Browse Course Material

Course info, instructors.

  • Dr. Jeremy Orloff
  • Dr. Jennifer French Kamrin

Departments

  • Mathematics

As Taught In

  • Discrete Mathematics
  • Probability and Statistics

Learning Resource Types

Introduction to probability and statistics, exams with solutions.

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Unit 7: Statistics and probability

About this unit.

This introduction to probability and statistics explores probability models, sample spaces, compound events, random samples, and a whole lot more.

Basic probability

  • Statistics and probability FAQ (Opens a modal)
  • Intro to theoretical probability (Opens a modal)
  • Simple probability: yellow marble (Opens a modal)
  • Simple probability: non-blue marble (Opens a modal)
  • Experimental probability (Opens a modal)
  • Intuitive sense of probabilities (Opens a modal)
  • Simple probability Get 5 of 7 questions to level up!
  • Experimental probability Get 5 of 7 questions to level up!
  • Comparing probabilities Get 5 of 7 questions to level up!

Probability models

  • Theoretical and experimental probabilities (Opens a modal)
  • Making predictions with probability (Opens a modal)
  • Probability models example: frozen yogurt (Opens a modal)
  • Making predictions with probability Get 5 of 7 questions to level up!
  • Probability models Get 5 of 7 questions to level up!

Compound events and sample spaces

  • Sample spaces for compound events (Opens a modal)
  • Die rolling probability (Opens a modal)
  • Probability of a compound event (Opens a modal)
  • Counting outcomes: flower pots (Opens a modal)
  • Count outcomes using tree diagram (Opens a modal)
  • Sample spaces for compound events Get 3 of 4 questions to level up!
  • Probabilities of compound events Get 3 of 4 questions to level up!
  • The counting principle Get 3 of 4 questions to level up!

Comparing and sampling populations

  • Reasonable samples (Opens a modal)
  • Comparing distributions with dot plots (example problem) (Opens a modal)
  • Valid claims Get 3 of 4 questions to level up!
  • Making inferences from random samples Get 3 of 4 questions to level up!
  • Comparing distributions Get 3 of 4 questions to level up!

N ( 244 , 15 50 ) N ( 244 , 15 50 )

As the sample size increases, there will be less variability in the mean, so the interval size decreases.

X is the time in minutes it takes to complete the U.S. Census short form. X ¯ X ¯ is the mean time it took a sample of 200 people to complete the U.S. Census short form.

CI: (7.9441, 8.4559)

The level of confidence would decrease, because decreasing n makes the confidence interval wider, so at the same error bound, the confidence level decreases.

  • x ¯ x ¯ = 2.2

X ¯ X ¯ is the mean weight of a sample of 20 heads of lettuce.

EBM = 0.07 CI: (2.1264, 2.2736)

The interval is greater, because the level of confidence increased. If the only change made in the analysis is a change in confidence level, then all we are doing is changing how much area is being calculated for the normal distribution. Therefore, a larger confidence level results in larger areas and larger intervals.

The confidence level would increase.

(24.52,36.28)

We are 95 percent confident that the true mean age for winter Foothill College students is between 24.52 and 36.28.

The error bound for the mean would decrease, because as the CL decreases, you need less area under the normal curve (which translates into a smaller interval) to capture the true population mean.

X is the number of hours a patient waits in the emergency room before being called back to be examined. X ¯ X ¯ is the mean wait time of 70 patients in the emergency room.

CI: (1.3808, 1.6192)

  • x ¯ x ¯ = 151
  • s x s x = 32
  • n – 1 = 107

X ¯ X ¯ is the mean number of hours spent watching television per month from a sample of 108 Americans.

CI: (142.92, 159.08)

(2.93, 3.59)

We are 95 percent confident that the true mean number of colors for national flags is between 2.93 colors and 3.59 colors.

The error bound would become EBM = 0.245. This error bound decreases, because as sample sizes increase, variability decreases, and we need less interval length to capture the true mean.

It would decrease, because the z -score would decrease, which would reduce the numerator and lower the number.

X is the number of successes where the woman makes the majority of the purchasing decisions for the household. P ′ is the percentage of households sampled where the woman makes the majority of the purchasing decisions for the household.

CI: (0.5321, 0.6679)

EBM : 0.0679

X is the number of successes where an executive prefers a truck. P ′ is the percentage of executives sampled who prefer a truck.

CI: (0.19432, 0.33068)

EBM : 0.0707

The sampling error means that the true mean can be 2 percent above or below the sample mean.

P ′ is the proportion of voters sampled who said the economy is the most important issue in the upcoming election.

CI: (0.62735, 0.67265);

EBM: 0.02265

the number of girls, ages 8 to 12, in the 5 p.m. Monday night beginning ice-skating class

P ′ ~ N ( 0.8 , ( 0.8 ) ( 0.2 ) 80 ) P ′ ~ N ( 0.8 , ( 0.8 ) ( 0.2 ) 80 )

CI = (0.72171, 0.87829).

