cess Utilization A jean manufacturer makes average), and costs $ B costs $5, takes 1s customer at the ti 12 minutes to sell, a salesperson is all- and C (at cost) and $75. If a salespers 30 hours (1800 m profit (net after al $2 on a unit of C. lead to maximum of jeans, each of which goes through three manufacturing minutes each type of product requires in each of the three phases-cutting, sewing, and finishing. The number of phases is given below: Jean Finishing Cutting Sewing I 12 8 II 18 12 12 III 24 18 28. Resource Alloc fies its surgical their length respectively, fo the operations and 2 hours, There are 5200 minutes of cutting time, 6000 minutes of sewing time, and 2200 minutes of finishing time each day. The company can sell all the jeans it makes and make a profit of $3 on each Jean I, $4.50 on each Jean II, and $6 on each Jean III. Determine the number of jeans in each category that should be made each day to maximize profits. ar rooms, each o total number each type s 26. Process Utilization A company manufactures three types of toys A, B, and C. Each requires rubber, plastic, and alu- revenues? minum as listed below: 29. Mixture Th line into th Aluminum Toy Rubber Plastic super pren octane and 4 А 2 2 2 high octar consists of В 2 1 4 С 2 1 ny has av gallons Regular $1.30 pe The company has available 600 units of rubber, 800 units of plastic, and 1400 units of aluminum. The company makes a profit of $4, $3, and $2 on toys A, B, and C, respectively. Assuming all toys manufactured can be sold, determine a production order so that profit is maximum. How ma order to
cess Utilization A jean manufacturer makes average), and costs $ B costs $5, takes 1s customer at the ti 12 minutes to sell, a salesperson is all- and C (at cost) and $75. If a salespers 30 hours (1800 m profit (net after al $2 on a unit of C. lead to maximum of jeans, each of which goes through three manufacturing minutes each type of product requires in each of the three phases-cutting, sewing, and finishing. The number of phases is given below: Jean Finishing Cutting Sewing I 12 8 II 18 12 12 III 24 18 28. Resource Alloc fies its surgical their length respectively, fo the operations and 2 hours, There are 5200 minutes of cutting time, 6000 minutes of sewing time, and 2200 minutes of finishing time each day. The company can sell all the jeans it makes and make a profit of $3 on each Jean I, $4.50 on each Jean II, and $6 on each Jean III. Determine the number of jeans in each category that should be made each day to maximize profits. ar rooms, each o total number each type s 26. Process Utilization A company manufactures three types of toys A, B, and C. Each requires rubber, plastic, and alu- revenues? minum as listed below: 29. Mixture Th line into th Aluminum Toy Rubber Plastic super pren octane and 4 А 2 2 2 high octar consists of В 2 1 4 С 2 1 ny has av gallons Regular $1.30 pe The company has available 600 units of rubber, 800 units of plastic, and 1400 units of aluminum. The company makes a profit of $4, $3, and $2 on toys A, B, and C, respectively. Assuming all toys manufactured can be sold, determine a production order so that profit is maximum. How ma order to
Algebra and Trigonometry (6th Edition)
6th Edition
ISBN:9780134463216
Author:Robert F. Blitzer
Publisher:Robert F. Blitzer
ChapterP: Prerequisites: Fundamental Concepts Of Algebra
Section: Chapter Questions
Problem 1MCCP: In Exercises 1-25, simplify the given expression or perform the indicated operation (and simplify,...
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Contingency Table
A contingency table can be defined as the visual representation of the relationship between two or more categorical variables that can be evaluated and registered. It is a categorical version of the scatterplot, which is used to investigate the linear relationship between two variables. A contingency table is indeed a type of frequency distribution table that displays two variables at the same time.
Binomial Distribution
Binomial is an algebraic expression of the sum or the difference of two terms. Before knowing about binomial distribution, we must know about the binomial theorem.
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