Sara works at a printing company. She and her colleagues have to stagger
their tasks carefully because each of their projects require not only the
printers, but other equipment as well. Sara is currently working to fulfill an
order for 5,000 flyers, which are due tomorrow. Her customer just called to
say that they need additional 5,000 flyers.
What will be least important to Sara as she determines whether her company
can accommodate the request?
A. Whether her company has enough paper on hand
B. Whether her company can print the additional flyers without
negatively affecting the other projects
C. Whether there is enough time to print the additional flyers by
tomorrow
D. Why the customer needs 5,000 extra flyers

Answers

Answer 1

Answer: D. Why the customer needs 5,000 extra flyers

Explanation:

The important factors that Sara will consider to know whether her company can accommodate the request are:

• Whether her company has enough paper on hand

• Whether her company can print the additional flyers without negatively affecting the other projects

• Whether there is enough time to print the additional flyers by tomorrow.

These factors above are important as they'll determine if she can accept the request or not. For example, in a situation where there's no enough paper, then the request should not be accepted.

The least important factor for Sara to consider will be "Why the customer needs 5,000 extra flyers". This is not of concern to Sara and shouldn't bother her.

Answer 2

Answer:

D. why the customer needs 5,000 extra flyers


Related Questions

Why is it important for developers to be careful when using cascading deletes?

They may create orphaned records.
They may link to data in external databases.
They may delete more records than intended.
They may disconnect the bond between tables.

Answers

Answer:

C. They may delete more records than intended.

Explanation: Just answered it on edg. 2021

Answer:

(C) They may accidentally delete more records than intended.

Explanation:

Gourmet Aroma Coffee House has an exclusive contract with Columbia exporters. Two brands of gourmet coffee are imported, Morning Thunder (MT) and Evening Tender (ET). The following data are provided for the current fiscal year: Budgeted Operating Results MT ET MT ET Price per pound $ 40 $ 60 $ 50 $ 56 Variable cost per pound 20 36 24 40 Sales (in pounds) 4,000 4,000 3,960 5,040 The total market was estimated to be 80,000 pounds at the time of budget. The actual total market for the year is 75,000 pounds. What is the total contribution margin sales volume variance

Answers

Answer:

$24,160 favorable

Explanation:

The computation of the total contribution margin sales volume variance is given below:

The Budgeted contribution margin per pound of MT is

= $40 - $20

= $20 per pound

Now the budgeted contribution margin per pound of ET is

= $60 - $30

= $24  per pound

MT's contribution margin sales volume variance is

= (Actual sales quantity - Budgeted sales quantity) × Budgeted contribution margin per pound

= (3960 - 4000) × $20

= $800 Unfavorable

ET's contribution margin sales volume variance is

= (Actual sales quantity - Budgeted sales quantity) × Budgeted contribution margin per pound

= (5,040 - 4000) × $24

= $24,960 favorable

Now the total contribution margin sales volume is

= $800 unfavorable + $24,960 favorable

= $24,160 favorable

Allure Company manufactures and distributes two products, M and XY. Overhead costs are currently allocated using the number of units produced as the allocation base. The controller has recommended changing to an activity-based costing (ABC) system. She has collected the following information: Activity Cost Driver Amount M XY Production setups Number of setups $ 73,000 12 18 Material handling Number of parts 49,000 68 23 Packaging costs Number of units 246,000 96,000 60,000 $ 368,000 What is the total overhead per unit allocated to Product XY using activity-based costing (ABC)

Answers

Answer:

Results are below.

Explanation:

First, we need to calculate the allocation rates:

Predetermined manufacturing overhead rate= total estimated overhead costs for the period/ total amount of allocation base

Production setups= (73,000 / 30)= $2,433.33 per setup

Material handling= (49,000 / 91)= $538.46 per number of part  

Packaging costs= (246,000 / 156,000)= $1.58 per unit

Now, we need to allocate costs to Product XY:

Allocated MOH= Estimated manufacturing overhead rate* Actual amount of allocation base

Production setups= 2,433.33*18= 43,799.94

Material handling= 538.46*23= 12,384.58

Packaging costs= 1.58*60,000= $94,800

Total allocated costs= $150,984.52

Finally, per unit basis:

Unitary cost= 150,984.52 /60,000= $0.27

Bandar Industries manufactures sporting equipment. One of the company’s products is a football helmet that requires special plastic. During the quarter ending June 30, the company manufactured 35,000 helmets, using 22,500 kilograms of plastic. The plastic cost the company $171,000. According to the standard cost card, each helmet should require 0.6 kilograms of plastic, at a cost of $8 per kilogram. Required: 1. What is the standard quantity of kilograms of plastic (SQ) that is allowed to make 35,000 helmets? 2. What is the standard materials cost allowed (SQ × SP) to make 35,000 helmets? 3. What is the materials spending variance? 4. What is the materials price variance and the materials quantity variance?

