj gSA
(2) xzSQkbV dh oS|qr pkydrk ghjs ls vf/kd gSA
(3) xzSQkbV dh Å"ek pkydrk ghjs ls vf/kd gSA
(4) xzSQkbV dk C – C vkca/k Øe ghjs ls de gSA
52. vfHkfØ;k esa2 3NaNH / NH ( )
3CH C C H (A)- º - ¾¾¾¾¾¾®l
mRikn (B) gS(1) CH3–CºC–CH2–CH2–CH3
(2) CH3–CH=CH2
(3) CH3–CH2–CºC–CH2–CH3
(4) CH3–CH=C=CH–CH2–CH3
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53. Aldol condensations is:-
(1) Self condensation of ketones only havingatleast one a-hydrogen
(2) Self condensation of aldehyde / ketoneshaving atleast one a–hydrogen
(3) Self condensation of both aldehyde & ketone,having atleast 2 a–hydrogens
(4) Self condensation of both aldehydes andketones having no a–hydrogens
54. Which of the following is water insolubleprotein:-
(1) Haemoglobin (2) Insulin
(3) Myosin (4) both (1) and (2)
55. Natural rubber is a polymer of:-
(1) Isoprene
(2) Styrene
(3) Ethylene
(4) Butadiene
56. In the following reaction
2H O / H
major(D) (C)
+¬¾¾¾¾
major product (D) will be
(1) C–COOHOH
CH3
(2) CH –C–CH2 3
OH
CN
(3) CH –C–CH2 3
COOH
OH
(4) C–CH3
CN
CN
53. ,YMksy la?kuu gS:-
(1) dsoy fdVksu dk Lola?kuu tks de ls de ,d
a-gkbMªkstu j[ks
(2) ,sYMhgkbM @ dhVksu dk Lola?kuu tks de ls de ,d
a–gkbMªkstu j[krk gks
(3) ,YMhgkbM rFkk fdVksu nksuks dk Lola?kuu tks de ls
de 2 a–gkbMªkstu j[ks
(4) ,YMhgkbM rFkk fdVksu nksuks dk Lola?kuu tks ,d Hkh
a–gkbMªkstu u j[ksA
54. fuEufyf[kr esa ls dkSulk ty esa v?kqyu'khy izksVhugS :-
(1) gheksXukschu (2) bUlqfyu
(3) ek;ksflu (4) (1) rFkk (2) nksuksa
55. izkÏfrd jcj cgqyd gS:-
(1) vkblksizhu
(2) LVkbZjhu
(3) bFkkbfyu
(4) C;wVkMkbZbZu
56. fuEufyf[kr vfHkfØ;k esa
2H O / H
major(D) (C)
+¬¾¾¾¾
eq[; mRikn (D) gksxk
(1) C–COOHOH
CH3
(2) CH –C–CH2 3
OH
CN
(3) CH –C–CH2 3
COOH
OH
(4) C–CH3
CN
CN
MOCK TEST/ Target: Pre-Medical / NEET-II-2016/21-07-2016
13/411001CM370715012
57. Among the following the optically activecompounds is/are :-
(1)
(2)
(3)
Br Br
Cl Cl(4) All of these
58. Identify the end product (y) of the followingsequence of reaction :-
OH
2 4 2 2Conc.H SO Br / H O100 C
x y°¾¾¾¾¾® ¾¾¾¾®
(1)
OHBr Br
SO H3
(2)
OHBr Br
Br
(3)
OHSO H3
Br
(4)
OH
Br59. Terfenadine is :-
(1) Analgesic (2) Antihistamine(3) Antacids (4) Antipyretic
60.
OH
2 4H SO NBS(A) (B)¾¾¾® ¾¾¾® 4LiAlD (C)¾¾¾®
major product (C) is:-
(1) (2)
(3)
D
(4)
OH
57. fuEufyf[kr esa ls dkSu izdkf'kd lfØ; ;kSfxd gS :-
(1)
(2)
(3)
Br Br
Cl Cl
(4) mijksDr lHkh
58. fuEufyf[kr vfHkfØ;k Øe esa vafre mRikn (y) gS :-
OH
2 4 2 2Conc.H SO Br / H O100 C
x y°¾¾¾¾¾® ¾¾¾¾®
(1)
OHBr Br
SO H3
(2)
OHBr Br
Br
(3)
OHSO H3
Br
(4)
OH
Br
59. VjQsukMhu gS :-(1) Analgesic (2) Antihistamine(3) Antacids (4) Antipyretic
60.
OH
2 4H SO NBS(A) (B)¾¾¾® ¾¾¾® 4LiAlD (C)¾¾¾®
eq[; mRikn (C) gS:-
(1) (2)
(3)
D
(4)
OH
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61. Which of the following in incorrect :-(1) FeCl3 is used in the detection of phenol
(2) Fehling solution is used in the detection of
Glucose
(3) Tollens reagent is used in detection of
unsaturation
(4) NaHSO3 is used in the detection of carbonyl
compound62. Which of the following is strongest base:-
(1) H–N N–H
O
(2) H–N N–H
NH
(3)
NH2
(4)
N
63. The IUPAC Name of
Br is :-
(1) 2-Bromo-3-methyl but -3-ene(2) 4-Bromo-3-methyl pent -2-ene(3) 2-Bromo-3-methyl pent -3-ene(4) 4-Bromo-2,3-dimenthy but-2-ene
64. Which of the following reaction will not giveprimary amine:-
(1) CH3CONH2 2KOH,Br¾¾¾¾®
(2) CH3CN 4LiAlH¾¾¾®
(3) CH3NC 4LiAlH¾¾¾®
(4) CH3CONH2 ( )4
2
( i) LiAlHii H O
¾¾¾¾®
65. and are:-
(1) Conformational isomers(2) Stereoisomers(3) Constitutional isomers(4) identical
61. fuEufyf[kr esa ls dkSu lgh ugh gS:-(1) FeCl3 dk mi;ksx fQuksy esa ifj{k.k esa fd;k tkrk
gS(2) Qgsfyax foy;u dk mi;ksx Xywdksl ds ijh{k.k es fd;k
tkrk gS(3) VkWysu vfHkdeZd dk mi;ksx vlarIrk ds ifj{k.k esa
fd;k tkrk gS(4) NaHSO3 dk mi;ksx dkcksZfuy ;kSfxd ds ifj{k.k esa
fd;k tkrk gSA62. fuEufyf[kr esa ls dkSu izcyre {kkj gS :-
(1) H–N N–H
O
(2) H–N N–H
NH
(3)
NH2
(4)
N
63.
Br
dk IUPAC uke gS :-(1) 2-Bromo-3-methyl but -3-ene(2) 4-Bromo-3-methyl pent -2-ene
(3) 2-Bromo-3-methyl pent -3-ene
(4) 4-Bromo-2,3-dimenthy but-2-ene64. fuEufyf[kr esa ls dkSulh vfHkfØ;k izkFkfed ,ehu ugh
nsrh gS:-
(1) CH3CONH2 2KOH,Br¾¾¾¾®
(2) CH3CN 4LiAlH¾¾¾®
(3) CH3NC 4LiAlH¾¾¾®
(4) CH3CONH2 ( )4
2
( i) LiAlHii H O
¾¾¾¾®
65. rFkk gS:-
(1) la#i.k leko;oh(2) f=foe leko;oh(3) lajpukRed leko;oh(4) leku
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66. Which one of the following is reducing sugar:-(1) Starch (2) Cellulose(3) Glycogen (4) Fructose
67. In a first order reaction initial amount of reactant
0.5 M reduces to 0.3 M in 20 min. If reaction is
started with 1.0 M reactant it will reduce in 20
min to:-
(1) 0.5 M (2) 0.6 M (3) 0.4 M (4) 0.3 M
68. Which of the following graph represenctsphysisorption :-
(1)
xm
P
Isotherm
(2)
xm
P
Isotherm
(3)
xm
P
Isotherm (4)
xm
P
Isotherm
69. Solubility Products of the two salts AB and XYare 5 × 10–8 M2 and 2.5 × 10–7 M2 respectively.The the ratio of their molor solubilitesrespectively will be:-(1) 1 : 2.23 (2) 1 : 5 (3) 5 : 1 (4) 1 : 25
70. In which condition a process can never bespontaneous at all temperature:-
(1) DH < 0 and DS < 0
(2) DH < 0 and DS > 0
(3) DH > 0 and DS < 0
(4) DH > 0 and DS > 0
71. A crystalline compound (x) has NaCl typestructure. which of the following statement is notcorrect for x:-
(1) r+ + r– = a2
(2) 2(r+ + r–) = a(3) Half of tetrahedral void in its unit cell are
occupied(4) All octahedral voids are occupied in the unit
cell
66. fuEufyf[kr esa ls dkSu vipk;d 'kdZjk gS:-(1) LVkpZ (2) lsY;qyksl(3) Xykbdkstu (4) ÝDVksl
67. ,d izFke dksfV vfHkfØ;k esa vfHkdkjd dh izkjfEHkd ek=k0.5 M ls ?kVdj 20 feuV esa 0.3 M jg tkrh gSA ;fnvfHkfØ;k 1.0 M vfHkdkjd ls izkjEHk djk;h tkrh gSA;g 20 feuV esa ?kVdj jg tk;sxk:-(1) 0.5 M (2) 0.6 M(3) 0.4 M (4) 0.3 M
68. fuEufyf[kr esa ls dkSu lk xzkQ HkkSfrd vf/k'kks"k.k n'kkZrkgS :-
(1)
xm
P
Isotherm
(2)
xm
P
Isotherm
(3)
xm
P
Isotherm (4)
xm
P
Isotherm
69. nks yo.kks AB rFkk XY dh foys;rk xq.kuQy dk ekuØe'k% 5 × 10–8 M2 rFkk 2.5 × 10–7 M2 gSA mudh eksyjfoys;rk dk vuqikr Øe'k% gksxk:-(1) 1 : 2.23 (2) 1 : 5(3) 5 : 1 (4) 1 : 25
70. fuEu ifjfLFkfr;ks es ls ,d ifjfLFkrh gksxh ftlesa izØelHkh rkieku ij dHkh Hkh Lor% ugh gks ldrk gS:-
(1) DH < 0 vkSj DS < 0
(2) DH < 0 vkSj DS > 0
(3) DH > 0 vkSj DS < 0
(4) DH > 0 vkSj DS > 0
71. ,d fØLVyh; ;kSfxd (x) dh lajpuk NaCl ds izdkj dhgSA x ds fy, fuEu esa ls dkSulk dFku lgh ugha gS:-
(1) r+ + r– = a2
(2) 2(r+ + r–) = a
(3) bldh bdkbZ lSy ls vk/ks prq"dydh; fjfDrdk, Hkjhgksrh gSA
(4) bldh bdkbZ lSy esa lHkh v×Qydh; fjfDrdk, Hkjhgksrh gS
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72. At STP, a container has 1 mole He, 2 mole Ne,3 mole O2 and 4 mole N2. With out changing totalpressure if 2 mole O2 is removed, the partialpressure of O2 is decreased by :-(1) 26% (2) 40%(3) 58.33% (4) 66.66%
73. Kp has the values 10–6 atm3 and 10–4 atm3 at298 K and 323 K respectively for the reaction :-
CuSO4.3H2O (S) ������ CuSO4(s) +3H2O(g)
DH for the reaction is(1) 7.7 kJ/mol(2) –147.41 kJ/mol(3) 147.41 kJ/mol(4) –7.7 kJ/mol
74. The cell Pt/H2 (g, 0.1 bar)/ H+aq. pH = X | | Cl–
(aq 1M)/ Hg2Cl2/Hg/Pt has emf of 0.5755 V at25°C, The SOP of calomel electrode is –0.28 V,the pH of solution will be:-(1) 5.5 (2) 11 (3) 4.5 (4) 6.5
75. Ammonium chloride crystallizes as body centredcubic lattice with edge length 387 pm. If the
radius of Cl– is 181 pm, the radius 4NH+ would
be:-(1) 154 pm (2) 515 pm(3) 564 pm (4) 116 pm
76. A catalyst in finely divided form is most effectivebecause:-(1) Less surface area is available(2) More active sites are formed(3) More energy gets stored in the catalyst(4) All of these
77. Lattice energy of CaCl2 is U and that of NaCl isU1 for same crystal structure and same ionic radiithen correct relations is :-
(1) U = U'
(2) U > U
(3) U < U'
(4) Cannot be decided
78. Which of the following will show highest molarconductivity in aqueous solution :-
(1) [CrCl3(NH3)3]
(2) [CrCl2(NH3)4]Cl
(3) [CrCl(NH3)5]Cl2
(4) [Cr(NH3)6]Cl3
72. STP ij ,d crZu lsa 1 eksy He, 2 eksy Ne, 3 eksy O2
4 eksy N2 dks j[kk x;k] dqy nkc dks ifjofrZr fd;s fcuk2 eksy O2 dks gVk fy;k x;k, O2 ds vkaf'kd nkc fdrus% de gqvk:-(1) 26% (2) 40%(3) 58.33% (4) 66.66%
73. nh xbZ fØ;k ds fy;s 298 K rFkk 323 K ij Kp ds ekuØe'k% 10–6 atm3 rFkk 10–4 atm3 gS:-
CuSO4.3H2O (S) ������ CuSO4(s) +3H2O(g)
fØ;k dk DH gS(1) 7.7 kJ/mol(2) –147.41 kJ/mol(3) 147.41 kJ/mol(4) –7.7 kJ/mol
74. 25°C ij lSy Pt/H2 (g, 0.1 bar)/ H+aq. pH = X | |Cl–(aq 1M)/ Hg2Cl2/Hg/Pt dk foñ okñ cy 0.5755 VgSA dSyksey bysDVªk WM dk ekud vkDlhdj.k foHko–0.28 V gS] foy;u dk pH gksxk:-(1) 5.5 (2) 11 (3) 4.5 (4) 6.5
75. veksfu;e DyksjkbZM dk; dsUnzhr ?ku ds #i esa fØLVyhÏrgksrk gSA ftldh Hk qtk dh yEckbZ 387 pm gSA ;fn
Cl– vk;u dh f=T;k 181 pm gS] rks 4NH+ vk;u dh f=T;k
