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- The Iowa Wolves are scheduled to play against the Maine Red Claws in an upcoming game in the National Basketball Association (NBA) G League. Because a player in the NBA G League is still developing his skills, the number of points he scores in a game can vary substantially. Develop a spreadsheet model that simulates the points scored by each team. Assume that each player's point production can be represented as an integer uniform variable with the ranges provided in the following table. (Use at least 1,000 trials.) Player Iowa Wolves Maine Red Claws 1 [5, 20] [6, 12] 2 [7, 20] [15, 20] 3 [5, 10] [10, 20] 4 [10, 40] [15, 30] 5 [5, 20] [6, 10] 6 [4, 10] [1, 20] 7 [2, 5] [1, 4] 8 [2, 4] [2, 4] (a) Consider the points scored by the Iowa Wolves team. (Round your answers to two decimal places.) What is the average of points scored? What is the standard deviation? What is the shape of the distribution? uniformbell-shaped skewed leftskewed right (b)…The Iowa Wolves are scheduled to play against the Maine Red Claws in an upcoming game in the National Basketball Association (NBA) G League. Because a player in the NBA G League is still developing his skills, the number of points he scores in a game can vary substantially. Develop a spreadsheet model that simulates the points scored by each team. Assume that each player's point production can be represented as an integer uniform variable with the ranges provided in the following table. (Use at least 1,000 trials.) Player Iowa Wolves Maine Red Claws [5,20] [6, 12] [7,20] [15, 20] [5, 10] [10, 20] [10, 40] [15, 30] [7,20] [6, 10] [2, 10] [1,20] [2,5] [1,4] [2, 4] [2, 4] (a) Consider the points scored by the Iowa Wolves team. (Round your answers to two decimal places.) What is the average of points scored? 1 2 3 4 5 6 7 8 What is the standard deviation? What is the shape of the distribution? O uniform O bell-shaped O skewed left O skewed rightThe Iowa Wolves are scheduled to play against the Maine Red Claws in an upcoming game in the National Basketball Association (NBA) G League. Because a player in the NBA G League is still developing his skills, the number of points he scores in a game can vary substantially. Develop a spreadsheet model that simulates the points scored by each team. Assume that each player's point production can be represented as an integer uniform variable with the ranges provided in the following table. (Use at least 1,000 trials.) Player Iowa Wolves Maine Red Claws [5, 20] [6, 12] [7, 20] [15, 20] [5, 10] [10, 20] [10, 40] [15, 30] [6, 10] [1,20] [1,4] [2, 4] 1 2 3 4 5 6 7 8 [7,20] [2, 10] [2, 5] [2, 4] (a) Consider the points scored by the Iowa Wolves team. (Round your answers to two decimal places.) What is the average of points scored? What is the standard deviation? What is the shape of the distribution? O uniform Obell-shaped O skewed left O skewed right (b) Consider the points scored by the…
- A student is speeding down Route 11 in his fancy red Porsche when his radar system warns him of an obstacle 400 feet ahead. He immediately applies the brakes, starts to slow down, and spots a skunk in the road directly ahead of him. The "black box" in the Porsche records the car's speed every two seconds, producing the following table. The speed decreases throughout the 10 seconds it takes to stop, although not necessarily at a uniform rate.An alloy manufacturer is investigating if they can improve the strength of one of their alloysby producing it at a lower temperature. To investigate that, they produce the alloy at twodifferent temperatures (high and low) and then measure the breaking strength of randomsamples of specimens from each. The following table represents the strength of the randomsamples at the higher and lower temperature, in units of 0.001-inch deflection. Temp. Strength (0.001 inch)High 87 64 66 85 76 49 97 73 75 77 69 68 89 27 58 84Low 88 82 81 85 79 80 88 78 77 85 79 76 Do the results support the hypothesis that lowering the production temperature can improve thestrength of the alloy, with 95% confidence? (Hint: Don’t forget investigating variances. Use 98% confidence for that.)what would the maximum return be?
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- An Jibble is produced on an assembly line consisting of six workstations. The total work content for one Jibble is 22 minutes based on the following standard times set forth for each station: 1 (4.0 minutes), 2 (6.5 minutes), 3 (4.0 minutes), 4 (2.5 minutes), 5 (2.0 minutes), 6 (3.0 minutes). If this assembly line runs 5 days per week, 8 hours per day and each station operator operates at 120% of standard, how many Jibbles can be produced in a week? a. Greater than or equal to 600 units. b. Greater than or equal to 500 units but less than 600 units. c. Less than 400 units. d. Greater than or equal to 400 units but less than 500 units.A seamstress works exclusively on one stage of the process of a special garment design. This phase requires exactly half an hour to finish the garment. Every 30 minutes an assistant arrives at the seamstress's table to collect those finished garments and deliver those that require the process (unprocessed garments).The number of raw garments brought by the assistant to the seamstress is uncertain; 30% of the occasions arrive without garments; 50% of the time he wears one garment and 20% of the time he wears 2 garments. The assistant is instructed that there are never more than three unprocessed garments left on the seamstress's table (those that cannot be left are taken to another seamstress). Determine the transition graph and matrix that models the number of raw garments on the seamstress's table just before the assistant arrives.A county referral hospital has a single Cuban doctor to take care of patients arriving for specialized medical services across the ten sub counties. it has been established that the situation faced here is a single server situation with poison arrival and exponential service. from the records it has been established that patients arrive randomly at the rate of 0.25 patients per minute. Patients require different amount of time for treatment, the Doctor reckons that he treats his patients at an average rate of 0.3 patients/minute. Determine; a) The average number of patients in the queuing system b) Patients waiting in the queue c) Average amount of time a patient spends in the queuing system. d) The average amount of time a patient spends in the queue e) the proportion of the time the doctor is giving the service