Answers

Answer:

1. 21,000 kg of plastic

2. $168,000

3. $3000 Unfavorable

4. Materials Price variance $9000 Favaorable

Materials Quantity variance $12,000 Unvaforable

Explanation:

1. Calculation to determine the standard quantity of kilograms of plastic (SQ) that is allowed to make 35,000 helmets

Using this formula

Standard quantity of kilograms of plastic (SQ) = Standard quantity required per helmet x Total no. of helmets

Let plug in the formula

Standard quantity of kilograms of plastic (SQ) = 0.60 kg x 35,000

Standard quantity of kilograms of plastic (SQ) = 21,000 kg of plastic

Therefore The standard quantity of kilograms of plastic (SQ) that is allowed to make 35,000 helmets is 21,000 kg of plastic

2. Calculation to determine the standard materials cost allowed (SQ X SP) to make 35,000 helmets

Using this formula

Standard materials cost allowed (SQ X SP) = Standard quantity required per helmet x Standard cost per kg x Total no. of helmets

Let plug in the formula

Standard materials cost allowed (SQ X SP)= 0.60 x $8 x 35,000

Standard materials cost allowed (SQ X SP)= $168,000

Therefore The standard materials cost allowed (SQ X SP) to make 35,000 helmets is $168,000

3. Calculation to determine the materials spending variance

First step is to calculate the Materials Price variance

Using this formula

Materials Price variance = (AQ × AP) - (AQ × SP)

Let plug in the

Materials Price variance= $171,000 - (22,500 x $8)

Materials Price variance= $171,000 - 180,000

Materials Price variance= -$9,000

= $9000 Favaorable

Second step is to calculate the Materials Quantity variance using this formula

Materials Quantity variance = (AQ × SP) - (SQxSP)

Let plug in the formula

Materials Quantity variance=

Materials Quantity variance= 180,000 - $168,000

Materials Quantity variance=$12,000

Materials Quantity variance= $12,000 Unvaforable

Now let calculate the Materials spending variance using this formula

Materials spending variance = Price variance + Quantity variance

Let plug in the formula

Materials spending variance= -$9,000+ $12,000 Materials spending variance= $3,000

Materials spending variance= $3000 Unfavorable

Therefore Materials spending variance is $3000 Unfavorable

4. Calculation to determine the materials price variance and the materials quantity variance

Calculation for the Materials Price variance Using this formula

Materials Price variance = (AQ × AP) - (AQ × SP)

Let plug in the formula

Materials Price variance= $171,000 - (22,500 x $8)

Materials Price variance= $171,000 - 180,000

Materials Price variance= -$9,000

Materials Price variance= $9000 Favaorable

Therefore Materials Price variance is $9000 Favaorable

Calculation to determine Materials Quantity variance using this formula

Materials Quantity variance = (AQ × SP) - (SQxSP)

Let plug in the formula

Materials Quantity variance= = 180,000 - $168,000

Materials Quantity variance=$12,000

Materials Quantity variance= $12,000 Unvaforable

Therefore Materials Quantity variance is $12,000 Unvaforable

Sheffield Company had sales in 2019 of $1,842,400 on 65,800 units. Variable costs totaled $1,184,400, and fixed costs totaled $498,000. A new raw material is available that will decrease the variable costs per unit by 20% (or $3.60). However, to process the new raw material, fixed operating costs will increase by $93,000. Management feels that one-half of the decline in the variable costs per unit should be passed on to customers in the form of a sales price reduction. The marketing department expects that this sales price reduction will result in a 5% increase in the number of units sold. (a) Prepare a projected CVP income statement for 2020, assuming the changes have not been made. SHEFFIELD COMPANY CVP Income Statement Total Per Unit $ $ $ $

Answers

Answer:

Assuming that no changes happened, 2020 sales and expenses should be similar to 2019's:

                                       Total                        Per unit

Total sales                   $1,842,400                   $28

Variables costs           ($1,184,400)                  ($18)

Contribution margin    $658,000                    $10

Fixed costs                 ($498,000)                  ($7.57)

Operating income       $160,000                    $2.43

You own a portfolio equally invested in a risk-free asset and two stocks. If one of the stocks has a beta of 1.12 and the total portfolio is equally as risky as the market, what must the beta be for the other stock in your portfolio

Answers

Answer:

Beta for the other stock = 1.88

Explanation:

A  portfolio is said to be as risky as the market where its beta is exactly equal to 1. A beta of greater than 1 implies the portfolio is riskier than the average market, and less risky where the beta is less than 1.

A portfolio that has an equal proportion of three asset would mean a weight of 1/3 for each asset

So we can represent the portfolio beta as follows:

1 = 1/3×(0) + 1/3× (1.12) + 1/3×y

1= 0.37 + 0.33y

0.33y = 0.626

y= 0.626/0.33

y= 1.88

Beta for the other stock = 1.88

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