gksxh:-(1) 154 pm (2) 515 pm(3) 564 pm (4) 116 pm
76. ,d mRizsjd lw{e foHkkftr #i ls vf/kdre izHkkoh gksrkgSA D;ksfd:-(1) de i`×h; {ks=Qy miyC/k gksus ds dkj.k(2) vf/kd lfØ; dsUnz cuus ds dkj.k(3) mRizjsd es vf/kd mtkZ lafpr gksus ds dkj.k(4) mijksDr lHkh
77. CaCl2 dh tkyd ÅtkZ U rFkk NaCl dh U1 gS rks lekufØLVy lajpuk rFkk leku vk;fud f=T;k gks rks dkSulkdFku lR; gS :-
(1) U = U'
(2) U > U
(3) U < U'
(4) Kkr ugha dj ldrsA78. fuEu esa ls dkSu tyh; foy;u esa lcls T;knk eksyj pkydrk
iznf'kZr djrk gS :-
(1) [CrCl3(NH3)3]
(2) [CrCl2(NH3)4]Cl
(3) [CrCl(NH3)5]Cl2
(4) [Cr(NH3)6]Cl3
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79. Incorrect about physical adsorption is:-(1) Heat of adsorption usually in the range of
20–40 kJ mol–1
(2) Gibb's free energy decreases and entropyincreases
(3) It does not require activation energy(4) It is reversible
80. Gas in liquid is an example of:-(1) smoke (2) solid sol(3) Aerosol (4) Foam (froth)
81. At 25°C, vapour pressure of pure water is 30 mm Hgafter dissolution of 3g non volatile solute itbecomes 27 mm of Hg. If Kb for water is0.52 km–1 then boiling point of above solution is :-
(1) 101.3°C (2) 106.2°C
(3) 103.2°C (4) 105.2°C
82. A solution contain 3 moles of A (P° = 20 mm Hg)and 2 moles of B (P° = 30 mm Hg) then correctstatement is (assume solution to be ideal):-(1) The vapour will contain higher mole
percentage of A(2) The vapour will contain higher mole
percentage of B(3) The vapour will contain equal mole
percentage of A & B(4) The vapour pressure of solution will be 25 mm
Hg83. Correct order of acidic strength is:-
(1) HCl > HBr > HI > HF
(2) MnO < MnO2 < Mn2O7
(3) H3PO3 > H3PO4 > H3PO2
(4) Cl2O7 < Cl2O5 < Cl2O3
84. Some of the properties of the two species,–3NO and 3H O+ are described below. Which one
of them is correct :-(1) Isostructural with same hybridization for the
central atom.(2) Isostructural with different hybridization for
the central atom.(3) Similar in hybridization for the central atom
with different structures.(4) Dissimilar in hybridization for the central
atom with different structures.
79. HkkSfrd vf/k'kks"k.k ds ckjs esa xyr dFku gksxk :-
(1) vf/k'kks"k.k dh Å"ek 20–40 kJ mol–1 ijkl esa gksrh gS
(2) fxCl eqDr ÅtkZ ?kVrh gSA vkSj ,sUVªkWih c<+rh gS
(3) blesa lfØ;.k ÅtkZ dh vko';drk ugha gksrh gS
(4) ;g mRØe.kh; gksrk gSA
80. æzo esa xSl mnkgj.k gksrk gS:-(1) /kqvk¡ (2) Bksl lkWy(3) ,sjkslkWy (4) >kx
81. 25°C ij 'kqð ty dk ok"inkc 30 mm Hg gksrk gS 3gvok"o'khy foys; feykus ij ok"inkc 27 mm Hg gkstkrk gSA ;fn ty ds fy, Kb dk eku 0.52 km–1 gS rksmijksDr foy;u dk doFkukad fcUnq gksxk :-
(1) 101.3°C (2) 106.2°C
(3) 103.2°C (4) 105.2°C
82. ;fn ,d foy;u esa 3 eksy A (P° = 20 mm Hg) o
2 eksy B (P° = 30 mm Hg) mifLFkr gS rks lgh dFku
gksxk (ekuk foy;u vkn'kZ gS):-
(1) ok"i esa A dh eksy izfr'krrk vf/kd gksxh
(2) ok"i esa B dh eksy izfr'krrk vf/kd gksxh
(3) ok"i esa A o B dh cjkcj eksy izfr'krrk gksxh
(4) foy;u dk ok"inkc 25 mm Hg gksxk
83. vEyh; lkEFk;Z dk lgh Øe gksxk:-
(1) HCl > HBr > HI > HF
(2) MnO < MnO2 < Mn2O7
(3) H3PO3 > H3PO4 > H3PO2
(4) Cl2O7 < Cl2O5 < Cl2O3
84. nks Lih'kht, –3NO rFkk 3H O+ ds dqN xq.k/keZ uhps of.kZr
gSaA buesa ls dkSulk(xq.k/keZ) lgh gS :-
(1) lelajpukRed ,oa dsUnzh; ijek.kq dk leku ladj.k
(2) lelajpukRed ,oa dsUæh; ijek.kq dk fHkUu ladj.k
(3) dsUæh; ijek.k q dk ,d tSlk ladj.k rFkk mudh
vyx&vyx lajpuk,a
(4) dsUæh; ijek.kq dk fHkUu&fHkUu ladj.k rFkk fHkUu
lajpuk,a
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85. Which of the following statements is not valid foroxoacids of phosphorus?(1) All oxoacids contain tetrahedral four
coordinated phosphorus(2) All oxoacids contain atleast one P = O unit
and one P – OH group(3) Orthophosphoric acid is used in the
manufacture of triple superphosphate(4) Hypophosphorous acid is a diprotic acid
86. The IUPAC name of Cl
O is :-
(1) 3,4–Dimethylpentanoyl chloride(2) 1–Chloro–1–oxo–2,3–dimethylpentane(3) 2–Ethyl–3–methylbutanoyl chloride
(4) 2,3–Dimethylpentanoyl chloride87. Which of the following order is correct?
(1) F > N > C > Si > Ga – non-metallic character(2) F2 > Cl2 > Br2 > I2 – oxidising property.(3) C < Si > P > N – electron affinity(4) All of these
88. Cl2 gas is obtained by various reactions but except
any one
(1) KMnO4 + conc. HCl D¾¾®
(2) KCl + K2Cr
2O
7 + conc. H
2SO
4 D¾¾®
(3) MnO2 + conc. HCl D¾¾®
(4) KCl + F2 ¾¾®
89. Match List - I with List-II and select the correctcodeList-I List-II(a) Van Arkel Method (1) Purification
of titanium(b) Solvay Process (2) Manufacture
of Na2CO
3
(c) Cupellation (3) Purificationof copper
(d) Poling (4) Refiningof silver
Codes : a b c d(1) 1 2 4 3(2) 2 1 3 4(3) 4 2 1 3(4) 3 1 2 4
90. Which of the following compounds is nonpolar :-(1) CH
3Cl (2) CH
2Cl
2(3) CHCl
3(4) CCl
4
85. QkWLQksjl ds vkWDlks,flMksa ds fy;s fuEu esa ls dkSulk dFkumi;qDr ugha gS\(1) lHkh vkWDlks,flMksa esa prq"Qydh; pkj milgla;ksftr
QkWLQksjl gksrk gS(2) lHkh vkWDlks,flMksa esa de ls de ,d P = O ;wfuV
vkSj ,d P – OH xzqi gksrk gSA(3) fV ªiy lqijQkLQ sV d s O;kikf jd fuek Z .k e s a
vkFkksZQkWLQksfjd vEy dk mi;ksx fd;k tkrk gSA(4) gkbiksQkLQksjl vEy ,d f}izksfVd vEy gS
86.Cl
O dk IUPAC uke gS :-
(1) 3,4–MkbesfFkyisUVSuks;y DyksjkbM(2) 1–Dyksjks–1–vkWDlks–2,3–MkbesfFkyisUVsu(3) 2–,fFky–3–esfFkyC;wVSuks;y DyksjkbM(4) 2,3–MkbesfFkyisUVSuks;y DyksjkbM
87. fuEufyf[kr esa ls dkSulk Øe lgh gS(1) F > N > C > Si > Ga – v/kkfRod y{k.k(2) F > Cl > Br > I – vkWDlhdkjd xq.k(3) C < Si > P > N – bysDVªkWu ca/kqrk (4) mijksDr lHkh
88. Cl2 xSl fHkUu vfHkfØ;k }kjk izkIr gksrh gSA fdl ,d NksM+dj
(1) KMnO4 + conc. HCl D¾¾®
(2) KCl + K2Cr
2O
7 + conc. H
2SO
4 D¾¾®
(3) MnO2 + conc. HCl D¾¾®
(4) KCl + F2 ¾¾®
89. lwph-I dk lwph-II dk feyku djsaAlwph-I lwph-II(a) okWu vkWdsZy fof/k (1) VkbVsfu;e
dk 'kqf¼dj.k(b) lksYos izØe (2) Na
2CO
3
dk fuekZ.k(c) [kiZj.k (3) dkWij dk
'kqf¼dj.k(d) naM&foyksM+u (4) flYoj dk
'kqf¼dj.kdksM % a b c d(1) 1 2 4 3(2) 2 1 3 4(3) 4 2 1 3(4) 3 1 2 4
90. fuEu esa ls dkSulk ;kSfxd v/kq zoh; gS ?(1) CH
3Cl (2) CH
2Cl
2(3) CHCl
3(4) CCl
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91. Expressed sequence tags and sequence annotationis the method of(1) DNA finger printing(2) Gene cloning(3) Human Genome sequencing(4) Gene expression
92. How many type of rRNA components are presentin 70 S ribosomes ?(1) 6 (2) 7 (3) 4 (4) 3
93. Yeast is used in the production of :-(1) Bread and Beer(2) Cheese and Butter(3) Citric acid and Lactic acid(4) Lipase and Pectinase
94. If the frequency of autosomal dominant allele is0.6 then calculate the frequency of recessivephenotype in a population of 10,000.(1) 4000 (2) 1600 (3) 6000 (4) 600
95. Which of the following sequence is correct aboutsuccession on rocks ?(1) Forest stage ® shrub stage ® moss stage ®
herb stage ® foliose lichen stage ®crustose lichen stage
(2) Crustose lichen stage ® foliose lichen stage ®moss stage ® herb stage ® shrub stage ®Forest stage
(3) Moss stage ® herb stage ® shrub stage ®forest stage ® crustose lichen stage ® folioselichen stage
(4) Herb stage ® shrub stage ® moss stage ®forest stage ® crustose lichen stage ® folioselichen stage
96. Identify the likely organisms a, b, c and d in thefood web shown below :-
Insects (c) Eagle(b)
Snake (d)
(a)
Deer
Goat
Plants
Fox LionWolf
Options :-
(a) (b) (c) (d)(1) Peacock Rats Frog Rabbit(2) Rabbit Rats Frog Peacock(3) Rabbit Frog Rats Peacock(4) Frog Rats Rabbit Peacock
91. O;Dr vuqØe ?k a qM+h rFkk vuqØe fVIi.k ,d rjhdkgSA(1) DNA vaxqyhi.k dk(2) thu Dyksuhax dk(3) ekuo ftukse vuqØe.k dk(4) thu dh vfHkO;fDr dk
92. 70 S jkbckslkse esa fdrus izdkj ds vkj&vkj-,u-,- ?kVdmifLFkr gksrs gSa ?(1) 6 (2) 7 (3) 4 (4) 3
93. ;hLV dk mi;ksx fdlds mRiknu esa gksrk gS %&(1) cszM vkSj ch;j(2) iuhj vkSj eD[ku(3) flfVªd vEy vkSj ysfDVd vEy(4) ykbist vkSj isfDVust
94. ;fn vfyaxh izHkkoh vfyy dh frequency 0.6 gS] rks10,000 ds tual[;k esa vizHkkfor fQuksVkbi okys fdrusgksaxs\(1) 4000 (2) 1600 (3) 6000 (4) 600
95. fuEu esa ls dkSulk Øe pêkuksa ij gksus okys vuqØe.k dsfy, lgh gS ?(1) pje ou ® xqYe voLFkk ® ekWl voLFkk ®
'kkd voLFkk ® if.kZy 'ksd voLFkk ® iiZVh 'ksdvoLFkk
(2) iiZVh 'k sd voLFkk ® if.kZy 'k sd voLFkk ®ekWl voLFkk ® 'kkd voLFkk ® xqYe voLFkk ®pje ou
(3) ekWl voLFkk ® 'kkd voLFkk ® xqYe voLFkk ®pje ou ® iiZVh 'k sd voLFkk ® if.kZy 'ksdvoLFkk
(4) 'kkd voLFkk ® xqYe voLFkk ® ekWl voLFkk ®pje ou ® iiZVh 'k sd voLFkk ® if.kZy 'ksdvoLFkk
96. uhps fn;s gq, [kk| tky esa a, b, c rFkk d tho/kkjh D;kgks ldrs gSa] igpkfu, %&
dhV (c) phy(b)
lkai (d)
(a)
fgj.k
cdjh
ykseM+hHksfM;k
'ksj
ikni
fodYi :-(a) (b) (c) (d)
(1) e;wj pwgk esa<+d [kjxks'k(2) [kjxks'k pwwgk esa<+d e;wj(3) [kjxks'k esa<+d pwgk e;wj(4) esa<+d pwgk [kjxks'k e;wj
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97. In the given diagram, which of the followingoption correctly represent A, B, C and D ?