(0.72; 0.88)

With 92 percent confidence, we estimate the proportion of girls, ages 8 to 12, in a beginning ice-skating class at the Ice Chalet to be between 72 percent and 88 percent.

The error bound would increase. Assuming all other variables are kept constant, as the confidence level increases, the area under the curve corresponding to the confidence level becomes larger, which creates a wider interval and thus a larger error.

  • X is the height of a Swedish male, and is the mean height from a sample of 48 Swedish males.
  • Normal. We know the standard deviation for the population, and the sample size is greater than 30.
  • CI: (70.151, 71.49)
  • EBM = 0.849
  • The confidence interval will decrease in size, because the sample size increased. Recall, when all factors remain unchanged, an increase in sample size decreases variability. Thus, we do not need as large an interval to capture the true population mean.
  • x ¯ x ¯ = 23.6
  • X is the time needed to complete an individual tax form. X ¯ X ¯ is the mean time to complete tax forms from a sample of 100 customers.
  • N ( 23.6 , 7 100 ) N ( 23.6 , 7 100 ) because we know sigma.
  • (22.228, 24.972)
  • EBM = 1.372
  • It will need to change the sample size. The firm needs to determine what the confidence level should be and then apply the error bound formula to determine the necessary sample size.
  • The confidence level would increase as a result of a larger interval. Smaller sample sizes result in more variability. To capture the true population mean, we need to have a larger interval.
  • According to the error bound formula, the firm needs to survey 206 people. Because we increase the confidence level, we need to increase either our error bound or the sample size.
  • X is the number of letters a single camper will send home. X ¯ X ¯ is the mean number of letters sent home from a sample of 20 campers.

N 7.9 ( 2.5 20 ) 7.9 ( 2.5 20 )

  • CI: (6.98, 8.82)
  • The error bound and confidence interval will decrease.
  • x ¯ x ¯ = $568,873
  • CL = 0.95, α = 1 – 0.95 = 0.05, z α 2 z α 2 = 1.96 EBM = z 0.025 σ n z 0.025 σ n = 1.96 909200 40 909200 40 = $281,764

Alternate solution:

Using the TI-83, 83+, 84, 84+ Calculator

  • Press STAT and arrow over to TESTS .
  • Arrow down to 7:ZInterval .
  • Press ENTER .
  • Arrow to Stats and press ENTER .
  • σ : 909,200
  • x ¯ x ¯ : 568,873
  • Arrow down to Calculate and press ENTER .
  • The confidence interval is ($287,114, $850,632).
  • Notice the small difference between the two solutions—these differences are simply due to rounding error in the hand calculations.
  • We estimate with 95 percent confidence that the mean amount of contributions received from all individuals by House candidates is between $287,109 and $850,637.

Use the formula for EBM , solved for n : n =   z 2 σ 2 E B M 2 n =   z 2 σ 2 E B M 2

From the statement of the problem, you know that σ = 2.5, and you need EBM = 1.

z = z 0.035 = 1.812.

(This is the value of z for which the area under the density curve to the right of z is 0.035.)

n =   z 2 σ 2 E B M 2 = 1.812 2 2.5 2 1 2   ≈   20.52 . n =   z 2 σ 2 E B M 2 = 1.812 2 2.5 2 1 2   ≈   20.52 .

You need to measure at least 21 male students to achieve your goal.

  • CI: (6244, 11,014)
  • It will become smaller.
  • x ¯ x ¯ = 2.51
  • s x s x = 0.318
  • The effective length of time for a tranquilizer
  • The mean effective length of time of tranquilizers from a sample of nine patients
  • We need to use a Student’s t -distribution, because we do not know the population standard deviation.
  • CI: (2.27, 2.76)
  • Check student's solution.
  • If we were to sample many groups of nine patients, 95 percent of the samples would contain the true population mean length of time.

x ¯ = $ 251 , 854.23 ; x ¯ = $ 251 , 854.23 ;

s =   $ 521 , 130.41 . s =   $ 521 , 130.41 .

Note that we are not given the population standard deviation, only the standard deviation of the sample.

There are 30 measures in the sample, so n = 30, and df = 30 - 1 = 29.

CL = 0.96, so α = 1 - CL = 1 - 0.96 = 0.04.

α 2 = 0.02 t α 2 = t 0.02 α 2 = 0.02 t α 2 = t 0.02 = 2.150.

E B M = t α 2 ( s n ) = 2.150 ( 521 , 130.41 30 )   ~   $ 204 , 561.66 . E B M = t α 2 ( s n ) = 2.150 ( 521 , 130.41 30 )   ~   $ 204 , 561.66 .

x ¯ x ¯ - EBM = $251,854.23 - $204,561.66 = $47,292.57.

x ¯ x ¯ + EBM = $251,854.23 + $204,561.66 = $456,415.89.

