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Central limit theorem (pocket change)

Class Time:

Names:

    Student learning outcomes

  • The student will demonstrate and compare properties of the central limit theorem.

Note

This lab works best when sampling from several classes and combining data.

    Collect the data

  1. Count the change in your pocket. (Do not include bills.)
  2. Randomly survey 30 classmates. Record the values of the change in [link] .
    __________ __________ __________ __________ __________
    __________ __________ __________ __________ __________
    __________ __________ __________ __________ __________
    __________ __________ __________ __________ __________
    __________ __________ __________ __________ __________
    __________ __________ __________ __________ __________
  3. Construct a histogram. Make five to six intervals. Sketch the graph using a ruler and pencil. Scale the axes.
    Blank graph template. The horizontal axis is labeled Value of the change and the vertical axis is labeled Frequency.
  4. Calculate the following ( n = 1; surveying one person at a time):
    1. x ¯ = _______
    2. s = _______
  5. Draw a smooth curve through the tops of the bars of the histogram. Use one to two complete sentences to describe the general shape of the curve.

Collecting averages of pairs

Repeat steps one through five of the section Collect the Data. with one exception. Instead of recording the change of 30 classmates, record the average change of 30 pairs.

  1. Randomly survey 30 pairs of classmates.
  2. Record the values of the average of their change in [link] .
    __________ __________ __________ __________ __________
    __________ __________ __________ __________ __________
    __________ __________ __________ __________ __________
    __________ __________ __________ __________ __________
    __________ __________ __________ __________ __________
    __________ __________ __________ __________ __________
  3. Construct a histogram. Scale the axes using the same scaling you used for the section titled Collect the Data . Sketch the graph using a ruler and a pencil.
    This is a blank graph template. The horizontal axis is labeled Value of the change and the vertical axis is labeled Frequency.
  4. Calculate the following ( n = 2; surveying two people at a time):
    1. x ¯ = _______
    2. s = _______
  5. Draw a smooth curve through tops of the bars of the histogram. Use one to two complete sentences to describe the general shape of the curve.

Collecting averages of groups of five

Repeat steps one through five (of the section titled Collect the Data ) with one exception. Instead of recording the change of 30 classmates, record the average change of 30 groups of five.

  1. Randomly survey 30 groups of five classmates.
  2. Record the values of the average of their change.
    __________ __________ __________ __________ __________
    __________ __________ __________ __________ __________
    __________ __________ __________ __________ __________
    __________ __________ __________ __________ __________
    __________ __________ __________ __________ __________
    __________ __________ __________ __________ __________
  3. Construct a histogram. Scale the axes using the same scaling you used for the section titled Collect the Data . Sketch the graph using a ruler and a pencil.
    This is a blank graph template. The horizontal axis is labeled Value of the change and the vertical axis is labeled Frequency.
  4. Calculate the following ( n = 5; surveying five people at a time):
    1. x ¯ = _______
    2. s = _______
  5. Draw a smooth curve through tops of the bars of the histogram. Use one to two complete sentences to describe the general shape of the curve.

    Discussion questions

  1. Why did the shape of the distribution of the data change, as n changed? Use one to two complete sentences to explain what happened.
  2. In the section titled Collect the Data , what was the approximate distribution of the data? X ~ _____(_____,_____)
  3. In the section titled Collecting Averages of Groups of Five , what was the approximate distribution of the averages? X ¯ ~ _____(_____,_____)
  4. In one to two complete sentences, explain any differences in your answers to the previous two questions.

Questions & Answers

Why is b in the answer
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Brad Reply
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Ernest
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Nitin
(Pcos∅+qsin∅)/(pcos∅-psin∅)
John Reply
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Amoah
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Chabelita Reply
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Chabelita
solve for X,,4^X-6(2^)-16=0
Alieu Reply
x4xminus 2
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t he silly nut company makes two mixtures of nuts: mixture a and mixture b. a pound of mixture a contains 12 oz of peanuts, 3 oz of almonds and 1 oz of cashews and sells for $4. a pound of mixture b contains 12 oz of peanuts, 2 oz of almonds and 2 oz of cashews and sells for $5. the company has 1080
ZAHRO Reply
If  , , are the roots of the equation 3 2 0, x px qx r     Find the value of 1  .
Swetha Reply
Parts of a pole were painted red, blue and yellow. 3/5 of the pole was red and 7/8 was painted blue. What part was painted yellow?
Patrick Reply
Parts of the pole was painted red, blue and yellow. 3 /5 of the pole was red and 7 /8 was painted blue. What part was painted yellow?
Patrick
how I can simplify algebraic expressions
Katleho Reply
Lairene and Mae are joking that their combined ages equal Sam’s age. If Lairene is twice Mae’s age and Sam is 69 yrs old, what are Lairene’s and Mae’s ages?
Mary Reply
23yrs
Yeboah
lairenea's age is 23yrs
ACKA
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Katleho
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Katleho
Laurene is 46 yrs and Mae is 23 is
Solomon
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christopher
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christopher
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Alieu
prove`x^3-3x-2cosA=0 (-π<A<=π
Mayank Reply
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Source:  OpenStax, Introductory statistics. OpenStax CNX. May 06, 2016 Download for free at http://legacy.cnx.org/content/col11562/1.18
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