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Scientific Method
Steps in the Scientific
        Method
Steps in the Scientific
        Method
               Observation
Steps in the Scientific
        Method
               Observation
               Hypothesis
Steps in the Scientific
        Method
               Observation
               Hypothesis
               Experiment/Test
Steps in the Scientific
        Method
               Observation
               Hypothesis
               Experiment/Test
               Data Collection
Steps in the Scientific
        Method
               Observation
               Hypothesis
               Experiment/Test
               Data Collection
               Conclusion
Steps in the Scientific
        Method
               Observation
               Hypothesis
               Experiment/Test
               Data Collection
               Conclusion
               Retest
The Scientific Method
The Scientific Method
   Observe an event.
The Scientific Method
   Observe an event.
   Develop a model (or hypothesis) which
    makes a prediction.
The Scientific Method
   Observe an event.
   Develop a model (or hypothesis) which
    makes a prediction.
   Test the prediction.
The Scientific Method
   Observe an event.
   Develop a model (or hypothesis) which
    makes a prediction.
   Test the prediction.
   Observe the result.
The Scientific Method
   Observe an event.
   Develop a model (or hypothesis) which
    makes a prediction.
   Test the prediction.
   Observe the result.
   Revise the hypothesis.
The Scientific Method
   Observe an event.
   Develop a model (or hypothesis) which
    makes a prediction.
   Test the prediction.
   Observe the result.
   Revise the hypothesis.
   Repeat as needed.
The Scientific Method
   Observe an event.
   Develop a model (or hypothesis) which
    makes a prediction.
   Test the prediction.
   Observe the result.
   Revise the hypothesis.
   Repeat as needed.
   A successful hypothesis becomes a Scientific
    Theory.
The Scientific Method
   Observe an event.
   Develop a model (or hypothesis) which
    makes a prediction.
                                   model
   Test the prediction.
   Observe the result.
   Revise the hypothesis.         test
   Repeat as needed.
   A successful hypothesis becomes a Scientific
    Theory.
Medical Science
Scientific Method            High Cholesterol
Observation         Patient has high cholesterol
Hypothesis         Certain chemicals may dissolve
(prediction)       cholesterol deposits.
Test               Give 100 patients these chemicals,
                   give 100 patients placebo.
Observe result     Same number lower their
                   cholesterol as placebo patients.
Revise hypothesis? Try different combo of chemicals.
New test?           Re-run medical test. Observe
                    results.
Scientific Theory    Lipitor reduces cholesterol.
                                                   4
Everyday Science

       Scientific Method           Car Repair
Observation               Engine won’t turn over.
Hypothesis (prediction)   Predict battery is dead.
Test                      Replace battery.
Observe result            Engine now turns over.
Revise hypothesis?        Not needed.
New test?                 Not needed.
Scientific Theory          Cars won’t work without a
                          fully charged battery.
                                               5
Everyday Science
   Scientific Method         Making Spaghetti Sauce
Observation             Spaghetti sauce should be red.
Hypothesis (prediction) Try a tomato sauce.
Test                    Heat pot of tomato sauce.
Observe result          Taste the sauce - bland.
Revise hypothesis?      Use tomato sauce and garlic!
New test?               Add garlic, taste - not so bland.
Scientific Theory        The Final Recipe.

                                                    6
Observations

     Gathered
    through your
       senses
    A scientist
       notices
    something in
    their natural
        world
Observations

   An example of an
    observation might
     be noticing that
    many salamanders
    near a pond have
       curved, not
      straight, tails
Hypothesis
Hypothesis
Hypothesis
   A suggested
    solution to the
    problem.
Hypothesis
   A suggested
    solution to the
    problem.
   Must be testable
Hypothesis
   A suggested
    solution to the
    problem.
   Must be testable
   Sometimes written
    as If…Then…
    statements
Hypothesis
   A suggested
    solution to the
    problem.
   Must be testable
   Sometimes written
    as If…Then…
    statements
   Predicts an
    outcome
Hypothesis
   An example of a
    hypothesis might
    be that the
    salamanders have
    curved tails due to
    a pollutant in the
    moist soil where
    they live.
Experiment

   A procedure
    to test the
    hypothesis.
Experiment

 Variable –
factor in the
 experiment
that is being
   tested
Experiment

 A good or
    “valid”
 experiment
will only have
     ONE
   variable!
Controls and Variables
Scientific Experiments Follow
            Rules
   An
    experimenter
    changes one
    factor and
    observes or
    measures what
    happens.
The Control Variable
The Control Variable
   The experimenter makes a
    special effort to keep other
    factors constant so that they
    will not effect the outcome.
The Control Variable
   The experimenter makes a
    special effort to keep other
    factors constant so that they
    will not effect the outcome.
    Those factors are called
    control variables.
What is the Purpose of a
        Control?
What is the Purpose of a
        Control?

    Controls are NOT being
     tested
What is the Purpose of a
        Control?