We estimate with 96 percent confidence that the mean amount of money raised by all Leadership PACs during the 2011–2012 election cycle lies between $47,292.57 and $456,415.89.

Alternate Solution

The difference between solutions arises from rounding differences.

  • X is the number of unoccupied seats on a single flight. X ¯ X ¯ is the mean number of unoccupied seats from a sample of 225 flights.
  • We will use a Student’s t-distribution, because we do not know the population standard deviation.
  • CI: (11.12 , 12.08)
  • CI: (7.64, 9.36)
  • The sample should have been increased.
  • Answers will vary.
  • The sample size would need to be increased, because the critical value increases as the confidence level increases.

X = the number of people who believe that the president is doing an acceptable job;

P ′ = the proportion of people in a sample who believe that the president is doing an acceptable job.

  • N ( 0.61 , ( 0.61 ) ( 0.39 ) 1200 ) N ( 0.61 , ( 0.61 ) ( 0.39 ) 1200 )
  • CI: (0.59, 0.63)
  • Check student’s solution.
  • (0.72, 0.82)
  • (0.65, 0.76)
  • (0.60, 0.72)
  • Yes, the intervals (0.72, 0.82) and (0.65, 0.76) overlap, and the intervals (0.65, 0.76) and (0.60, 0.72) overlap.
  • We can say that there does not appear to be a significant difference between the proportion of Asian adults who say that their families would welcome a white person into their families and the proportion of Asian adults who say that their families would welcome a Latino person into their families.
  • We can say that there is a significant difference between the proportion of Asian adults who say that their families would welcome a white person into their families and the proportion of Asian adults who say that their families would welcome a black person into their families.
  • X = the number of adult Americans who believe that crime is the main problem; P′ = the proportion of adult Americans who believe that crime is the main problem.
  • Because we are estimating a proportion, that P′ = 0.2 and n = 1,000, the distribution we should use is N ( 0.2 , ( 0.2 ) ( 0.8 ) 1000 ) N ( 0.2 , ( 0.2 ) ( 0.8 ) 1000 ) .
  • CI: (0.18, 0.22)
  • One way to lower the sampling error is to increase the sample size.
  • The stated ± 3 percent represents the maximum error bound. This means that those doing the study are reporting a maximum error of 3 percent. Thus, they estimate the percentage of adult Americans who the percentage of adult Americans who that crime is the main problem to be between 18 percent and 22 percent.
  • p′ = (0 .55 + 0 .49) 2 (0 .55 + 0 .49) 2 = 0.52; EBP = 0.55 – 0.52 = 0.03
  • No, the confidence interval includes values less than or equal to 0.50. It is possible that less than half of the population believe this.

STAT TESTS A: 1-PropZinterval with x = (0.52)(1,000), n = 1,000, CL = 0.75.

Answer is (0.502, 0.538).

  • Yes, this interval does not fall below 0.50, so we can conclude that at least half of all American adults believe that major sports programs corrupt education – but we do so with only 75 percent confidence.

CL = 0.95; α = 1 – 0.95 = 0.05; α 2 α 2 = 0.025; z α 2 z α 2 = 1.96. Use p ′ = q ′ = 0.5.

n =   z α 2 2 p ′ q ′ E B P 2 =   1.96 2 ( 0.5 ) ( 0.5 ) 0.05 2 = 384.16 . n =   z α 2 2 p ′ q ′ E B P 2 =   1.96 2 ( 0.5 ) ( 0.5 ) 0.05 2 = 384.16 .

You need to interview at least 385 students to estimate the proportion to within 5 percent at 95 percent confidence.

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Gina Wilson All Things Algebra Answer Key | Gina Wilson All things Algebra 2015

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All Things Algebra 2015 has garnered praise from educators and students worldwide. Teachers have reported increased student engagement, improved test scores, and a deeper understanding of mathematical concepts. Students have expressed appreciation for the clarity of the resources and the opportunity to learn at their own pace. These success stories and testimonials serve as a testament to the impact of Gina Wilson's work.

In conclusion, Gina Wilson and her creation, All Things Algebra 2015, have revolutionized mathematics education. Through a comprehensive curriculum, engaging activities, differentiated instruction, online support, and continuous updates, Gina Wilson has provided teachers with the tools they need to inspire and empower their students. The impact of All Things Algebra 2015 extends beyond the classroom, shaping the way mathematics is taught and learned.

1. Can All Things Algebra 2015 be used in homeschooling?

Absolutely! All Things Algebra 2015 is a versatile resource that can be used in various educational settings, including homeschooling. Its comprehensive curriculum and engaging activities make it an ideal choice for homeschooling parents.

