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Please answer the next question based on the diagram and other data provided in the pdf document linked here: PQRS 1 Problem Graphic ONLY.pdf Applying the same method used for the PQ Domestic and PQ International problem (refer to the Zoom Sessions for assistance in working this type of problem), WHAT IS THE CONSTRAINT OF THIS SYSTEM? Raw Material #2 O Raw Material #1 O Resource B O Resource E O Resources A Please answer the next question based on the diagram and other data provided in the pdf document linked here: PQRS 1 Problem Graphic ONLY.pdf Applying the same method used for the PQ Domestic and PQ International problem (refer to the Zoom Sessions for assistance in working this type of problem), What is the MAXIMUM Net Profit/Week that could be achieved if the system constraint were in the MARKET? O $3,250 O $1,245 O $300 O $2,000 Please answer the next question based on the diagram and other data provided in the pdf document linked here: PQRS 1 Problem Graphic ONLY.pdf Applying the same method used for the PQ Domestic and PQ International problem (refer to the Zoom Sessions for assistance in working this type of problem), What Net Profit/Week are you willing to commit to as being achievable for this environment? In other words, what is the realistic net profit/week if the constraint is not in the Market? Answer based on your response to the preceding question (WHAT IS THE CONSTRAINT OF THIS SYSTEM)? O $1,245 O $3,250 O $300 O $2,000 Please answer the next question based on the diagram and other data provided in the pdf document linked here: PQRS 1 Problem Graphic ONLY.pdf Applying the same method used for the PQ Domestic and PQ International problem (refer to the Zoom Sessions for assistance in working this type of problem), What is the appropriate product mix (the mix that meets the financial objections of the firm)? Answer based on your response to the preceding question (WHAT IS THE CONSTRAINT OF THIS SYSTEM)? O P 60, Q-50, R=0, S=7 O P=60, Q-50, R=40, S-30 O P 30, Q-30, R=40, S=0 O P=40, Q=50, R=20, S=20 Demand Selling Price: Physical Layout A B C D E P 60 units/wk $35/unit C 12 min A 12 min Setup- min E 20 min Additional Information 0 Q 50 units/wk $40/unit A 18 min B 8 min unit Setup 0 min Setup times: 1 \ unit Setup 100 min R 40 units/wk $45/unit RM #1 $5/unit D 15 min 2/ units 2 RM #2 nits $5/unit C 10 min Setup 0 min Productive Capacity F 10 min RM#1 - unlimited availability RM#2 - 125 units/wk E: 100 minutes per setup A, B, C, and D: 0 minutes per setup S 30 units/wk $50/unit Supply Info: Resources: A, B, C, D, and E are each available for 2400 min/wk. Materials: B 20 min Setup 0 min D 15 min Operating Expense (OE excluding RM expense): $2,000/wk Overtime rate: $18.00/hr (standard rate is $12/hr) Nonproductive Capacity Protective Capacity 100% Please answer the next question based on the diagram and other data provided in the pdf document linked here: PQRS 1 Problem Graphic ONLY.pdf Applying the same method used for the PQ Domestic and PQ International problem (refer to the Zoom Sessions for assistance in working this type of problem), WHAT IS THE CONSTRAINT OF THIS SYSTEM? Raw Material #2 O Raw Material #1 O Resource B O Resource E O Resources A Please answer the next question based on the diagram and other data provided in the pdf document linked here: PQRS 1 Problem Graphic ONLY.pdf Applying the same method used for the PQ Domestic and PQ International problem (refer to the Zoom Sessions for assistance in working this type of problem), What is the MAXIMUM Net Profit/Week that could be achieved if the system constraint were in the MARKET? O $3,250 O $1,245 O $300 O $2,000 Please answer the next question based on the diagram and other data provided in the pdf document linked here: PQRS 1 Problem Graphic ONLY.pdf Applying the same method used for the PQ Domestic and PQ International problem (refer to the Zoom Sessions for assistance in working this type of problem), What Net Profit/Week are you willing to commit to as being achievable for this environment? In other words, what is the realistic net profit/week if the constraint is not in the Market? Answer based on your response to the preceding question (WHAT IS THE CONSTRAINT OF THIS SYSTEM)? O $1,245 O $3,250 O $300 O $2,000 Please answer the next question based on the diagram and other data provided in the pdf document linked here: PQRS 1 Problem Graphic ONLY.pdf Applying the same method used for the PQ Domestic and PQ International problem (refer to the Zoom Sessions for assistance in working this type of problem), What is the appropriate product mix (the mix that meets the financial objections of the firm)? Answer based on your response to the preceding question (WHAT IS THE CONSTRAINT OF THIS SYSTEM)? O P 60, Q-50, R=0, S=7 O P=60, Q-50, R=40, S-30 O P 30, Q-30, R=40, S=0 O P=40, Q=50, R=20, S=20 Demand Selling Price: Physical Layout A B C D E P 60 units/wk $35/unit C 12 min A 12 min Setup- min E 20 min Additional Information 0 Q 50 units/wk $40/unit A 18 min B 8 min unit Setup 0 min Setup times: 1 \ unit Setup 100 min R 40 units/wk $45/unit RM #1 $5/unit D 15 min 2/ units 2 RM #2 nits $5/unit C 10 min Setup 0 min Productive Capacity F 10 min RM#1 - unlimited availability RM#2 - 125 units/wk E: 100 minutes per setup A, B, C, and D: 0 minutes per setup S 30 units/wk $50/unit Supply Info: Resources: A, B, C, D, and E are each available for 2400 min/wk. Materials: B 20 min Setup 0 min D 15 min Operating Expense (OE excluding RM expense): $2,000/wk Overtime rate: $18.00/hr (standard rate is $12/hr) Nonproductive Capacity Protective Capacity 100%
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Related Book For
Income Tax Fundamentals 2013
ISBN: 9781285586618
31st Edition
Authors: Gerald E. Whittenburg, Martha Altus Buller, Steven L Gill
Posted Date:
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