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Dahasolnce [82]
2 years ago
10

A company purchased a delivery van for $23,000 with a salvage value of $3,000 on September 1, 2008. It has an estimated useful l

ife of 5 years. Using the straight-line method, how much depreciation expense should the company recognize on December 31, 2008?Select one:a. $1,000.b. $1,333.c. $1,533.d. $4,000.e. $4,600.
Business
1 answer:
Maksim231197 [3]2 years ago
5 0

Answer:

B

Explanation:

The value to depreciate is always the total asset value minus the salvage value. In this case, $23,000-$3000=$20,000. The straight line method formula is:

Depreciation  = value to depreciate/useful years

Depreciation (year) = $20,000/5= $4,000

This formula calculates de depreciation expense each year from the purchase date, which means that on septemeber 1 of 2009 the company will register a depreciation expense of $4,000. But, from september 1,2008 to  December 31, 2008 is less than a year we have to calculate the depreciation for each month.

Depreciation (month)= $4,000/12= $333,33

But since that depreciation would be for december 1, we need to calculate the depreciation for each day

Depreciation (day) = $333,33/31 = $10,75

From september 1 to december 1: 3 months, then $333,333 x 3= $1000

And from december 1 to december 31: 30 days, then $10,75 x 30= $322, 58

The depreciation expense on December 31 is: $1000+$322,= $1322,58 that is almost $1,333. On January 1 the depreciation expense would be $1,333.

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aleksandr82 [10.1K]

Answer

The answer and procedures of the exercise are attached in the following image.

Explanation  

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7 0
1 year ago
Sharp Company manufactures a product for which the following standards have been set: Standard Quantity or Hours Standard Price
marin [14]

Answer:

1a) Actual Cost per foot = 6$

1b) Materials Price variance = 7530

1b) Spending Variance = 10830

2a) Standard Rate = 7.5 USD

2b) Standard Hours = 4804 hours

2c) Standard hours allowed = 2.09

Explanation:

As usual, let's sort out the data given:

1. For direct materials:

a) Compute the actual cost per foot of materials for March.

For actual cost per foot for materials for march. We need to find the actual quantity first. so, we will come back to it.

Data Given:

Units Produced = 2,290

Standard Quantity for Direct material = 3 feet

Standard Quantity for Direct materials = 3 x 2,290 = 6870 feet

Standard Price per foot = 5 USD

Standard Total Units =  6870

Total Price = 5 x 6870 = 34350 USD

But

Actual Price = unknown

Actual Quantity = Unknown

Actual Cost = 45,180$ company purchased the direct materials at that cost.

Material Quality Variance = Standard Price x (Actual Qty - Standard Qty)

Here in this equation, we know all the quantities except Actual Qty. let's make it subject to calculate it.

Actual Qty = 3,300/$5 + 6870

Actual Qty = 7,530

Now, as we have Actual Quantity, we can calculate the part a of part 1.

So, let's calculate a.

a) a) Compute the actual cost per foot of materials for March.

Actual cost per foot = Direct Material Cost / Actual Qty

Actual Cost per foot = 45,180/7530

Actual Cost per foot = 6$

Let's move on to part 1 b.

b) Compute the price variance and the spending variance.

Formula to calculate the Materials Price Variance is as follows:

Materials Price Variance = Actual Qty x( Actual Price - Standard Price)

Materials Price Variance = 7530 x ( 6 - 5)

Materials Price variance = 7530

Now, we have to calculate the spending variance and the formula is as follows:

Spending Variance = (Actual Price x Actual Qty) - (Standard Qty x Standard Price)

Spending Variance = (6 x 7530) - ( 6870 x 5)

Spending Variance = 10830

Let's move on to part 2 a.

a) Compute the standard direct labor rate per hour:

Formula :

Labor rate variance = (Standard Rate - Actual Rate) x Actual Hours

Labor rate variance = Labor spending variance - Labor efficiency variance

Labor rate variance =   3130 - 780 = 2350

In this equation, we know all the quantities but we have to find Standard rate so make it subject.

Standard Rate = 2350/4700 + 7

Standard Rate = 7.5 USD

b. Compute the standard hours allowed for the month’s production.

Labor Efficiency Variance = Standard rate x ( Actual hours - Standard Hours)

In this part, we need to find the standard hours.

let's make it the subject.

Standard hours = 780/7.5 + 4700

Standard Hours = 4804 hours

c. Compute the standard hours allowed per unit of product.

Standard hours allowed can be found by plugging in the values in the following formula.

Formula:

Standard hours allowed = Standard hours / units produced

Standard hours allowed = 4804/2,290

Standard hours allowed = 2.09

6 0
1 year ago
Which of the following statements is true regarding a work team?A) Work teams are rarely used in organizations today.B) Work tea
Lyrx [107]

Answer:

C) Work teams generate positive synergy through coordinated effort.

Explanation:

<u><em>Work teams is a team formed with number of individuals working for the same goal, who posses different talents and values, and joint together, providing a positive synergy in the team, towards the common goal.</em></u>

Work teams are focused and for reaching the goals, distribute the work among themselves through a facilitator, who is said to lead the work team, in the process of achieving a common goal.

Therefore, correct statement is:

Statement C

3 0
2 years ago
According to the National Association of Colleges and Employers, the average starting salary for Chemical
prisoha [69]

Answer:

A

Explanation:

When we have more students that enjoy studying history than enjoy studying math and science needed to get a degree in Chemical engineering , this will lead to a large no of history graduates in the labor market making the availability of chemical engineers graduate to be fewer and the demand for it higher.

This in effect cause a higher income for the chemical engineers as they become more of a scarce resources compared to history despite the students spending the same number of years to graduate in the college.

4 0
2 years ago
Assume the current Treasury yield curve shows that the spot rates for six​ months, one​ year, and one and a half years are 1 %1%
Ludmilka [50]

Answer:

present value of bond = $1042.96

Explanation:

given data

spot rates for six​ months = 1%

spot rates for one and = 1.1%​

spot rates for one and half years = 1.3%​

price = $1000

coupon bond = 4.25%

time = 6 month

solution

we get here first price on bond paid that is

coupon paid = $1000 × 4.25 × 0.5   = $21.25

we get here present value of 6 month and 1 year and 1 and half  year

present value  =   \frac{coupon\ payment }{(1+\frac{spot \ rate}{2})^t}     ..............1

present value of 6 month = \frac{21.25}{(1+\frac{0.1}{2})^1}    = 20.23

present value of 1 year = \frac{21.25}{(1+\frac{0.011}{2})^2}   = 21.01  

present value of 1 year and half year = \frac{21.25}{(1+\frac{0.013}{2})^2}   =  20.97

and

now we get present value of par value in 1 and half year

present value of par value in 1 and half year = \frac{par\ value}{(1+\frac{spot rate}{2})^3}  

present value of par value in 1 and half year = \frac{1000}{(1+\frac{0.013}{2})^3}

present value of par value in 1 and half year = 980.75

so

present value of bond will be as

present value of bond = 20.23 + 21.01 + 20.97 + 980.75

present value of bond = $1042.96

5 0
2 years ago
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