AB
CD
Figure :- Representing global biodiversity,Proportionate number of species ofmajor taxa of Invertebrates.
A B C D
(1) Otheranimalgroups
Molluscs Crustaceans Insects
(2) Otheranimalgroups
Crustaceans Molluscs Insects
(3) Insects Crustaceans Molluscs Otheranimalgroups
(4) Insects Molluscs Crustaceans Otheranimalgroups
98. Which statement is incorrect regarding functionsof predator ?(1) Predators act as conduits for energy transfer
across trophic level.(2) Predators over exploits its prey.(3) Predators keep prey population under control.(4) Predators maintain species diversity in a
community.99. Read the following statements (A-D) for adipose
connective tissue :-(A) It is a type of dense connective tissue.(B) It is located mainly beneath the skin.(C) The cells of this tissue are specialised to store fat.(D) The excess of nutrients which are not used
immediately are converted into fats and arestored in this tissue.
How many of the above statements are correct?(1) Four (2) Three (3) Two (4) One
97. fn, gq, fp= esa fuEu esa ls dkSulk fodYi A, B, C vkSjD dks lgh ls n'kkZrk gS ?
AB
CD
fp= :- oSf'od tSo fofo/krk dk izfrfuf/kRo] vds'k:dhtkfr ds oxZdksa dh vuqikfrd la[;kA
A B C D
(1) vU;izkf.klewg
eksyLd ØLVSf'k;k dhV
(2) vU;izkf.klewg
ØLVSf'k;k eksyLd dhV
(3) dhV ØLVSf'k;k eksyLd vU; izkf.klewg
(4) dhV eksyLd ØLVSf'k;k vU; izkf.klewg
98. Hk{kd ds dk;Z ls lEcaf/kr uhps fn, x, dFkuksa esa ls dkSulkdFku vlR; gS ?(1) Hk{kd fHkUu-fHkUu iks"kd Lrjksa ij ÅtkZ LFkkukUrj.k ds
L=ksr ds :i esa dk;Z djrs gSaA(2) Hk{kd vius Hk{k dk vfr'kks"k.k djrs gSaA(3) Hk{kd Hk{k dh lef"V dks fu;af=r j[krk gSa(4) Hk{kd leqnk; esa tkrh; fofo/krk dks cuk, j[krs
gSaA99. fuEu (A-D) dFkuksa dks olk Ård ds fy;s if<;s :-
(A) ;g ,d çdkj dk la?ku la;ksth Ård gSA(B) ;g eq[;rk Ropk ds uhps fLFkr gksrk gSA(C) bl Ård dh dksf'kdk,¡ olk laxzg.k ds fy, fof'k"V
gksrh gSA(D) Hkkstu ds tks inkFkZ ç;ksx esa ugha vkrs] os olk ds :i
esa ifjofrZr dj bl Ård esa laxzfgr dj fy, tkrsgSA
mijksDr esa ls fdrus dFku lgh gS\(1) pkj (2) rhu (3) nks (4) ,d
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100. Which of the following are true for retina ?(a) Photoreceptor layer is the outermost layer of retina.(b) It contains a point at which visual acuity is greatest.(c) The action potential are generated in the
photoreceptor layer.(d) The point at which the optic nerve leaves the
eyeball is known as fovea centralis.(e) The modified apolar neurons which are present
in retina are also known as amacrine cells.(1) a, b, c, d (3) a, b and e(3) a, b and d (4) c, d and e
101. Which is not true with respect to MOET ?(1) Cow is administered with FSH like hormone(2) Cow produces 6-8 eggs/cycle(3) Cow is mated with elite bull or artificial
insemination(4) Fertilized eggs are recovered surgically and
developed in in vitro102. Transverse section of a plant material show the
following anatomical characters.(a) Hypodermis is sclerenchymatous.(b) Vascular bundles are conjoint, closed and
scattered in the ground tissue.(c) Phloem parenchyma is absent.On the basis of above observation the materialconcludes as :-(1) Monocot stem (2) Dicot stem(3) Monocot root (4) Dicot root
103. Find out the correct match from the following table:-
Column - I Column - II Column - III
(i) Elaioplasts 80sRibosomes
Store oil andfats
(ii) Kinetochores Discoid,ProteinaceousStructure
Actual site ofattachment ofspindle fibres
(iii) Axoneme PossessesMicrofilamentonly
Form internalstructure ofcilia andflagella
(iv) Nuclear porecomplex
Nucleoplasminprotein ispresent
Bidirectionalmovement ofRNA andproteins
(1) i, ii, iii, iv (2) ii, iii, iv(3) i, ii, iii (4) ii, iv
100. fuEufyf[kr esa dkSu ls dFku jsfVuk ds lanHkZ esa lgh gS\(a) izd'k laosnh ijr jsfVuk dh lcls ckgjh ijr gSA(b) bl ij fcanq mifLFkr gksrk gS tgk¡ ij n`f"V Li"Vrk lcls
vf/kd gksrh gSA(c) izdk'k laosnh ijr esa lfØ; foHko mRiUu gksrs gSA(d) og fcanq tgk¡ ls n`d raf=dk us= xksyd ls ckgj fudyrh
gS Qksfo;k lsaVª sfyl dgykrk gSA(e) jsfVuk ij mifLFkr :ikarfjr v/kqzoh; raf=dk dksf'kdk;sa
,sekØkbu dksf'kdk;sa Hkh dgykrh gSA(1) a, b, c, d(3) a, b rFkk e(3) a, b rFkk d (4) c, d rFkk e
101. MOET ds lanHkZ esa fuEufyf[kr esa ls D;k lgh ugha gS\(1) xk; esa FSH dh rjg ds gkeksZu fn;s tkrs gSaA(2) xk; esa izfr pØ 6-8 v.Ms mRiUu gksrs gSaA(3) xk; dk mPp Js.kh cSy ls eSFkqu djok;k tkrk gS vFkok
mls Ïf=e oh;Zlsfpr fd;k tkrk gSaA(4) fu"ksfpr v.Ms 'kY; fpfdRlk }kjk izkIr fd;s tkrs gaS
rFkk Ïf=e :i ls fodflr fd;sA102. ikni Hkkx ds vuqçLFk dkV esa fuEu 'kkjhfjdh; y{k.k çnf'kZr
gksrs gSA(a) gkbiksMfeZl LFkwydks.kksÙkd dh cuh gqbZ(b) laogu iwy la;qDr] can rFkk Hkj.k ÅÙkd esa fc[kjs
gq,(c) ¶yks,e e`nqÙkd vuqifLFkrmijksDr y{k.kks a ds vk/kkj ij fn;k x;k ikni dk HkkxgSa :-(1) ,dchti=h ruk (2) f}chti=h ruk(3) ,dchti=h tM + (4) f}chti=h tM+
103. uhps nh xbZ rkfydk esa ls lgh lqesfyr fodYiksa dks igpkfu;s:-
dkWye - I dkWye - II dkWye - III
(i) rsy yod 80s jkbckslkse rsy o olk dkHk.Mkj.k
(ii) dkbusVksdksj fMLduqek] izksVhu;qDr lajpuk
rdqZrarqvksa dslayXu gksus dsokLrfod LFky
(iii) v{klw= dsoy lw{erarqvksadk cuk gqvk
i{ekHk od'kkfHkdk dhvkarfjd lajpukdk fuekZ.k
(iv) U;wfDyvjiksjdkWeIysDl
U;wfDy;ksIykfTeuizksVhu mifLFkrgksrk gS
vkj- ,u- ,- oizksVhu f}fnf'kdxfr djrs gSa
(1) i, ii, iii, iv (2) ii, iii, iv(3) i, ii, iii (4) ii, iv
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104. In "Rivet popper hypothesis" (paul ehrlich) rivetIndicates :-
(1) Ecosystem (2) Biosphere
(3) Organism (4) Species
105. Identify the correct match from the column I, IIand III.
Column-I Column-II
(1)
(2)
(3)
(4)
(a)
(b)
(c)
(d)
RBC
Platelets
Neutrophil
Eosinophil
Column-III
(i)
(ii)
(iii)
(iv)
Coagulation
Transport of respiratory gas
Resist infection
Phagocytosis
(1) 1-d-iii 2-b-iv 3-a-ii 4-c-i
(2) 1-d-iii 2-c-iv 3-b-i 4-a-ii
(3) 2-c-iii 1-d-i 3-b-ii 4-a-iv
(4) 2-b-i 1-c-iii 3-d-iv 4-a-ii
106. Which one of the following options gives thecorrect categorisation of six bones according totheir position (A, B, C) they give out ?
