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The Alexander Manufacturing Company in Rochester, Minnesota, assembles and tests electronic components used in smartphones. Consider the following data regarding component T24 (amounts are per unit):

Direct materials cost \( 81.00

Direct labor cost 21.00

Activity-based costs allocated ?

Total manufacturing product cost ?

The activities required to build the component follow:

Activity

Allocation Base

Cost Allocated to Each Unit

Start Station

Number of raw component chassis

3 X \)1.50 = \(4.50

Dip Insertion

Number of dip insertions

? X 0.50 = 14.50

Manual Insertion

Number of manual insertions

13 X 0.40 = ?

Wave solder

Number of components solders

3 X 1.50 = 4.50

Backload

Number of backload insertions

7 X ? = 2.80

Test

Number of testing hours

0.39 60.0 = ?

Defect analysis

Number of defect analysis hours

0.10 X ? = 4.00

Total activity-based costs

\) ?

Requirements

1. Complete the missing items for the two tables.

Short Answer

Expert verified

Activity based cost allocated: $58.9

Total manufacturing product cost: $160.9

No. of dip insertion: 29

Total Manual insertion cost: $5.2

Backload unit cost: $0.4

Total test cost: $23.4

Defect analysis unit cost: $40

Step by step solution

01

Step-by-Step-SolutionStep 1: Computation of missing figures for activity table

Numberofdipinsertion=TotalDipinsertioncostUnitCost=$14.50$0.50=29


Totalcostofmanualinsertion=No.ofmanualinsertion×UnitCost=13×$0.40=$5.2

Unitcostforbackload=TotalcostNo.ofbackloadinsertion=$2.87=$0.4

role="math" localid="1653284399133" Totaltestcost=No.oftestinghours×UnitCost=0.39×$60=$23.4

Unitcostfordefectanalysis=TotalcostNo.ofanalysishour=$40.1=$40

02

Computation of missing figure for component T24

Activitybasedcostallocated=Startstationcost+Dipinsertioncost+Manualinsertioncost+Wavesoldercost+Backloadcost+Teastcost+Defectanalysiscost=$4.5+$14.5+$5.2+$4.5+$2.8+$23.4+$4=$58.9


Totalmanufacturingproductcost=Activitybasedcostallocated+DirectMaterialcost+Directlaborcost=$58.9+$81+$21=$160.9

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Most popular questions from this chapter

Jaunkas Corp. manufactures mid-fi and hi-fi stereo receivers. The following data have been summarized:

Mid-Fi Hi-Fi

Direct materials cost per unit \( 400 \) 1,800

Direct labor cost per unit 600 400

Indirect manufacturing cost per unit ? ?

Indirect manufacturing cost information includes the following:

Activity

Predetermined

Overhead

Allocation Rate

Mid-Fi

Hi-Fi

Setup

\( 1,400 per setup

36 setups

36 setups

Inspection

\) 700 per inspection hour

35 inspection hours

20 inspection hours

Machine maintenance

$ 13 per machine hour

1,900 machine hours

1,150 machine hours

The company plans to manufacture 125 units of the mid-fi receivers and 250 units of the hi-fi receivers. Calculate the product cost per unit for both products using activity-based costing.

The Alright Manufacturing Company in Rochester, Minnesota, assembles and tests electronic components used in smartphones. Consider the following data regarding component T24 (amounts are per unit):

Direct materials cost \( 80.00

Direct labor cost 20.00

Activity-based costs allocated ?

Total manufacturing product cost ?

The activities required to build the component follow:

Activity Allocation Base Cost Allocated to

Each Unit

Start station Number of raw component chassis 4 * \) 1.50 = \( 6.00

Dip insertion Number of dip insertions ? * 0.30 = 9.60

Manual insertion Number of manual insertions 10 * 0.50 = ?

Wave solder Number of components soldered 4 * 1.90 = 7.60

Backload Number of backload insertions 7 * ? = 4.20

Test Number of testing hours 0.43 * 90.00 = ?

Defect analysis Number of defect analysis hours 0.15 * ?= 12.00

Total activity-based costs \) ?

Requirements

1. Complete the missing items for the two tables.

Question:Refer to Exercises E19-24 and E19-25. Suppose Western’s direct labor rate was $280 per hour. The Halbert engagement used the following resources last month:

Allocation Base Halbert

Direct labor hours 170

Pages 310

Applications used 80

Requirements

1. Compute the cost assigned to the Halbert engagement, using the ABC system.

2. Compute the operating income or loss from the Halbert engagement, using theABC system.

Eason Company manufactures wheel rims. The controller expects the following ABC allocation rates for 2018:

Activity Allocation Base Predetermined Overhead

Allocation Rate

Materials handling Number of parts $ 4.00 per part

Machine setup Number of setups 400.00 per setup

Insertion of parts Number of parts 26.00 per part

Finishing Number of finishing hours 90.00 per hour

Eason produces two wheel rim models: standard and deluxe. Expected data for 2018 are as follows:

Standard Deluxe

Parts per rim 4.0 7.0

Setups per 500 rims 18.0 18.0

Finishing hours per rim 1.0 5.5

Total direct hours per rim 5.0 6.0

The company expects to produce 500 units of each model during the year.

Requirements

2. Prior to 2018, Eason used a single plantwide overhead allocation rate system with direct labor hours as the allocation base. Compute the predetermined overhead allocation rate based on direct labor hours for 2018. Use this rate to determine the estimated indirect manufacturing cost per wheel rim for each model, to the nearest cent.

Koehler (see Exercise E19-15 and Exercise E19-16) makes handheld calculators in two models—basic and professional—and wants to further refine its costing system by allocating overhead using activity-based costing. The estimated \(721,000 of manufacturing overhead has been divided into three primary activities: Materials Handling, Machine Setup, and Insertion of Parts. The following data have been compiled:

Material Handling

Machine Setup

Insertion of Parts

Total

Overhead costs

\) 45,000

\( 136,000

\) 540,000

$ 721,000

Allocation base

Number of parts

Number of setups

Number of parts

Expected usage:

Basic Model

32 parts per calculator

24 setups per year

32 parts per calculator

Professional

Model

58 parts per calculator

44 setups per year

58 parts per calculator

Requirement 2

Compare your answers for Exercise E19-15, Exercise E19-16, and Exercise E19-17. What conclusions can you draw?

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