1. State the problem 2. State why it is a problem 3. State how it should be fixed
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1. State the problem
2. State why it is a problem
3. State how it should be fixed
Step by step
Solved in 3 steps
- Solve the given problem completely. Show your solution. In a dance crew with 32 members, 9 are are part of unit A, 10 are in unit B, and 6 performs solo. 3 members of unit A are also in unit B. Two solo performers are also in unit A:. 2 members of unit B are also solo performers. Only 1 member of the crew is part of all units. How many crew members belong in only 1 unit?Using Polya's Problem Solving Strategy give a two problems (one practical/everyday life and one discipline-based)courses/lessons/32/314/955 6 Directions: Solve each of the following problems. □ Guest a) On Wednesday, Harry sold 3 times as many candy bars as on Tuesday. On Thursday, he sold 5 times as many bars as on Wednesday. He sold a total of 152 candy bars. How many did he sell each day? -1 b) Bill has 5 times as many baseball cards as Fred. Tim has 3 fewer than 4 times as many baseball cards as Fred. In all they have 167 baseball cards. How many does each have?
- Determine solutions of the following considerations.A region of 1000 individuals was overviewed dependent on the paper they read. They read three papers to be specific Daily Express, Daily Jung and Daily Times. 400 of them read Daily Express, 600 of them every day Jung and 500 of them Daily Times.100 of these papers which is actually equivalent to the individuals who read all of the three papers. 1. The number of read precisely 2 papers.2. The number of read precisely 1 papers. 3. The number of read all things considered two papers.Solve the given problem completely. Show your solution. In a dance crew with 32 members, 9 are are part of unit A, 10 are in unit B, and 6 performs solo. 3 members of unit A are also in unit B. Two solo performers are also in unit A:. 2 members of unit B are also solo performers. Only 1 member of the crew is part of all units. How many crew members are in unit A but not in B?Identify an LP problem and construct a model that describes it. Make sure to include the following: 1. Quick discussion on what motivates you to choose that problem; 2. Define the problem; 3. Define the variables;
- 3. A political toy company manufactures stuffed donkeys and elephants using cotton and polyester. At present, 40 units of cotton and 30 units of polyester are available. A donkey sells for $4 and requires 1 unit of cotton and 1 unit of polyester. An elephant sells for $5 and requires 2 units of cotton and 1 unit of polyester. Formulate an LP that will help the company maximize profit.Remark:You will have 5 questions regarding the same problem but in each question the numbers will be different An advertising company offer three types of mediums: television, newspaper and radio. The cost for each medium with its audience coverage is given below. Television Newspaper Radio Cost per advertisement ($) 1900 1000 100 Audience per advertisement 93,000 38,000 15,000 The company is capable of using a number of newspaper advertisement slots up to 13. Moreover, in order to balance the advertising among the three types of media, the total number of advertisements on radio should not occur more than 45% of total number of advertisement and at least 12% of the total number of advertisements should occur on television. The weekly advertising budget is $23800. How many advertisements should be run in each of the three types of media to maximize the total audience? If we assume the number of ads on each type of meduim as follows : T, N, R respectively Given the following objective…There are 5 apples, 6 bananas, and 10 grapefruits in the produce section of a grocery store. The apples look identical. The bananas look identical. The grapefruits look identical. In how many ways can a fruit basket be filled with these fruits. The only constraint is the basket is not allowed to be empty. How does this question change if all the fruits looked different? In how many ways can the basket be filled then?
- III. Apply Polya's StrategyImagine you are in a city that has a grid of streets with perfectly square blocks and that the only way to get from one intersection to another is to follow the block system. How many blocks will you have to walk (or pay the cabdriver for) if you want to get from the intersection of 10th Ave and 25th Street to the intersection of 6th Ave and 28th Street? If you had a jet pack and could fly over the buildings, how many blocks in length would the shortest path be? How does this compare to #1? (Hint: Pythagorean Theorem)Hello, I badly need some help. If applicable, please explain also everything with complete details about the solutions and answers. Thank you so much.