AFore Limb
BCranium
CFacial
(1) Ulna, Frontal Mandible,Carpal
Nasal, Ethmoid
(2) Ulna, Carpal Frontal Nasal, Ethmoid,Mandible
(3) Ulna, Carpal Frontal,Ethmoid
Mandible,Nasal
(4) Ulna Carpal,Frontal
Nasal, Ethmoid,Mandible
107. If for some reason our goblet cells arenon-functional, this will adversely affect ?
(1) Smooth movement of food down the intestine
(2) Production of somatostatin
(3) Secretion of Pepsin
(4) Secretion of Intrinsic factor
104. ßfjoV iksij ifjdYiukÞ (iky ,gjfyd) esa fjoV n'kkZrkgS :-
(1) bdksflLVe (2) tSo e.My(3) tho (4) tkfr
105. fuEu fn;s x;s dkWye I, II vkSj III dks lgh feyku djdsfodYi dk p;u dhft,A
(1)
(2)
(3)
(4)
(a)
(b)
(c)
(d)
yky :f/kjk.kq
IysVysV~l
U;wVªksfQy
bvksfluksfQy
(i)
(ii)
(iii)
(iv)
Ldanu
'olu xSlks ds ifjogu
laØe.k ls cpko
Hk{k.k
(1) 1-d-iii 2-b-iv 3-a-ii 4-c-i
(2) 1-d-iii 2-c-iv 3-b-i 4-a-ii
(3) 2-c-iii 1-d-i 3-b-ii 4-a-iv
(4) 2-b-i 1-c-iii 3-d-iv 4-a-ii
106. fuEufyf[kr esa ls fdl fodYi esa N% vfLFk;ksa dks mudsvius&vius LFkku (A, B, C) ds vuqlkj lgh&lgh Js.khesa j[kk x;k gS\
Avxz ikn
Bdikyh;
Cvkuuh
(1) vYuk] ÝaVy esaMhcy]dkiZy
uSly] ,Fkeks;M
(2) vYuk] dkiZy ÝaVy uSly] ,Fkeks;M]esaMhcy
(3) vYuk] dkiZy ÝaVy],Fkeks;M
esaMhcy] usly
(4) vYuk dkiZy]ÝaVy
usly] ,Fkeks;M]esaMhcy
107. ;fn fdlh dkj.ko'k gekjh xkWCysV (dy'k) dksf'kdk dk;Zfoghutks tk,sa rks mlls fdl ij gkfudkjd izHkko iMs+xk ?(1) vka= esa ls Hkkstu dh lgt xfr ij(2) lkseSVksLVSfVu ds mRiknu ij(3) isIlhu ds L=ko.k ij(4) bUVªhUlhd dkjd dk L=ko.k
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108. Find out correct match from the following table:-
Column I Column II Column III
(i) PCT Simplesquamousepithelium
70-80% ofelectrolytesand H2Oreabsorption.
(ii) DCT Cuboidal brushborderepithelium
Secretion ofglucose
(iii) Collectingduct
Extend fromcortex to medulla
Small amountof urea isabsorbed inmedulla fromthis region
(1) (i) and (ii) only(2) (iii) only(3) (ii) and (iii) only(4) (ii) only
109. In the given figure identify the part of ear whichis responsible for hearing and contains organ ofcorti.
ab
c
d
e
fgh
(1) c, d and e (2) only g(3) only f (4) all of the above
110. + + – –
+ + – –
+ + – –
+ + – –
The flow of electric current on the inner surfaceof neuron will be :-(1) From left to right(2) From Right to left(3) There will be no current flow(4) Direction is not certain
108. fuEu lkj.kh esa ls lgh feyku dk pquko djsa :-
LrEHk I LrEHk II LrEHk III
(i) PCT ljy 'kYdhmidyk
70-80% yo.kksarFkk ty dkvo'kks"k.k
(ii) DCT cz'k ckMZj?kukdkjmidyk
Xywdkst dkL=ko.k
(iii) laxzkgdufydk
dkVsZDl lsesMqyk rdfoLrkfjr
bl Hkkx }kjkdqN ek=k esa;wfj;k dk eSMqykesa vo'kks"k.k
(1) dsoy (i) rFkk (ii)(2) dsoy (iii)(3) dsoy (ii) rFkk (iii)(4) dsoy (ii)
109. fn, x, fp= esa d.kZ ds ml Hkkx dks igpkus tks Jo.k dsfy, mrjnk;h gS rFkk ftlds dkWjVkb ds vax ik;s tkrsgSaA
ab
c
d
e
fgh
(1) c, d rFkk e (2) dsoy g(3) dsoy f (4) mijksDr lHkh
110. + + – –
+ + – –
+ + – –
+ + – –
raf=dk dksf'kdk ds vkarfjd Lrj ij fo|qr /kkjk dk izokggksxk :-(1) cka, ls nkbZa vksj(2) nkbZ ls ckbZ vksj(3) dksbZ izokg ugha(4) fn'kk fuf'pr ugha
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111. Identify the symmetry shown below as well as therelated explanation and select the right option :-
Symmetry Explanation
(1) Asymmetry Any plane that passes throughthe centre does not divide theminto equal halves.
(2) Radial The body can be divided intoidentical left and right halves inonly one plane
(3) Bilateral The body can be divided intoidentical left and right halves inonly one plane
(4) Radial Any plane passing through thecentral axis of the body dividesthe organism into two identicalhalves
112. Find out the correct match from the following table:-
Column I Column II Column III
(i) Sponges Asymmetrical Porifera
(ii) Comb jelly Fresh water Ctenophora
(iii) Flatworms Diploblastic Platyhelminthes
(1) i only (2) i and ii(3) iii only (4) ii and iii
113. In male Cockroach genital chamber lie at the hindend of abdomen with which of the following itsnot bounded :-(1) 9th tergum dorsally (2) 10th tergum dorsally(3) 9th sternum ventrally (4) 10th sternum ventrally
114. Following factor is/are responsible for formationof oxyhaemoglobin :-(a) PO2 high (b) PCO2 low(c) H+ conc high (d) Temp low(1) a, b and d (2) a, b and c(3) a, c and d (4) b, c and d
111. fn, x, fp= fd lfEer igpkus rFkk fn, fooj.k ds lkFkfeyku dj lgh fodYi pqus :-
lfEefr fooj.k
(1) vlfEefr dsUnz ls xqtjus okyk dksbZ Hkh v{k bUgsanks leku Hkkx esa foHkkftr ughadjrk
(2) vjh; dsoy vnk }kjk 'kjhj dks leku nk,arFkk ck,a Hkkx esa foHkkfrt dj ldrkgSA
(3) f}ik'kZo dsoy vnk }kjk 'kjhj dks leku nk,arFkk ck,a Hkkx esa foHkkfrt dj ldrkgSA
(4) vjh; dsUnz ls xqtjus okyk dkbZ Hkh vnk'kjhj dks nks leku Hkkxksa esa foHkkftrdjrk gSaA
112. fuEu lkj.kh esa lgh feyku igpkus :-
dkWye I dkWye II dkWye III
(i) Liat vlfEefr iksjhQsjk
(ii) dkac tSyh vyo.kh; ty VhuksQksjk
(iii) piVs Ïfe f}Lrjh; IysfVgSYehaFk
(1) dsoy i (2) i rFkk ii(3) dsoy iii (4) ii rFkk iii
113. uj dkWdjksp esa tuu dks"B mnj ds i'p Hkkx esa mifLFkrgksrk gSa tks fd fuEu }kjk f?kjk ugha gksrk gSa :-
(1) i`"Bh; 9oha VxZe (2) i`"Bh; 10oha VxZe
(3) v/kjh; 9oha lVZe (4) v/kjh; 10oha lVZe
114. vkWDlhgheksXyksfcu ds fuekZ.k ds fy, fuEu dkjd mrjnk;hgSa :-(a) PO2 vf/kd (b) PCO2 fuEu(c) H+ conc vf/kd (d) rkieku de(1) a, b rFkk d (2) a, b rFkk c(3) a, c rFkk d (4) b, c rFkk d
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115. Which one of the following is not a ecologicalimportance of moss plants ?(1) Some mosses provide food for herbaceous
mammals birds and other animals(2) Very high water holding capacity of mosses
is useful for trans-shipment of living materials(3) Mosses along with lichens are the pioneering
organism to colonise rocks(4) Mosses form dense mats on the soil and reduce
the impact of falling rain116. Axile placentation is found in :-
(1) Trifolium (2) Lemon(3) Pea (4) Primrose
117. Most common abiotic pollinating agent for plantis :-(1) Anemophily (2) Hydrophily(3) Pollination by bees (4) Pollination by birds
118. Represented below is the inheritance pattern of acertain type of traits in humans. Which one of thefollowing conditions could be an example of thispattern ?
Father Mother
Son Daughter
firk ekrk
iq=hiq=
(1) Thalassemia (2) Haemophilia(3) Colour blindness (4) Hypertrichosis
119. During which stage, Ventricles of heart do notreceive blood :-(1) Atrial systole (2) Ventricular diastole(3) Ventricular systole (4) Joint diastole
120. The cambium ring becomes active and formscells.(1) Towards Pith for secondary xylem and
secondary phloem.(2) Toward periphery for secondary Phloem and
Secondary xylem.(3) Towards pith for secondary Phloem and
towards periphery for secondary xylem.(4) Towards pith for secondary xylem and
towards periphery for secondary phloem.
115. fuEu esa ls dkSulk ekWl ikniksa dk ikfjfLFkfrdh egRo ughgS :-(1) dqN ekWl 'kkdh; Lru/kkfj;ks] if{k;ksa o tUrqvksa ds fy;s
Hkkstu iznku djrs gSA(2) ekWl dh vR;f/kd ty /kkj.k {kerk thfor inkFkks± dks
tgktksa }kjk LFkkukUrfjr djus esa mi;ksxh gSA(3) ykbdsu ekWl ds lkFk loZizFke ,sls ltho gS] tks pêkuksa
ij mxrs gSA(4) ekWl feêh ij ,d l?ku ijr cukrs gS ftlls rst ckSNkj
ls e`nk dks gksus okys gkfudkjd izHkko esa deh vkrh gSA116. LrEHkh; chtk.MU;kl ik;k tkrk gS :-
(1) VªkbQksfy;e esa (2) uhacw esa(3) eVj esa (4) fizejkst esa
117. vthfo; ijkx.k esa lokZf/kd loZekU; ijkx.k gSa :-(1) ok;q ijkx.k (2) ty ijkx.k(3) e/kqefD[k;ksa }kjk ijkx.k (4) i{kh;ksa }kjk ijkx.k
118. uhps fn;s tk jgs vkjs[kh; fu:i.k esa ekuoksa esa ik;s tkusokys ,d [kkl izdkj ds fo'ks"kdksa (VsVªksa) dk oa'kkxfrizfr:i n'kkZ;k x;k gSA crkb, fd fuEufyf[kr esa ls dkSulh,d n'kk gS] tks blh izfr:i dk ,d mnkgj.k gks ldrhgS ?