2. Are the resources in All Things Algebra 2015 aligned with curriculum standards?

Yes, all resources in All Things Algebra 2015 are meticulously aligned with curriculum standards. Gina Wilson ensures that the content remains up-to-date and meets the requirements of various educational frameworks.

3. Is there a free trial available for All Things Algebra 2015?

Unfortunately, there is no free trial available for All Things Algebra 2015. However, you can access a wide range of sample resources on the website to get a sense of the quality and effectiveness of the materials.

4. Can I customize the resources in All Things Algebra 2015 to suit my students' needs?

Yes, you can easily customize the resources in All Things Algebra 2015 to meet the specific needs of your students. The differentiated instruction approach allows for flexibility and adaptation.

5. How often are new resources added to All Things Algebra 2015?

Gina Wilson is dedicated to continuous improvement and regularly adds new resources to All Things Algebra 2015. Updates are released periodically to enhance the curriculum and address emerging educational trends.

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unit 9 probability and statistics homework 7 answers

Unit 8: Probability & Statistics Name: _ Date:__Per:_Homework 3: Theoretical vs. Experimental Probability ** This is a 2-page document! ** Give each probability as a simplified fraction, decimal, and percent 1. A number between 1 and 3 is a) Find and compare the theoretical probability and chosen 30 times. Results are shown experimental probability of choosing a 2. in the table below. Theoretical: Experimental: Compare: 2. The spinner below is spun 60 times. a) Find and compare the theoretical probability and Results are shown in the table experimental probability of spinning an A

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COMMENTS

  1. Unit 9: Probability

    Unit 9: Probability. 1) (Mon 4/11) Counting Principle and Simple Probability and Mutually Exclusive Events. 2) (Tues 4/12) Independent Events. 3) 52 deck Card Characteristics. 4) (Wed 4/13) Probability Review Worksheet. 5) M & M Experiment. 6) (Thurs 4/14) Compound Probability and Dependent Events.

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  5. Unit 9: Probability & Statistics Flashcards

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  6. PDF PRE-ALGEBRA Unit 9

    Give each probability as a fraction (in simplest form), a decimal, and a percent. 3. The spinner is used in a If if is spun once, find each b) Plat least 12) c) P(perfecf square) d) P(not shaded) f) P(rnultiple of a 2017 Name: Date: Unit 9: Probability & Statistics Homework 6: Probability Review This is a 2-page document! b) P(WednesdayJ

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  8. Algebra, Unit 9: Statistics & Probability

    Unit 9: Statistics & Probability. Note: Some lessons in this unit are from our popular AP Stats curriculum. Don't let the "AP" title scare you! We've chosen the most introductory, fundamental, and approachable lessons from those materials. All students can successfully complete these lessons, and doing so will prepare them for future ...

  9. Math Unit 9: Statistics & Probability Study Guide Flashcards

    Probability of an event calculated from experimental results. (a calculation of what actually occurs in practice) Example: experiment you flip 10 coins and get 7 heads - 7/10. 7 heads out of 10 possible outcomes. Number of favourable outcomes written as a fraction of the total number of possible outcomes. ( a calculation of the number of one ...

  10. Pre-Algebra Unit 9: Probability & Statistics

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  11. Probability and Statistics (Pre-Algebra

    This curriculum includes 825+ pages of instructional materials (warm-ups, notes, homework, quizzes, unit tests, review materials, a midterm exam, a final exam, spiral reviews, and many other extras) for Pre-Algebra. All answer keys are include. 14. Products. $152.00Price $152.00$254.95Original Price $254.95Save $102.95. View Bundle. Description.

  12. Probability And Statistical Inference 9th Edition Textbook ...

    Step-by-step solution. Step 1 of 4. Let us first define the sample space of our example. By the definition, Step 2 of 4. Now, define the following events, Then, Step 3 of 4. From the given information, the following probabilities for the events are,

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    3. N(244, 15 50√) N ( 244, 15 50) 5. As the sample size increases, there will be less variability in the mean, so the interval size decreases. 7. X is the time in minutes it takes to complete the U.S. Census short form. X¯¯¯ X ¯ is the mean time it took a sample of 200 people to complete the U.S. Census short form. 9.

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    1. Multiple Choice. The spinner is divided into eight equal parts. Find the theoretical probability of landing on the given section of the spinner. P (white) =. 2. Multiple Choice. The theoretical probability of rolling an even number on a dice. 3.

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    Unit 8: Probability & Statistics Name: _ Date:__Per:_Homework 3: Theoretical vs. Experimental Probability ** This is a 2-page document! ** Give each probability as a simplified fraction, decimal, and percent 1. A number between 1 and 3 is a) Find and compare the theoretical probability and chosen 30 times.