Science Olympiad Summer Institute Phoenix, AZ July 16 – 20, 2012.

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Science Olympiad Summer Institut Phoenix, AZ July 16 – 20, 2012

Transcript of Science Olympiad Summer Institute Phoenix, AZ July 16 – 20, 2012.

Page 1: Science Olympiad Summer Institute Phoenix, AZ July 16 – 20, 2012.

Science Olympiad Summer InstitutePhoenix, AZ July 16 – 20, 2012

Page 2: Science Olympiad Summer Institute Phoenix, AZ July 16 – 20, 2012.

DESCRIPTION

Determine a team’s ability to design, conduct, and report the findings of an experiment

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PARAMETERS STUDENTS (mandatory)

ANSI Z87 indirect vent chemical splash goggles

Writing instrument(s) STUDENTS (optional)

Timepiece Ruler Non-programmable calculator

NOTE: Chemicals requiring safety clothing will not be used.

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THE COMPETITION

Supervisors will provide teams with identical sets of materials

If materials are given to teams in a container the container is considered part of the materials

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COMPETITION (cont.)

Nature of the experiment is determined by a question/topic area assigned by Supervisor Same for all teams Allow for experiments involving

independent and dependent variables

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SCORING

Experimental Design Rubric Max. Pts.: B – 61 C - 66 Tiebreaker Sequence

1. Variables2. Procedure3. Analysis of results4. Graph5. Data table

Teams not addressing the question/topic will be ranked behind others

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1. Statement of Problem – 4 pts.

a) Not a yes/no questionb) Include independent and dependent

variablesc) Problem is clearly testabled) Written in a clear and concise manner

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2. Hypothesis

a. Predicts a relationship or trendb. Gives specific direction to the

predictionc. Includes both independent and

dependent variablesd. Provides a rational for the

hypothesis

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3a. Independent Variable – 3 pts

a. Operationally definedb. Correctly identifiedc. Has at least 3 levels

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3b. Dependent Variable – 3 pts

a. Correctly defined (2 pts)b. Operationally defined

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3a. Controlled Variables – 4 pts

a. One point for each correctly defined constant

b. up to a maximum of 4 points

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4. Experimental Control – 2 pts(where appropriate)a. Correctly identifiedb. Makes logical sense for the

experiment

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5. Materials – 3 pts

a. All materials used are listedb. No extra materials are listedc. Listed separately from procedure

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6. Procedure – 6 pts

a. Well organizedb. In logical sequencec. Enough information is given to

make experiment replicabled. Includes diagramse. Has repeated trials

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7. Qualitative Observations – 4 pts

Includes observations abouta.Resultsb.Procedure/deviations from procedurec.Results not relating to dependent

variabled.Things that happen during course of

experimente.VIDEO

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8. Quantitative Data – 6 ptsa. All raw data is providedb. All data has unitsc. Condensed table with most

important datad. Table is correctly labelede. Example calculations are includedf. Uses correct significant figures (C

division)

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9. Graph(s) – 6 points

a. Appropriate type of graphb. Has a titlec. Labeled correctly (2 pts)d. Units includede. Appropriate scale

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10. Statistics – 2/6 ptsB Division – 2 ptsa.Uses average, median, or modeb.Statistic used is appropriate for data

C Division – 6 ptsa.Uses average, median, or modeb.Statistic used is appropriate for datac.Measure of central tenencyd.Measure of variatione.Regression analysisf. Other appropriate statistic used

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11. Analysis of Data – 4 ptsAll statements must be supported by data

collecteda.All data is discussed and interpretedb.Unusual data points commented uponc.Trends in data explainedd.Enough detail provided to explain data

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12. Experimental Errors – 3 ptsa. Reasons for errorsb. Important information about data

collectionc. Effect of errors on data

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13. Conclusion – 4 pts

a. Hypothesis is evaluated by given data

b. Hypothesis is restatedc. Reasons to accept/reject hypothesisd. All statements are supported by

data

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14. Applications/Further Research – 4 pts

a. Improvement of experimentb. Alternative interpretation of datac. Future experimentsd. Practical application(s) of

information discovered from experiment