Father Mother
Son Daughter
firk ekrk
iq=hiq=
(1) Fksyslsfe;k (2) gheksQhfy;k(3) o.kkZU/krk (4) gkbijVªkbdksfll
119. fdl voLFkk esa ân; ds fuy; jDr xzg.k ugha djrsgSa :-(1) vafyn ladqpu (2) fuy; f'kfFkyu(3) fuy; ladqpu (4) vuqf'kfFkyu
120. dSfc;e oy; lfØ; gks tkrk gS rFkk _________ ds fy,dksf'kdk,sa cukrk gSA(1) Hkhrj fiFk dh vksj f}rh;d tkbye vkSj f}rh;d
¶yks,eA(2) ckgj ifjf/k dh vksj f}rh;d ¶yks,e vkSj f}rh;d
tkbyeA(3) Hkhrj fiFk dh vksj f}rh;d ¶yks,e vkSj ckgj
ifjf/k dh vksj f}rh;d tkbyeA(4) Hkhrj fiFk dh vksj f}rh;d tkbye vkSj ckgj ifjfèk
dh vksj f}rh;d ¶yks,eA
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121. fcUnqL=ko dh izfØ;k gksrh gSA(1) tc ewy nkc ,oa ok"iksRltZu dh nj nksuksa gh mPp
gksA(2) tc ewy nkc de ,oa ok"iksaRltZu dh nj mPp
gks(3) tc ewy nkc de ,oa ok"iksRltZu dh nj leku
gksA(4) tc ewy nkc vf/kd ,oa ok"iksRltZu dh nj de
gksA122. fn, x, fp= ds vk/kkj ij lgh fodYi pqfu,&
A
B
(1) A = o`Dd ds vf/kdre usÝku bl Hkkx esa gksrs gSa vkSjoklk jsDVk gksrh gSAB = yxHkx 10 - 20% usÝkWu fcuk oklk jsDVk ds oDdds bl Hkkx esa gksrs gSaA
(2) A = yxHkx 50% usÝku bl Hkkx esa fcuk oklk jsDVkds gksrs gSaAB = o`Dd ds yxHkx 80% usÝkWu bl Hkkx esa gksrsgSaA
(3) A = o`Dd ds yxHkx 80 - 90% usÝkWu fcuk oklkjsDVk ds bl Hkkx esa gksrs gSaAB = o`Dd ds yxHkx 10 - 15% usÝkWu bl Hkkx esagksrs gSaA
(4) A = o`Dd ds yxHkx 80 - 90% usÝkWu oklk jsDVkds lkFk bl Hkkx esa gksrs gSAB = o`Dd ds yxHkx 10 - 15% usÝkWu oklk jsDVkds lkFk bl Hkkx esa gksrs gSaA
123. fp= esa fn[kk;k x;k jk sx fdlds }kjk QSyrk gS : -
(1) laØfer Hkkstu rFkk ikuh }kjk(2) laØfer O;fDr ds rkSfy, bLreky ls(3) jksxokgd eknk ePNj ds dkVus ls(4) fcUnq dk laØe.k
121. The process of guttation takes place.(1) When root pressure as well as rate of
transpiration are high(2) When root pressure is low and rate of
transpiration is high(3) When root pressure is equals the rate of
transpiration(4) When the root pressure is high and rate of
transpiration is Low122. On the basis of following given diagram,
select the correct option given below :
A
B
(1) A = Most of the kidney nephrons located inthis region and contains vasa rectaB = Approx. 10 - 20% of kidney nephronswithout vara recta located in this region
(2) A = About 50% of kidney nephronswithout vasa recta located in this regionB = About 80% of kidney nephrons locatedin this region of kidney
(3) A = About 80 - 90% of total kidney nephronswithout vasa recta located in this regionB = About 10 - 15% of total kidney nephronslocated in this region
(4) A = About 80 - 90% of total kidney nephronswith vasa recta located in this regionB = About 10 - 15% of total kidney nephronswith vasa recta located in this region
123. Disease which is shown in the figure spreads through:
(1) Contaminated food and water(2) Using towel of infected individual(3) Through the bite by female mosquito vectors(4) Droplet infection
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124. Read the following statements carefully and selectthe correct option given below :(i) Nissl's granules in cell body of neurons
involved in protein synthesis(ii) Unmyelinated nerve fibres are commonly
found in autonomous and the somatic neuralsystem
(iii)Chemical neurotransmitters found in bothpre-and post synaptic knobs
(iv)unipolar neuron, i.e., cell body with one axononly, usually seen during embryonic stage
How many of the above given statement is/areincorrect ?(1) One (2) Two(3) Three (4) Four
125. Intercalated discs are found in -(1) Epithelium (2) Skeletal muscle(3) Smooth muscle (4) Cardiac muscle
126. Given below are the statements related with thefunctioning of different parts of human malereproductive system w.r.t. the labeled structure inthe diagram, select the correct statements :
(1) A-secretes an alkaline fluid which containfructose for use in ATP production by sperm
(2) B-produce an alkaline substance that protectsperm by neutralizing acid in the urethra
(3) C-Stores sperms before ejaculation and site forsperm functional maturation
(4) D-Collects sperms from testicular lobules andsend them to Epididymis through vasaefferentia
How many statements are correct ?(1) one (2) two(3) three (4) four
124. uhps fn, dFkuksa dk v/;;u dj mÙkj nsa&
(i) raf=dk dksf'kdk ds dksf'kdkdk; esa ekStwn Nissl'sgranule izksVhu la'ys"k.k ls lEcfU/kr gSA
(ii) Autonomous vkSj Somatic neural ra= es alkekU;r;k Unmyelinated nerve fibres ik, tkrsgSaA
(iii)jlk;fud ra f=dkokgd nk suk s a pre vk Sj postsynaptic knobs esa ik, tkrs gSaA
(iv),d /kzqoh; Neuron ,d axon ds lkFk dksf'kdk tkslkekU;r;k% xHkZdky esa feyrk gSA
mijksDr fn, x, dFkuksa esa ls fdrus vlR; gS\
(1) ,d (2) nks
(3) rhu (4) pkj125. varfOZk"V fMLd ik;s tkrs gSa&
(1) midyk (2) dadky is'kh(3) fpduh is'kh (4) ân; is'kh
126. uhps fn;s x, uj tuu ra= ds fp= esa n'kkZ;h xbZ lajpukvksads ckjs esa fn;s x;s dFkuksa dks if<+;s rFkk lgh dFkuksa dkspqfu;sA
(1) A -{kkjh; nzO; dk òko.k djrk gS ftlesa ekStwnfructose dk 'kqØk.kq }kjk ATP mRiknu esa mi;ksx gksrkgSA
(2) B -{kkjh; inkFkZ mRiUu djrk gS tks ew=ekxZ ds vEydks mnklhu dj 'kqØk.kq dh lqj{kk djrk gS
(3) C - 'kqØk.kq dk la/kkj.k djrk gS vkSj mlds ifjiDogksus dk LFky gSA
(4) D - o`"k.k ikfydk ls 'kqØk.kq ,d= dj 'kqØ okfgdk,¡ds ek/;e ls vf/ko`"k.k esa Hkstrh gS
fdrus dFku lR; gS\(1) ,d(2) nks(3) rhu(4) pkj
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127. The signals for parturition originate from the fullydeveloped foetus and the placenta which inducemild uterine contraction called A it triggersrelease of B from the maternal pituitary.
A B(1) Foetal ejection reflex FSH
(2) Parturition Oxytocin
(3) Foetal ejection reflex Oxytocin
(4) Parturition LH
128. The brain capacity of Neandertnal man was :–
(1) 600 cc (2) 900 cc
(3) 1650 cc (4) 1400 cc
129. The process of evolution of different species ina given geographical area starting from a point andliterally radiating to other area of geography(habitat) is called :-
(1) Convergent evolution
(2) Parallel evolution
(3) Adaptive radiation
(4) Both (1) and (2)
130. Which epithelium provide protection againstchemical and mechanical stresses and also playa limited role in secretion and absorption :-
(1) Simple columnar epithelium
(2) Transitional epithelium
(3) Compound epithelium
(4) Glandular epithelium
131. Select the answer which correctly matches theendocrine gland with the hormone it secretes andits function/deficiency symptom :
Endocrinegland Hormone Function/deficiency
symptoms
(1) Corpusluteum Testosterone Stimulates
spermatogenesis
(2) Anteriorpituitary Oxytocin
Stimulates uteruscontraction duringchild birth
(3) Posteriorpituitary
GrowthHormone(GH)
Oversecretionstimulates abnormalgrowth
(4) Thyroidgland Thyroxine Lack of iodine in diet
results in goitre
127. izlo ds ladsr iw.kZfodflr xeZ ,oa vijk ls mRiUu gksrsgS tks gYds xHkkZ'k; ladqpuks a dks iz sfjr djrs gSa ftUgsa A dgrs gSA ;g ekr` ih;w"k xzafFk ls B dsfudyus dh fØ;k dks lfØ; cukrh gS&
A B(1) xHkZ mR{ksi.k izfrorZ FSH
(2) izlo vkWDlhVksflu(3) xHkZ mR{ksi.k izfrorZ vkWDlhVksflu(4) izlo LH
128. fu,.MjFky ekuo dh efLr"d {kerk Fkh :–(1) 600 cc (2) 900 cc
(3) 1650 cc (4) 1400 cc
129. ,d fo'ks"k H kw&H kkSxksfyd {ks= esa fofHkUu iztkfr;ksa ds fodkldk izØe ,d fcUnq ls izkjEHk gksdj vU; Hkw&HkkSxksfyd {ks=ksard izlkfjr gksus dks dgrs gS :-
(1) vHkhlkjh mf}dkl
(2) lekukUrj mf}dkl
(3) vuqdqyh fofdj.k
(4) (1) o (2) nksuksa
130. fdl midyk ds }kjk jklk;fud ,oa ;kaf=d rukoksa ls lqj{kkizkIr gksrh gS rFkk L=ko.k ,oa vo'kks"k.k esa Hkh lhfer HkwfedkfuHkkrh gS\(1) ljy LrEHkkdkj midyk(2) laØe.k midyk(3) la;qDr midyk(4) xazfFky midyk
131. var% L=koh xzafFk ds lkFk mlds }kjk L=kfor gkWeksZu rFkkmlds dk;Z@vHkko y{k.k dk lgh feyku djus okys fodYidks pqfu, :
var%L=koh xz afFk
gk Weks Zu dk;Z@vHkko y{k.k
(1) dkiZlY;wfV;e
VsLVksLVsjkWu 'kqØk.kqtuu dks míhfir djrk gSA
(2) vxzfifV~;wVjh
vkWDlhVksflu cPps ds iSnk gksus ds le;xHkkZ'k;&ladqpu dks míhfir djrhgSA
(3) i'pfifV~;wVjh
of¼ gkWeksZu(GH)
blds vfrL=o.k ds dkj.kvlkekU; o`f¼ dk míhiu gksrk gSA
(4) Fkk;jkWbMxzafFk
FkkW;jkWfDlu vkgkj esa vk;ksMhu ds vHkko dsdkj.k ?ksa?kk (xk;Vj) gks tkrk gSA
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132. ij[k uyh f'k'kq (VsLV V~;wc csch) dk;ZØe esa fuEufyf[kresa ls fdl ,d rduhd dk bLrseky fd;k tkrk gS ?
(1) ;qXed var% QSyksih LFkkukarj.k (GIFT)
(2) ;qXeut var% QSyksih LFkkukarj.k (ZIFT)
(3) var% dksf'kdkæO;;h 'kqØk.kq bUtsD'ku (ICSI)
(4) var% xHkkZ'k;h oh;Zlspu (IUI)
133. fuEufyf[kr esa ls fdl ,d Qkbye dks mlds nks lkekU;vfHky{k.kkssa ls lgh feyk;k x;k gS \
(1) bdkbuksMesZVk – iapr;h vjh; leferh rFkkvf/kdrj Hkhrjh fu"kspu
(2) eksyLdk – lkekU;r% vaMiztd rFkk ,dVªksdksQksj vFkok osfytjykokZ ds ek/;e ls
ifjo/kZu
(3) vkFkzksZiksMk – 'kjhj 'kh"kZ] o{k ,oa mnj esafoHkkftr vkSj 'olu dkokrdksa }kjk gksuk
(4) dkWMsZVk – fdlh voLFkk ij uksVksdkMZ(i`"BjTtq) dk gksuk ,oa xqnkrFkk ew= fNnzksa dkvyx&vyx ckgj dks[kqyuk
134. fuEufyf[kr esa ls fdl ,d tksM+s esa nksuksa gh tho/kkjh Hkkjresa fons'kkxr Lih'kht gSa\
(1) uhy ipZ] Qkbdl jsfyftvkslk
(2) Qkbdl jsfyftvkslk] ySaVkuk dSeSjk
(3) ySaVkuk dSeSjk] ty dqeqnuh
(4) ty dqeqnuh] izkstksfil flusjsfj;k
135. çdk'k&jklk;fud /kwedksgjk çnw"k.k esa D;k ugha gksrk gS
(1) vkstksu
(2) ukbVªkstu MkbvkWDlkbM
(3) dkcZu MkbvkWDlkbM
(4) PAN (ijvkWDlh ,sfly ukbVsªV)
136. ,d ?kklLFky ikfjra= es fuEufyf[kr esa ls dkSu lhmRikndrk ds lokZf/kd ewY; (gm/m2/yr) dh gksus dh vk'kkdh tkrh gS ?
