Question
Mello Manufacturing Company is a diversified manufacturer that manufactures three products (Alpha, Beta, and Omega) in a continuous production process. Senior management has asked the
Mello Manufacturing Company is a diversified manufacturer that manufactures three products (Alpha, Beta, and Omega) in a continuous production process. Senior management has asked the controller to conduct an activity-based costing study. The controller identified the amount of factory overhead required by the critical activities of the organization as follows:
1 | Activity | Activity Cost Pool |
2 | Production | $242,089.00 |
3 | Setup | 88,425.00 |
4 | Material handling | 9,253.00 |
5 | Inspection | 49,623.00 |
6 | Product engineering | 167,990.00 |
7 | Total | $557,380.00 |
The activity bases identified for each activity are as follows:
Activity | Activity Base |
Production | Machine hours |
Setup | Number of setups |
Material handling | Number of parts |
Inspection | Number of inspection hours |
Product engineering | Number of engineering hours |
The activity-base usage quantities and units produced for the three products were determined from corporate records and are as follows:
Machine | Number of | Number of | Number of | Number of | ||
Hours | Setups | Parts | Inspection Hours | Engineering Hours | Units | |
Alpha | 984 | 57 | 84 | 441 | 125 | 1,366 |
Beta | 847 | 126 | 158 | 284 | 191 | 991 |
Omega | 390 | 210 | 245 | 248 | 219 | 475 |
Total | 2,221 | 393 | 487 | 973 | 535 | 2,832 |
Each product requires 40 minutes per unit of machine time.
Required: | |||||||||
Complete the Activity Tables for Alpha, Beta and Omega.
|
X
Activity Table - Alpha
Complete the Activity Table for Alpha.
|
Complete the Activity Table for Alpha.
|
Complete the Activity Table for Alpha.
|
Alpha | |||||
Activity | Activity- | ||||
Base | Activity | Activity | |||
Usage | X | Rate | = | Cost | |
Production | mh | /mh | |||
Setup | setups | /setup | |||
Material handling | parts | /part | |||
Inspection | insp. hours | /hour | |||
Product Engineering | eng. hours | /hour | |||
Total activity cost | |||||
Number of units | |||||
Activity cost per unit |
Complete the Activity Table for Beta.
|
Beta | |||||
Activity | Activity- | ||||
Base | Activity | Activity | |||
Usage | X | Rate | = | Cost | |
Production | mh | /mh | |||
Setup | setups | /setup | |||
Material handling | parts | /part | |||
Inspection | insp. hours | /hour | |||
Product Engineering | eng. hours | /hour | |||
Total activity cost | |||||
Number of units | |||||
Activity cost per unit |
Complete the Activity Table for Omega.
|
Omega | |||||
Activity | Activity- | ||||
Base | Activity | Activity | |||
Usage | X | Rate | = | Cost | |
Production | mh | /mh | |||
Setup | setups | /setup | |||
Material handling | parts | /part | |||
Inspection | insp. hours | /hour | |||
Product Engineering | eng. hours | /hour | |||
Total activity cost | |||||
Number of units | |||||
Activity cost per unit |
3. Why arent the activity unit costs equal across all three products since they require the same machine time per unit?
The difference is because the products consume many activities in ratios different from the volume.
The difference is due to machine inefficiencies.
The difference is due to product cost distortions.
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