ABET Syllabusmachine Drawing
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Transcript of ABET Syllabusmachine Drawing
8/12/2019 ABET Syllabusmachine Drawing
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The University of Jordan
Faculty of Engineering & TechnologyMechanical Engineering Department
2005 ourse atalog
Engineering design require a combination of organization, analysis, and communication skills.
Engineering graphics is the primary medium for communicating design concepts and is an
important tool for analyzing engineering problems. This course aims at developing the skills
needed for documenting designs using drawings and for performing graphical analysis of two
dimensional and three dimensional problems. Manual and computer aided methods of graphicalanalysis and communication are covered.
Te!t "oo#s
Te!t $oo# % Te!t $oo# 2
Title Engineering Design raphics,
uthor's( Earle, !ames. "
)u$lisher #earson "
*ear $%&& "
Edition &&th Edition' "
+eferences"oo#s &( Engineering raphics with )uto*)D $%%+, !ames D. ethune.
$( etting -tarted, )uto*)D $%&, )utodesk./( raphic -cience and Design, 0rench, 1ierck and 0oster
Journals
,nternet lin#s http233www.autodesk.com3education3student"softwarehttp233fetweb.4u.edu.4o3acad3
,nstructor,nstructor Dr- .ashem l#haldi/ E"mailh.alkhaldi54u.edu.4o
)rere1uisites)rere1uisites $y topic "
)rere1uisites $y course "
ore1uisites $y course "
)rere1uisite for Machine Drawing 6%7%$//(
&
Engineering Drawing and Descriptive Geometry(0904131)
Seconed Semester 2013/2014
8/12/2019 ABET Syllabusmachine Drawing
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Measura$le )rogram 3utcomes 'M)3( and ourse 3utcomes
M)3 ourse 3utcomes
M)34 %-5%
#lanar kinematics of rigid bodies,
including general plane motion and
relative motion analysis.
&. 8ectilinear and curvilinear motion of particles
$. 8elative motion using translating a9es
/. #lanar kinematics of rigid bodies 6translation and rotation(. )ngular motion analysis of rigid bodies and mechanisms
:. 8elative motion analysis using rotating a9es
M)34 %-52
#lanar kinetics of rigid bodies, including
drawing free body diagrams and
writing equations of motion.
+. Drawing free body diagram for particles and rigid bodies;. Equation of motion using <ewton=s second law>. 0ormulation of motion using ?ork and Energy and @mpulse and
Momentum principles7. 0orce and )cceleration of planar kinetics of rigid bodies
M)34 5-6
a( )nalysis of position, velocity and
acceleration kinematics of
mechanisms
&%. #erform velocity and accelartaion analysis of mechanisms using vector
analysis approach&&. #erform angular motion analysis using scalar approach&$. #efrom angular velocity analysis using instantaneous center of rotation
Topics overed
7ee# Topics hepter in Te!t&"$ Ainematics of #articles &$
/" Ainetics of #articles2 0orce and )cceleration &/
:"+ Ainetics of #articles2 ?ork and Energy &
;"> Ainetics of #articles2 @mpulse and Momentum &:
7"&& #lanar Ainematics of 8igid odies &+
&$"&/ #lanar Ainetics of 8igid odies2 0orce and)cceleration
&;
& #lanar Ainetics of 8igid odies2 ?ork andEnergy
&>
&: #lanar Ainetics of 8igid odies2 @mpulse andMomentum
&7
Evaluation
ssessment Tool E!pected Due Date 7eight
Bomework C uizzes 0our pop quizzes 6: each( $%
Midterm E9am )ccording to the department schedule /%
0inal E9am )ccording to the Fniversity final e9amination schedule :%
ontri$ution of ourse to Meeting the )rofessional omponentThe course offers students the chance to build their skills in formulating and performing kinematics and kinetics analysis of
particles and rigid bodies. )lso, it is needed for the higher"level courses2 Mechanics of Machines, Mechanical 1ibrations
+elationship to )rogram 3utcomes '8(
)34 & $ / : + ; > 7 &%
8 ;% /%
+elationship to Mechanical Engineering )rogram 3$9ectives
#EG& #EG$ #EG/ #EG #EG :
√ √
#repared by2 #rof. )hmad ). )l"aisia
Hast Modified2 0ebruary &$, $%&
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