    Controls are NOT being
     tested
    Controls are used for
     COMPARISON
Other Variables
Other Variables
   The factor that is changed is
    known as the independent
    variable.
Other Variables
   The factor that is changed is
    known as the independent
    variable.
   The factor that is measured or
    observed is called the dependent
    variable.
Example of Controls &
     Variables
Example of Controls &
                Variables
   For example, suppose you want to figure out
    the fastest route to walk home from school.
Example of Controls &
                Variables
   For example, suppose you want to figure out
    the fastest route to walk home from school.
   You will try several different routes and
    time how long it takes you to get home by
    each one.
Example of Controls &
                 Variables
   For example, suppose you want to figure out
    the fastest route to walk home from school.
   You will try several different routes and
    time how long it takes you to get home by
    each one.
   Since you are only interested in finding a
    route that is fastest for you, you will do the
    walking yourself.
What are the Variables in
   Your Experiment?
What are the Variables in
   Your Experiment?

    Varying the route is the
     independent variable
What are the Variables in
   Your Experiment?

    Varying the route is the
     independent variable
    The time it takes is the
     dependent variable
What are the Variables in
   Your Experiment?

    Varying the route is the
     independent variable
    The time it takes is the
     dependent variable
    Keeping the same walker
     throughout makes the walker a
     control variable.
One more thing… it is best
to make several trials with
each independent variable.
Valid Experiments
Remember: To be a Valid
         Experiment:
   Two groups are required ---
    the control & experimental
    groups
   There should be only one
    variable
Data
Data
   Results of the
    experiment
Data
   Results of the
    experiment
   May be
    quantitative
    (numbers) or
    qualitative
Data
Data
   Must be
    organized
Data
   Must be
    organized
   Can be
    organized into
    charts,
    tables, or
    graphs
Conclusion

   The answer to
    the hypothesis
    based on the
    data obtained
    from the
    experiment
Retest

In order to
 verify the
   results,
experiments
   must be
  retested.
Review
Solving a Problem
Solving a Problem
1)Identify a Problem
Solving a Problem
1)Identify a Problem
2) State Observations about the
   problem
Solving a Problem
1)Identify a Problem
2) State Observations about the
   problem
3) Form a Hypothesis about the
    problem (if…then…)
Solving a Problem
1)Identify a Problem
2) State Observations about the
   problem
3) Form a Hypothesis about the
    problem (if…then…)
4) Design an Experiment to test
   the hypothesis
Solving a Problem
1)Identify a Problem
2) State Observations about the
   problem
3) Form a Hypothesis about the
    problem (if…then…)
4) Design an Experiment to test
   the hypothesis
5) Collect Data
Solving a Problem
1)Identify a Problem
2) State Observations about the
   problem
3) Form a Hypothesis about the
    problem (if…then…)
4) Design an Experiment to test
   the hypothesis
5) Collect Data
6) Form a Conclusion
Solving a Problem
1)Identify a Problem
2) State Observations about the
   problem
3) Form a Hypothesis about the
    problem (if…then…)
4) Design an Experiment to test
   the hypothesis
5) Collect Data
6) Form a Conclusion
7) Retest