(1) r`rh;d mRikndrk
(2) ldy mRikndrk (GP)
(3) 'kq¼ mRikndrk (NP)
(4) f}rh;d mRikndrk
132. The Test-tube Baby programme employs whichone of the following techniques ?
(1) Gamete intra fallopian transfer (GIFT)
(2) Zygote intra fallopian transfer (ZIFT)
(3) Intra cytoplasmic sperm injection (ICSI)
(4) Intra uterine insemination (IUI)
133. Which one of the following phyla is correctlymatched with its two general characteristic ?
(1) Echinodermata – Pentamerous radial
Symmetry and mostlyinternal fertilization
(2) Mollusca – Normally oviparous anddevelopment through atrochophore orveliger larva
(3) Arthropoda – Body divided into head,thorax and abdomenand respiration bytracheae
(4) Chordata – Notochord at somestage and separateanal and urinaryopenings to the outside
134. Which one of the following pairs of organisms areexotic species introduced in India ?
(1) Nile perch, Ficus religiosa
(2) Ficus religiosa, Lantana camara
(3) Lantana camara, Water hyacinth
(4) Water hyacinth, Prosopis cinereria
135. Photochemical smog pollution does not contain:-
(1) Ozone
(2) Nitrogen dioxide
(3) Carbon dioxide
(4) PAN (peroxy acyl nitrate)
136. Which of the following is expected to havethe highest value (gm/m2/yr) in a grasslandecosystem ?
(1) Tertiary production
(2) Gross production (GP)
(3) Net production (NP)
(4) Secondary production
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137. The figure given below is a diagrammaticrepresentation of response of organisms to abioticfactors. What do a, b and c represent respectively?
ac
b
Inte
rnal
Lev
el
External Level
(a) (b) (c)(1) regulator conformer partial regulator(2) conformer regulator partial regulator(3) regulator partial regulator conformer
(4) partial regulator regulator conformer
138. A country with a high rate of population growthtook measures to reduce it. The figure belowshows age-sex pyramids of populations A and Btwenty years apart. Select the correctinterpretation about them :-
15 12 9 6 3 0 3 6 9 12 15
0–9
10–19
20–29
30–39
40–49
50–59
60–69
70 +FemalesMales
'A'
Age
(in
year
s)
Age
15 12 9 6 3 0 3 6 9 12 15
0–9
10–19
20–29
30–39
40–49
50–59
60–69
70 +FemalesMales
'B'
Age
(in
year
s)
Age
Explainations :(1) "A" is the earlier pyramid and no change has
occurred in the growth rate(2) "A" is more recent and shows slight reduction
in the growth rate(3) "B" is the earlier pyramid and shows stabilised
growth rate(4) "B" is more recent showing that population
is very young
137. uhps fn;s tk jgs fp= esa tho/kkfj;ksa dh vtSfod dkjdksads izfr vuqfØ;k dk ,d vkjs[kh; fu:i.k fn;k x;k gSAbuesa js[kk,a a, b rFkk c Øe'k% fduds izfrn'kZ gS\
ac
b
Hkhrj
h Lrj
ckgjh Lrj
(a) (b) (c)(1) fu;ked la:id vkaf'kd fu;ked
(2) la:id fu;ked vkaf'kd fu;ked
(3) fu;ked vkaf'kd fu;ked la:id
(4) vkaf'kd fu;ked fu;ked la:id
138. ,d ns'k esa tula[;k o`f¼ dh nj cgqr Å¡ph Fkh vkSj mlusmls de djus ds dne mBk;sA uhps fn;s tk jgs fp= esa20 o"kZ ds varjky okyh nks tula[;kvksa A vkSj B ds vk;qlsDl fijkfeM fn[kk;s x;s gSaA crkb, buds laca/k esa uhpsnh tk jgh O;k[;kvksa esa ls dkSu lh ,d lgh gS ?
15 12 9 6 3 0 3 6 9 12 15
0–9
10–19
20–29
30–39
40–49
50–59
60–69
70 +
'A'
uj eknk,¡
vk;q
vk;
q (o"
kZ esa)
15 12 9 6 3 0 3 6 9 12 15
0–9
10–19
20–29
30–39
40–49
50–59
60–69
70 +
'B'
uj eknk,¡
vk;q
vk;
q (o"
kZ esa)
O;k[;k,¡ %(1) "A" igys dk fijkfeM gS vkSj mlesa dksbZ ifjorZu ugha
gqvkA(2) "A" ckn dk vf/kd uwru fijkfeM gS vkSj mlesa o`f¼
nj FkksM+h uhps vk;h gSA(3) "B" igys dk fijkfeM gS vkSj mlesa tula[;k o`f¼
nj fLFkj fn[kk;h iM + jgh gSA(4) "B" ckn dk vf/kd uwru fijkfeM gS vkSj mlesa
tula[;k esa ; qok oxZ T;knk cM+k gSA
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139. Which one of the following types of organismsoccupy more than one trophic level in a pondecosystem ?
(1) Frog (2) Phytoplankton
(3) Fish (4) Zooplankton
140. Molecular basis of organ differentiation dependson the modulation in transcription by :-
(1) Anticodon (2) RNA polymerase
(3) Ribosome (4) Transcription factor
141. A tumour inducing plasmid widely used in theproduction of transgenic plants is that of :-
(1) Escherichia coli
(2) Bacillus thuringiensis
(3) Staphylococcus aureus
(4) Agrobacterium tumefaciens
142. Which of the following sequence is palindromic?
(1) GAATTC (2) ATGCAG
CTTAAG TACGTC
(3) CTTAGC (4) TGCATC
GAATCG ACGTAG
143. In Hershey-chase experiments, 35S labelled________ and 32P labelled _________respectively were used.
(1) Bacteria, DNA
(2) DNA, Protein
(3) Protein, DNA
(4) DNA, mRNA
144. Mother and father of a Person with 'O' blood grouphave 'A' and 'B' blood group, respectively. Whatwould be the genotype of both mother and father?
(1) Mother is homozygous for 'A' blood group andfather is heterozygous for 'B'
(2) Mother is heterozygous for 'A' blood groupand father is homozygous for 'B'
(3) Both mother and father are heterozygous for'A' and 'B' blood group, respectively
(4) Both mother and father are homo zygous for'A' and 'B' blood group, respectively
139. fdlh rkykc ikfjra= esa fuEufyf[kr esa ls dkSu ls ,d izdkjds tho ,d ls vf/kd ik s" k.k Lrj i z kIr djrkgS ?
(1) esa<+d (2) ikniIyod
(3) eNfy;k¡ (4) izkf.kIyod
140. vax foHksnu dk vkf.od vk/kkj] VªkalfØI'ku (vuqys[ku)esa fdlds }kjk ekWMqyu ij vk/kkfjr gksrk gS\
(1) ,saVhdksMkWu (2) RNA ikSyhejst
(3) jkbckslske (4) VªkalfØI'ku dkjd
141. ikjthuh ikS/kksa ds cukus esa ftl vcqZn&izsjd IykfTeM dkO;kid bLrseky gksrk gS og fdldk gksrk gS :-
(1) ,s'ksfjfd;k dksykbZ
(2) csflyl Fkqfjaft,safll
(3) LVSfQyksdkWDdl vkSfj;l
(4) ,sxzkscSDVhfj;e VîwfeQsfl,Ul
142. fuEu esa ls dkSu&lk Øe fo;kseØekuqikrh gS \
(1) GAATTC (2) ATGCAG
CTTAAG TACGTC
(3) CTTAGC (4) TGCATC
GAATCG ACGTAG
143. Hershey-chase iz;ksx esa Øe'k% fofdj.k lfØ; lYQj35S _______ o fofdj.k lfØ; QkLQksjl 32P_______mi;ksx esa fy, x,A
(1) thok.kq] Mh- ,u- ,
(2) Mh- ,u- ,] izksVhu
(3) izksVhu] Mh- ,u- ,
(4) Mh- ,u- ,-] ,e vkj,u,
144. 'O' jDr lewg okys O;fDr dh ekrk o firk dk jDr lewgØe'k% 'A' o 'B' gSaA blds ekrk&firk dk thuksVkbi D;kgksxk
(1) ekrk jDr lewg 'A' ds fy, le;qXedh rFkk firk jDrlewg 'B' ds fy, fo"ke;qXedh gSA
(2) ekrk jDr lewg 'A' ds fy, fo"ke;qXedh rFkk firkjDr lewg 'B' ds fy, le;qXedh gSA
(3) ekrk&firk nksuksa jDr lewg 'A' o 'B' ds fy, Øe'k%fo"ke;qXedh gSaA
(4) ekrk&firk nksuksa jDr lewg 'A' o 'B' ds fy, Øe'k%le;qXedh gSaA
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145. Identify parts A, B, C and D in this figure.
A
B
C
D
(1) A : Seed coat, B : Endosperm, C : Cotyledon,D : Hypocotyl root axis
(2) A : Cotyledon, B : Seed coat, C : Endosperm,D : Hypocotyl root axis
(3) A : Endosperm, B : Cotyledon, C : Seed coat,D : Hypocotyl root axis
(4) A : Hypocotyl root axis, B : Endosperm,C : Seed coat, D : Cotyledon
146. Exine of Pollen is(A) Hard outer layer of Pollen grain(B) Most resistant organic matter known(C) Layer made up of sporopollenin(D) Layer which can stand with high temperature
strong acids and alkali(E) Layer which cannot be degraded by any
known EnzymeWhich one of the following is correct?(1) A and B (2) A, B, C, D(3) A, B, C, D, E (4) A, C, E
147. Match Column-I (organism) with Column-II(reproductive structure)Column-I Column-IIA. Penicillium 1. ConidiaB. Hydra 2. Exogenous budC. Sponge 3.Gemmule
(Endogenous buds)D. Paramecium 4. Binary Fission(1) A : 1, B : 2, C : 3, D : 4(2) A : 4, B : 1, C : 3, D : 2(3) A : 1, B : 3, C : 4, D : 2(4) A : 2, B : 1, C : 4, D : 3
148. Select the incorrect match(1) SCP - Single Cell Protein(2) IRRI - International Rice Research Institute(3) MOET - Multiple Ovulation Embryo Transfer
Technology(4) IUCN - International Union for Conservation
of Nations
145. fn;s x;s fp= esa A, B, C o D dks igpkfu;s
A
B
C
D
(1) A : chtkoj.k, B : Hk z w.kik s "k, C : chti=,D : chti=kèkkj ewy v{k
(2) A : chti=, B : chtkoj.k, C : Hk z w. kik s" k,D : chti=kèkkj ewy v{k
(3) A : Hkz w.kiks"k, B : chti=, C : chtkoj.k, D :chti=kèkkj ewy v{k
(4) A : chti=k/kkj ewy v{k, B : Hkzw.kiks"k, C : chtkoj.k,D : chti=
146. ijkxd.k dk ckg~;pksy gS(A) ijkxd.k dh ckg~; dBksj Lrj(B) Kkr vR;f/kd izfrjks/kh dkcZfud inkFkZ gS(C) ijr tks sporopollenin ls cuk gS(D) ijr tks mPp rki] rst vEy o {kkj dks lgu djus okyh(E) ijr tks fdlh fodj }kjk ugha VwVrhfuEu esa ls dkSu lgh gS\(1) A o B(2) A, B, C, D(3) A, B, C, D, E(4) A, C, E
147. dkWye-I (tho/kkjh) dks dkWye-II (tuukax lajpuk) ds lkFklqesfyr dhft,&Column-I Column-IIA. isuhlhfy;e 1. dksuhfM;kB. gkbMªk 2. cfgZtkr dfydkC. Liat 3. tsE;wy
(vUrZtkr dfydk)D. iSjkehf'k;e 4. f}[kaMu(1) A : 1, B : 2, C : 3, D : 4(2) A : 4, B : 1, C : 3, D : 2(3) A : 1, B : 3, C : 4, D : 2(4) A : 2, B : 1, C : 4, D : 3
148. vlqesfyr dks pqus(1) SCP - Single Cell Protein(2) IRRI - International Rice Research Institute(3) MOET - Multiple Ovulation Embryo Transfer
Technology(4) IUCN - International Union for Conservation
of Nations
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149. A pedigree is shown below for a disease that isautosomal dominant. The genetic make up of thefirst generation is
(1) AA, Aa (2) Aa, aa (3) Aa, AA (4) Aa, Aa150. The squamous epithelium is made of a single thin
layer of flattened cells with irregular boundaries,they are/is found in–(1) The walls of blood vessels (2) Air sacs of lungs(3) Both (1) and (2) (4) Duct of glands
151. See the following enzyme mediated reactionsduring human digestive process–
(a) Starch 'X '¾¾® Diasaccharide
(b) Di & monoglyceride 'Y '¾¾® Fatty acid + Glycerol
In the above reactions the 'X' and 'Y' respectivelyrepresents–(1) Amylase, Lipase (2) Lipase, Sucrase(3) Amylase, Trypsin (4) Trysin, Lipase
152. Find out the respective value of 'X', 'Y' and 'Z' ingiven figure
x
YZ
(1) X = 104 mm Hg (2) X = 40 mm HgY = 40 mm Hg Y = 40 mm HgZ = 40 mm Hg Z = 45 mm Hg
(3) X = 40 mm Hg (4) X = 45 mm HgY = 104 mm Hg Y = 40 mm HgZ = 40 mm Hg Z = 40 mm Hg
149. fp= esa ,d jksx ds fy, oa'kkoyh fn[kkbZ xbZ tks vySafxdØksekslkse izH kkoh gSA izFke ih<+h ds fy, vkuqokaf'kd cukoVgS
ih<+h I
ih<+h II
ih<+h III
(1) AA, Aa (2) Aa, aa (3) Aa, AA (4) Aa, Aa150. 'kYdh midyk Ård ,d piVh dksf'kdkvksa ds irys Lrj
ls curk gS] ftlds fdukjs vfu;fer gksrs gSa] ;g ik;s tkrsgS@gSa&(1) jDr okfgdkvksa dh fHkfÙk esa (2) QsQM+s ds ok;q dks'k esa(3) (1) o (2) nksuksa (4) xzafFk;ksa dh ufydkvksa esa
151. ekuo dh ikpu fØ;kvksa esa fuEufyf[kr ,atkbe }kjk gksusokyh vfHkfØ;kvksa dks ns[ksa %
(a) LVkpZ 'X '¾¾® Mk;lSdsjkbM
(b) MkbZ o eksuksfXljkbM 'Y '¾¾® olh; vEy $ Xyslsjksy
mijksDr vfHkfØ;kvksa esa 'X' rFkk 'Y' Øe'k% iznf'kZr djrsgSa&(1) ,ekbyst] ykbist (2) ykbist] lqØsl(3) ,ekbyst] fVªfIlu (4) fVªfIlu] ykbist
152. fn;s x;s fp= esa 'X', 'Y' rFkk 'Z' ds Øe'k% eku dk irkyxk;s&
flLVsfed /keuh(vkWDlhÏr jDr ogu djrs gq,)
ok;q dwfidk
fu%'oflr ok;qvar%'oflr ok;q
dwfidk ok;qpO 2 = mmHgX
Qq¶Qqlh; /keuh
flLVsfed f'kjk(fovkWDlhÏr jDr ogu djrs gq,)
pO 2= Y pCO 2=45 mmHgpO 2=95 mmHg
pCO 2= Z
'kjhj Ård
pCO 2=40 mmHg
Qq¶Qqlh; f'kjk
(1) X = 104 mm Hg (2) X = 40 mm HgY = 40 mm Hg Y = 40 mm HgZ = 40 mm Hg Z = 45 mm Hg
(3) X = 40 mm Hg (4) X = 45 mm HgY = 104 mm Hg Y = 40 mm HgZ = 40 mm Hg Z = 40 mm Hg
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153. Forebrain consist of–(1) Cerebrum and thalamus(2) Medulla and hypothalamus(3) Pons and cerebrum(4) Medulla and pons
154. The male sex accessory ducts includes allexcept–(1) Rete testis (2) Vasa efferentia(3) Testicular lobules (4) Epididymis
155. S.L. Miller in 1953 used spark discharge apparatuswith–(1) CH4, NH3 and H2 and water vapour at 800°C(2) CH4, NH3 and H2 at 1800°C(3) CH4, NH3 and H2O at 8000°C(4) CO2, NH3 and H2 at 800°C
156. In allergy what will happens–(1) IgE increases(2) IgE decreases(3) Secretion of Histamine increases(4) Both (1) and (3) are correct
157. Which statement is incorrect for AIDS?(1) It is not a congenital disease.(2) AIDS was first reported in 1997.(3) HIV is a retero virus.(4) A widely used diagnostic test for AIDS is
enzyme linked immono-sorbent assay(ELISA).
