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probability and statistics Simulations can often be used to determine the probability of obtaining a defective product. They are used to model a variety of systems with the intent of acquiring insights regarding the system under study. Completing this task will help you better understand how to use mathematics to model a selected system in order to make informed decisions. Instead of using a mathematical rule to compute a desired result, you will use a computer-based simulation model to make informed decisions. Task: A. Describe a computer-based simulation for the manufacturing of 1000 cell phones. 1. Perform five simulations where you randomly generate 1000 integers between 1 and 100. 2. Use your simulation results to determine the probability of obtaining a defective phone for each simulation if an outcome of 1 or 2 is considered to be a defective phone, showing all work. 3. Use your simulation results to determine the probability of obtaining a non-defective phone for each simulation if an outcome of 3 through 100 is considered to be a non-defective phone, showing all work. 4. Provide a table (such as the table shown in the attached “Example Table”) to summarize your results. 5. Compare the probability results that were acquired from all five simulations. 6. Submit all five simulations. ORDER THIS ESSAY HERE NOW AND GET A DISCOUNT !!!

probability and statistics
Simulations can often be used to determine the probability of obtaining a defective product. They are used to model a variety of systems with the intent of acquiring insights regarding the system under study. Completing this task will help you better understand how to use mathematics to model a selected system in order to make informed decisions. Instead of using a mathematical rule to compute a desired result, you will use a computer-based simulation model to make informed decisions.

 

Task:

 

A. Describe a computer-based simulation for the manufacturing of 1000 cell phones.

1. Perform five simulations where you randomly generate 1000 integers between 1 and 100.

2. Use your simulation results to determine the probability of obtaining a defective phone for each simulation if an outcome of 1 or 2 is considered to be a defective phone, showing all work.

3. Use your simulation results to determine the probability of obtaining a non-defective phone for each simulation if an outcome of 3 through 100 is considered to be a non-defective phone, showing all work.

4. Provide a table (such as the table shown in the attached “Example Table”) to summarize your results.

5. Compare the probability results that were acquired from all five simulations.

6. Submit all five simulations.

ORDER THIS ESSAY HERE NOW AND GET A DISCOUNT !!!

 

 

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