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Scientific method

  • 2. Steps in the Scientific Method
  • 3. Steps in the Scientific Method  Observation
  • 4. Steps in the Scientific Method  Observation  Hypothesis
  • 5. Steps in the Scientific Method  Observation  Hypothesis  Experiment/Test
  • 6. Steps in the Scientific Method  Observation  Hypothesis  Experiment/Test  Data Collection
  • 7. Steps in the Scientific Method  Observation  Hypothesis  Experiment/Test  Data Collection  Conclusion
  • 8. Steps in the Scientific Method  Observation  Hypothesis  Experiment/Test  Data Collection  Conclusion  Retest
  • 10. The Scientific Method  Observe an event.
  • 11. The Scientific Method  Observe an event.  Develop a model (or hypothesis) which makes a prediction.
  • 12. The Scientific Method  Observe an event.  Develop a model (or hypothesis) which makes a prediction.  Test the prediction.
  • 13. The Scientific Method  Observe an event.  Develop a model (or hypothesis) which makes a prediction.  Test the prediction.  Observe the result.
  • 14. The Scientific Method  Observe an event.  Develop a model (or hypothesis) which makes a prediction.  Test the prediction.  Observe the result.  Revise the hypothesis.
  • 15. The Scientific Method  Observe an event.  Develop a model (or hypothesis) which makes a prediction.  Test the prediction.  Observe the result.  Revise the hypothesis.  Repeat as needed.
  • 16. The Scientific Method  Observe an event.  Develop a model (or hypothesis) which makes a prediction.  Test the prediction.  Observe the result.  Revise the hypothesis.  Repeat as needed.  A successful hypothesis becomes a Scientific Theory.
  • 17. The Scientific Method  Observe an event.  Develop a model (or hypothesis) which makes a prediction. model  Test the prediction.  Observe the result.  Revise the hypothesis. test  Repeat as needed.  A successful hypothesis becomes a Scientific Theory.
  • 18. Medical Science Scientific Method High Cholesterol Observation Patient has high cholesterol Hypothesis Certain chemicals may dissolve (prediction) cholesterol deposits. Test Give 100 patients these chemicals, give 100 patients placebo. Observe result Same number lower their cholesterol as placebo patients. Revise hypothesis? Try different combo of chemicals. New test? Re-run medical test. Observe results. Scientific Theory Lipitor reduces cholesterol. 4
  • 19. Everyday Science Scientific Method Car Repair Observation Engine won’t turn over. Hypothesis (prediction) Predict battery is dead. Test Replace battery. Observe result Engine now turns over. Revise hypothesis? Not needed. New test? Not needed. Scientific Theory Cars won’t work without a fully charged battery. 5
  • 20. Everyday Science Scientific Method Making Spaghetti Sauce Observation Spaghetti sauce should be red. Hypothesis (prediction) Try a tomato sauce. Test Heat pot of tomato sauce. Observe result Taste the sauce - bland. Revise hypothesis? Use tomato sauce and garlic! New test? Add garlic, taste - not so bland. Scientific Theory The Final Recipe. 6
  • 21. Observations  Gathered through your senses  A scientist notices something in their natural world
  • 22. Observations  An example of an observation might be noticing that many salamanders near a pond have curved, not straight, tails
  • 25. Hypothesis  A suggested solution to the problem.
  • 26. Hypothesis  A suggested solution to the problem.  Must be testable
  • 27. Hypothesis  A suggested solution to the problem.  Must be testable  Sometimes written as If…Then… statements
  • 28. Hypothesis  A suggested solution to the problem.  Must be testable  Sometimes written as If…Then… statements  Predicts an outcome
  • 29. Hypothesis  An example of a hypothesis might be that the salamanders have curved tails due to a pollutant in the moist soil where they live.
  • 30. Experiment  A procedure to test the hypothesis.
  • 31. Experiment Variable – factor in the experiment that is being tested
  • 32. Experiment A good or “valid” experiment will only have ONE variable!
  • 34. Scientific Experiments Follow Rules  An experimenter changes one factor and observes or measures what happens.
  • 36. The Control Variable  The experimenter makes a special effort to keep other factors constant so that they will not effect the outcome.
  • 37. The Control Variable  The experimenter makes a special effort to keep other factors constant so that they will not effect the outcome.  Those factors are called control variables.
  • 38. What is the Purpose of a Control?
  • 39. What is the Purpose of a Control?  Controls are NOT being tested
  • 40. What is the Purpose of a Control?  Controls are NOT being tested  Controls are used for COMPARISON
  • 42. Other Variables  The factor that is changed is known as the independent variable.
  • 43. Other Variables  The factor that is changed is known as the independent variable.  The factor that is measured or observed is called the dependent variable.
  • 44. Example of Controls & Variables
  • 45. Example of Controls & Variables  For example, suppose you want to figure out the fastest route to walk home from school.
  • 46. Example of Controls & Variables  For example, suppose you want to figure out the fastest route to walk home from school.  You will try several different routes and time how long it takes you to get home by each one.
  • 47. Example of Controls & Variables  For example, suppose you want to figure out the fastest route to walk home from school.  You will try several different routes and time how long it takes you to get home by each one.  Since you are only interested in finding a route that is fastest for you, you will do the walking yourself.
  • 48. What are the Variables in Your Experiment?
  • 49. What are the Variables in Your Experiment?  Varying the route is the independent variable
  • 50. What are the Variables in Your Experiment?  Varying the route is the independent variable  The time it takes is the dependent variable
  • 51. What are the Variables in Your Experiment?  Varying the route is the independent variable  The time it takes is the dependent variable  Keeping the same walker throughout makes the walker a control variable.
  • 52. One more thing… it is best to make several trials with each independent variable.
  • 54. Remember: To be a Valid Experiment:  Two groups are required --- the control & experimental groups  There should be only one variable
  • 55. Data
  • 56. Data  Results of the experiment
  • 57. Data  Results of the experiment  May be quantitative (numbers) or qualitative
  • 58. Data
  • 59. Data  Must be organized
  • 60. Data  Must be organized  Can be organized into charts, tables, or graphs
  • 61. Conclusion  The answer to the hypothesis based on the data obtained from the experiment
  • 62. Retest In order to verify the results, experiments must be retested.
  • 66. Solving a Problem 1)Identify a Problem 2) State Observations about the problem
  • 67. Solving a Problem 1)Identify a Problem 2) State Observations about the problem 3) Form a Hypothesis about the problem (if…then…)
  • 68. Solving a Problem 1)Identify a Problem 2) State Observations about the problem 3) Form a Hypothesis about the problem (if…then…) 4) Design an Experiment to test the hypothesis
  • 69. Solving a Problem 1)Identify a Problem 2) State Observations about the problem 3) Form a Hypothesis about the problem (if…then…) 4) Design an Experiment to test the hypothesis 5) Collect Data
  • 70. Solving a Problem 1)Identify a Problem 2) State Observations about the problem 3) Form a Hypothesis about the problem (if…then…) 4) Design an Experiment to test the hypothesis 5) Collect Data 6) Form a Conclusion
  • 71. Solving a Problem 1)Identify a Problem 2) State Observations about the problem 3) Form a Hypothesis about the problem (if…then…) 4) Design an Experiment to test the hypothesis 5) Collect Data 6) Form a Conclusion 7) Retest

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