158. Some important events in the human femalereproductive cycle are given below. Arrange theevents in a proper sequence.I. Secretion of FSH.II. Growth of corpus luteum.III. Growth of the follicle and oogenesis.IV. Ovulation.V. Sudden increase in the levels of LH.(1) III ® I ® IV ® II ® V(2) I ® III ® V ® IV ® II(3) I ® IV ® III ® V ® II(4) II ® I ® III ® IV ® V
159. The correct sequence in the stage in evolution ofmodern man is(1) Homo erectus, Australopithecus, Neanderthal
man, Cro-margnon man, Modern man(2) Neanderthal man, Australopithecus ,
Cro-magnon man, Homo-erectus, Modern man(3) Australopithecus, Neanderthal man,
Cro-magnon man, Homo erectus, Modern man(4) Australopithecus, Homo erectus, Neanderthal
man, Cro-magnon man, Modern man
153. vxz efLr"d cuk gksrk gS&(1) lsjhcze rFkk Fksysel ls(2) esM~;wyk rFkk gkbiksFksysel ls(3) iksal rFkk lsjhcze ls(4) esM~;wyk rFkk iksUl ls
154. iq:"k fyax lgk;d ufydkvksa ds varxZr fdlds vykoklHkh lfEefyr gSa&(1) o`"k.k tkfydk,¡ (2) 'kqØ okfgdk,¡(3) o`"k.k ikfydk (4) vf/ko`"k.k
155. ,l- ,y feyj us 1953 esa LikdZ fMLpktZ midj.k esa mi;ksxfd;k Fkk&(1) CH4, NH3 rFkk H2 o ty ok"i 800°C ij(2) CH4, NH3 rFkk H2, 1800°C ij(3) CH4, NH3 rFkk H2O, 8000°C ij(4) CO2, NH3 rFkk H2, 800°C ij
156. ,sythZ esa D;k gksrk gS&(1) IgE c<+ tkrk gS(2) IgE ?kV tkrk gS(3) fgLVSfeu dk L=o.k c<+ tkrk gS(4) (1) o (3) nksuksa lgha gSa
157. AIDS ds fy;s dkSulk dFku vlR; gS\(1) ;g tUetkr jksx ugha gS(2) ,M~l dk lcls igys 1997 esa irk pykA(3) HIV ,d i'p fo"kk.kq (retero virus) gSA(4) ,M~l ds fy, O;kid :i ls dke esa yk;s tkus okyk
uSnkfud ijh{k.k ,atkbEl layXu izfrj{kk jks/kh vkekiu(ELISA) gSA
158. ekuo eknk dh çtuu pØ dh dqN egRoiw.kZ ?kVuk,¡ uhpsnh x;h gS] bUgsa lgh Øe esa O;ofLFkr djks :-
I. FSH dk L=koII. dkWiZl Y;wVh;e dh o`f¼@fodklIII. iqfVdh; fodkl vkSj v.MtuuIV. v.MksRltZuV. LH ds Lrj esa vpkud rsth(1) III ® I ® IV ® II ® V(2) I ® III ® V ® IV ® II
(3) I ® IV ® III ® V ® II(4) II ® I ® III ® IV ® V
159. vk/kqfud ekuo ds fodkl dh fLFkfr es a lgh ØegS :-(1) gkseks bjsdVl] vkLVªsyksfifFkdl] fu;.MjFky ekuo]
ØkseSXukWu ekuo] vk/kqfud ekuo(2) fu;.MjFky ekuo] vkLVªsyksfifFkdl] ØkseSXukWu ekuo]
gkseks bjsdVl] vk/kqfud ekuo(3) vkLVªsyksfifFkdl] fu;.MjFky ekuo] ØkseSXukWu ekuo]
gkseks bjsdVl] vk/kqfud ekuo(4) vkLVªsyksfifFkdl] gkseks bjsdVl] fu;.MjFky ekuo]
ØkseSXukWu ekuo] vk/kqfud ekuo
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160. Identify the blank spaces A, B and C given in thefollowing table and select the correct answer:
TypeMicrobes
ScientificName
CommercialProduct
Bacterium A Lactic acid
Fungus B Cyclosporin-A
Fungus Penicilliumnotatum
C
(1) A–Lactobacillus, B–Trichodermapolysporum, C–Penicillin
(2) A–Staphylococcus, B–Clostridium,C–Penicillin
(3) A–Lactobacillus, B–Microsporum,C–Penicilin
(4) A–Staphylococcus, B–Microsporum,C–Penicillin
161. Which of the following is correctly matched pair:-(1) Microvilli : Stomach and intestine(2) Ligament and tendons : Dense regular
connective tissue(3) Cilia : Fallopian tube and buccal cavity(4) Hyaline cartilage : Ear pinna, Pliable matrix
162. Read the following statements :-A. Photoperiod affects reproduction in seasonal
breeders, both plants and animals.B. Increase in body mass is considered as
reproduction.C. Metabolism is a defining feature of all living
organism with out exception.D. Self consciousness is a defining property of
every living organism.Choose the correct statements :(1) A and B (2) B and C(3) A and C (4) B and D
163. Choose the incorrect statement aboutphycomycetes :-(1) Members are found in aquatic habitats.(2) Spores are endogenously produced in
sporangium.(3) A zygospore is formed by reduction division(4) They show all type of syngamy.
160. fn;s x;h rkfydk esa [kkyh txg A, B vkSj C dks igpkfu,rFkk lgh fodYi dks pqfu, :
jksxk.kq dsizdkj
oSKkfud uke O;kikfjd inkFk Z
thok.kq A ysDVhd , slhM
dod B lkbdyksLiksfju-A
dod isfulhfy;euksVsVe
C
(1) A–ysDVkscsflyl, B–VjkbdksMjek ikWyhLiksje,C–isfuflyhu
(2) A–LV sQkbyk sdk sdl, B–DyklV ª hMh;e,C–isfuflyhu
(3) A–ysDVk sc sflyl, B–ekbØk slik sje,C–isfuflyhu
(4) A–LV sQkbyk sdk sdl, B–ekbØk slik sje,C–isfuflyhu
161. fuEufyf[kr esa ls lgh feyki okyh tksM+h dkSulh gS :-(1) ekbØksfoykbZ : vkek'k; vkSj vkWar(2) fyxkes.V o Vs.Mu : l?ku fu;fer la;ksth Ård(3) i{ekfHkdk : Qsyksih;u uyh o eq[k xqgk(4) gk;fyu mikfLFk : dku dk fiUuk] iyk;cy
esfVªDl162. fuEufyf[kr dFkuks dk if<+;s a :-
A. ikni o izkf.k;ks] nksuks es nhfIrdky ekSleh iztudks dstuu dks izHkkfor djrk gSaA
B. tho ds Hkkj es o`f¼ gksus dks tuu ekurs gSaAC. mikip; fujkiokn :i ls thoks ds fof'k"V xq.k ds :i
es ifjHkkf"kr gSaAD. Lo: psruk lHkh thoks dk ikfjHkkf"kr xq.k gSlR; dFkuks dk pquko djsa %(1) A o B(2) B o C(3) A o C(4) B o D
163. QkbdksekbflVht ds ckjs esa vlR; dFku dk pquko djs&(1) buds lnL; tyh; vkoklksa esa ik;s tkrs gSaA(2) chtk.kq dk fuekZ.k chtk.kq/kkuh esa vUr%tkr :i ls gksrk
gSA(3) tkbxksLiksj dk fuekZ.k U;wudkjh foHkktu ls gksrk
gSA(4) ;s lHkh izdkj dh fluxseh n'kkZrs gSaA
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164. Choose the incorrect match from following:-(1) Diatoms - Chief producers in
oceans.(2) Dinoflagellates - Plated cell wall(3) Euglenoids - Identical pigments
to higher plants.(4) Slime mould - True wall found in
vegetative stage.165. List of the some plants is given below :-
Makoi, Tulip, Tomato, Petunia, Withania,Soyabean, Mustard, Aloe.How many above plants have bicarpellarysyncarpous gynoecium, bilocular ovary, swollenplacenta & axile placentation ?(1) Five (2) Three (3) Four (4) Two
166. During mitosis, metaphase differs from anaphasein having :-(1) same number of chromosomes and half
number of chromatids.(2) half number of chromosomes and half number
of chromatids.(3) half number of chromosomes and same
number of chromatids.(4) same number of chromosomes and same
number of chromatids.167. During the different stages of cell division, cells
show chromosomes in place of the nucleus. Thechromosomes can be classified into fourtypes,such as metacentric sub metocentricacrocentric telocentric.What is the basis of suchcategorization of chromosomes ?(1) Length of chromosomes(2) Position of the secondary constriction(3) Number of DNA molecules(4) Position of the centromere
168. Larger and more numerous nucleoli are presentin the cells actively carrying out :-(1) Lipid synthesis(2) Carbohydrate synthesis(3) Protein synthesis(4) Glycoprotein synthesis
169. Which of the following are present in bothprokaryotic cells and eukaryotic cells ?(A) Cell wall (B) Ribosomes(C) Flagella (D) Cell membrane(E) Histone proteins (F) Nuclear envelope(1) B & D (2) B,D & F(3) A, B, C & D (4) B, D & E
164. fuEu esa ls vlR; ; qXe dk pquko djsaA
(1) Mk;,VEl - leqæ esa eq[; mRiknd(2) Mk;uks¶ysftysV~l - ifêdke; dksf'kdk fHkfÙk(3) ;qXyhukW;M - mPp ikniksa ds leku
o.kZd(4) voiad Q¡Qwn - dkf;d voLFkk esa lR;
fHkfÙk dk gksuk165. uhps dqN ikniksa dh lwph nh xbZ gS :-
edks;] V~;wfyi] VekVj] fiVqfuvk] foaFkkfu;k] lks;kchu]ljlksa] ,yks;AmijksDr fdrus ikniksa esa f}v.Mih] la;qDrk.Mih tk;kax]f}dks"Bdh; v.Mk'k;] Qwyk gqvk chtk.Mklu o LrEHkh;chtk.MU;kl ik;k tkrk gS ?(1) ik¡p (2) rhu (3) pkj (4) nks
166. lelw=h foHkktu ds nkSjku esVkQst] ,ukQst ls fHkUu gksrhgS] D;ksafd esVkQst esa :-(1) xq.klw=ksa dh la[;k leku vkSj ØksesfVM dh la[;k
vkèkhA(2) xq.klw=ksa dh la[;k vk/kh vkSj ØksesfVM dh la[;k
vkèkhA(3) xq.klw=ksa dh la[;k vk/kh vkSj ØksesfVM dh la[;k
lekuA(4) xq.klw=ksa dh la[;k leku vkSj ØksesfVM dh la[;k
lekuA167. dksf'kdk foHkktu dh fofHkUu voLFkkvks a ds nk Sjku ]
dksf'kdkvksa esa dsUnªd ds LFkku ij xq.klw= fn[kkbZ nsrs gSAxq.klw=ksa dks pkj izdkjksa esa oxhZd`r fd;k tk ldrk gS tSlsfd esVklsUV ªhd] lces aVklsUV ªhd] ,Øk slsUV ªhd vk SjVhykslsUVªhdA xq.klw=ksa ds bl izdkj ds foHkktu ds fy,D;k vk/kkj gS ?(1) xq.klw= dh yEckbZ(2) f}rh;d ladh.kZu dh fLFkfr(3) DNA v.kqvksa dh la[;k(4) lsUVªkseh;j dh fLFkfr
168. cM+h vkSj vusd dsfUædk, mu dksf'kdkvksa esa ik;h tkrhgS tks lfØ; :i ls :-(1) fyfiM+ la'ys"k.k djrh gSA(2) dkcksZgkbMªsV la'ys"k.k djrh gSA(3) izksVhu la'ys"k.k djrh gSA(4) XykbdksizksVhu la'ys"k.k djrh gSA
169. fuEu esa ls dkSu&dkSu izksdsfj;ksfVd dksf'kdk vkSj ;wdsfj;ksfVddksf'kdk nksuksa esa mifLFkr gksrs gS ?(A) dksf'kdk fHkfÙk (B) jkbckslkse(C) d'kkfHkdk (D) dksf'kdk f>Yyh(E) fgLVksu izksVhu (F) dsUnªdh; vkoj.k(1) B ,oa D (2) B,D ,oa F(3) A, B, C ,oa D (4) B, D ,oa E
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170. Following is a diagrammatic representation of themechanism of hormone action.
Hormone
Uterine cellmembrane
Hormone-receptorcomplex
Nucleus
Nucleus
mRNA
Proteins
Physiological response
Which of the following statement is incorrectregarding the hormone action depicted.(1) It explains the action of a hormone which
interacts with membrane bound receptors.(2) It explains the action of a hormone which
interacts with intracellular receptors in nucleus.(3) The hormone regulates chormosome function
by the interaction of hormone receptorcomplex with genome.
(4) This hormone does not generate a secondmessenger
171. Group of all aromatic amino acids is :-(1) Alanine, serine and arginine(2) Glycine, alanine and Glutamate(3) Phenylalanine, tryptophan and tyrosine(4) Arginine, histidine and tyrosine
172.
A (S)
V2max
Velo
city
of
reac
tion
(V)
Vmax
What is the concentration of substrate at point A:-(1) Double of Km (2) Half of Km(3) Quater of Km (4) Equal to Km
173. Double fixation of CO2 in the same cell is thecharacteristic of(1) Sugarcane (2) Maize(3) Agave (4) Rice
170. uhps gkeksZu fØ;kfo/kh dh vkjsf[k; izLrqrh nh xbZ gSA
Hormone
Uterine cellmembrane
Hormone-receptorcomplex
Nucleus
Nucleus
mRNA
Proteins
Physiological response
fuEu esa ls dkSulk dFku n'kkZ, x, gkekZsu fØ;kfof/k dsfy, lgh ugha gSA(1) ;g ml gkeksZu dh fØ;kfof/k dks n'kkZrk gS tks f>Yyh
vkc¼ xzkfg;ks ls vUrfØZ;k djrs gSA(2) ;g ml gkeks Zu dh fØ;kfof/k dks n'kk Zrk gS tks
dsUæd es a vUr% dksf'kdh; xzkfg;ks ls vUrfØZ;kdjrs gSA
(3) ;s gkek s Zu thuk se ls gkek s Zu xz kgh ladqy dhvUrfØZ;k }kjk xq.klw=ksa ds dk;ksZ dks fu;af=r djrsgSA
(4) ;s gkeksZu f}rh;d lans'kokgd iSnk ugha djrs gSA171. lHkh ,sjksesfVd vehuksa vEyksa okyk lewg gS :-
(1) Alanine, serine and arginine(2) Glycine, alanine and Glutamate(3) Phenylalanine, tryptophan and tyrosine(4) Arginine, histidine and tyrosine
172.
A (S)
V2max
Velo
city
of
reac
tion
(V)
Vmax
fcUnq A ij fØ;k/kkj dh lkaærk D;k gksrh gS :-(1) Km dk nqxuk (2) Km dk vk/kk(3) Km dk pkSFkkbZ (4) Km ds cjkcj
173. ,d gh dksf'kdk esa CO2 dk nksgjk fLFkjhdj.k fdldk y{k.kgS&(1) xUuk (2) eDdk(3) dey dSDVl (4) /kku
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174. Consider the following four statements (a–d) andselect the which includes the correct ones only :-
(a) The splitting of water is associated with thePS–II.
(b) During photophosphorylation ATP areformed in lumen.
(c) When only PS–I is functional the electron iscirculated within the photosystem.
(d) In noncyclic phosphorylation PS II and PS Iboth involves.
Options
(1) Statement b, c (2) Statement a, b
(3) Statement a, b, c, d (4) Statement a, c, d
175. C4 2A NH B D H O NADP++ + ¾¾® + +
Choose the correct option for A to D :-
(1) A – a-ketoglutaric acid
B – NADPH,
C – Glutamate Dehydrogenase
D – Glutamate
(2) A – Glutamate
B – NADPH,
C – Glutamate Dehydrogenase,
D – a-ketoglutaric acid
(3) A – a-ketoglutaric acid.
B – NADP
C – Glutamate dehydrogenase
D – Glutamate
(4) A – a-ketoglutaric acid.
B – H2O
C – Glutamate Dehydrogenase
D – Glutamate
176. How many proton will pump in outer chamber ofmitochandria if puravic acid is completelyoxidised –
(1) 28 (2) 30
(3) 32 (4) 26
174. fuEufyf[kr pkj dFkuksa (a–d) ij fopkj djsa vkSj dsoylHkh lgh dFkuksa okyk ,d fodYi pqus :-
(a) ty dk VwVuk izdk'k ra=–II ls lEcfU/kr gSA
(b) QksVks QkWLQksfjyhdj.k ds le; ATP dk fuekZ.k xqfgdkesa gksrk gSA
(c) tc dsoy PS–I fØ;k'khy gksrk gS rk s bysDVªksuizdk'kra= esa gh ?kwerk jgrk gSA
(d) vpØh; QkWLQksjkbys'ku eas PS II rFkk PS I nksukas Hkkxysrs gSA
fodYi
(1) dFku b, c (2) dFku a, b
(3) dFku a, b, c, d (4) dFku a, c, d
175. C4 2A NH B D H O NADP++ + ¾¾® + +
mij nh xbZ vfHkfØ;k esa A ls D ds fy, lgh fodYi dkp;u djsa :-
(1) A – a-ketoglutaric acid
B – NADPH,
C – Glutamate Dehydrogenase
D – Glutamate
(2) A – Glutamate
B – NADPH,
C – Glutamate Dehydrogenase,
D – a-ketoglutaric acid
(3) A – a-ketoglutaric acid.
B – NADP
C – Glutamate dehydrogenase
D – Glutamate
(4) A – a-ketoglutaric acid.
B – H2O
C – Glutamate Dehydrogenase
D – Glutamate
176. ;fn ,d ikb:fod vEy dks i w.k Z vkDlhdj.k gk srks ekbVksdkfUMª;k ds cká d{k esa fdrus izksVksu iEigksxs&
(1) 28 (2) 30
(3) 32 (4) 26
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177.
AuxinContainingAgar
Which of the following is conclusion of givendiagram ?
(1) Tip of coleoptile is the site of transmittableinfluence.
(2) Tip is the photoperceptive structure forphototaxis.
(3) Stump is the site of transmittable influence.
(4) Stump is the photoreceptive structure forphototropism
178. The given diagram belongs to pteridophyta.Which of the following is the correct statement?
(1) It is Azolla, belongs to pteropsida and is anaquatic plant
(2) It is Salvinia, belongs to pteropsida and is aland plant
(3) It is Salvinia, belongs to lycopsida and is aland plant
(4) It is Salvinia, belongs to pteropsida and is anaquatic plant
179. Karan rai is a disese resistance variety of ?
(1) Chilli (2) Wheat
(3) Brassica (4) Flat bean
177.
vkWfDtu;qDr vxkj
fuEu esa ls dkSulk fodYi fn;s x;s fp= dk fu"d"kZ gS ?
(1) izkadqjpksy dk 'kh"k Z ifjoguh; izHkko dk LFkygSA
(2) 'kh"kZ Hkkx izdk'kkuqpyu gsrq izdk'k xzkgh LFky gksrkgSA
(3) LVEi (Bw¡B) ifjoguh; izHkko gsrq xzkgh LFky gksrkgSA
(4) LVEHk (Bw¡B) izdk'kkuq orZu gsrq izdk'k xzkgh LFky gksrkgSA
178. fn;k x;k fp= VsfjMksQkbVk ls lEcfU/kr gSA dkSulk dFkulgh gS ?
(1) ;g ,tksyk gS tks VsjksfIlMk ls lEcfU/kr gS ,oa ,d tyh;ikni gSa
(2) ;g lkyfofu;k gS tks VsjksfIlMk ls lEcfU/kr gSa ,oa ,dLFkyh; ikni gSa
(3) ;g lkyfofu;k gS tks ykbdksilhMk ls lacfU/kr gSa ,oa,d LFkyh; ikni gSA
(4) ;g lkyfofu;k gS tks VsjksfIlMk ls lEcfU/kr gS ,oa ,dtyh; ikni gSA
179. dju jk; ,d jksx izfrjks/kh fdLe gS ?
(1) fepZ (2) xsgw¡
(3) czsfldk (4) ySV chu
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180. Which of the following diagram correctlyrepresents the replication of DNA :-
(1)
3'
3'
5'
5'
(2)
3'
3'
5'
5'
(3) 3'
5'
3'
5'
(4)
3'
5'
3'
5'
180. fuEu esa ls dkSulk ,d fp= DNA izfrÏfr dks lgh n'kkZjgk gS :-
(1)
3'
3'
5'
5'
(2)
3'
3'
5'
5'
(3) 3'
5'
3'
5'
(4)
3'
5'
3'
5'
Your Target is to secure Good Rank in NEET-II 2016