Answer:
The computations are shown below:
Explanation:
a. The computation of the economic order quantity is shown below:


= 229 units
The carrying cost is come from
= $2.40 × 20%
b. Time between placement of orders is
= Economic order quantity ÷Annual demand
= 229 ÷ 280
= 0.8179 years
So,
= 0.8179 × 365 days
= 298.53 days
We assume 365 days in a year
c. The average annual cost of ordering cost and carrying cost equals to
= Holding cost + ordering cost
= (Economic order quantity ÷ 2 × Holding cost) + (Annual demand ÷ Economic order quantity × ordering cost)
= (229 units ÷ 2 × $0.48) + (280 ÷ 229 units × $45)
= $54.96 + $55.02
= $109.98
d)
Now the reorder level is
= Demand × lead time + safety stock
where, Demand equal to
= Expected demand ÷ total number of weeks in a year
= 280 pounds ÷ 52 weeks
= 5.38461
So, the reorder point would be
= 5.38461 × 3 + $0
= 16.15 pounds
A segment should probably be dropped when the segment has important side effects on other segments cannot cover its own costs. The correct option is B.
<h3>What is a segment margin?</h3>
The profit or loss generated by one component of a business is referred to as segment margin.
Segment margin only considers the segment's revenue and expenses.
By analyzing a company's strengths and weaknesses, segment margin can provide an accurate picture of where it is performing well and where it is not.
If a segment cannot cover its own costs, it should be dropped unless it has significant side effects on other segments.
Thus, the correct option is B.
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Answer:
Date, bonds sold at a premium
Dr Cash 5,500,000
Cr Bonds payable 5,000,000
Cr Premium on bonds payable 500,000
Explanation:
The total face value of the bonds is $1,000 x 5,000 bonds = $5,000,000
since the bonds were sold at 110, their price was $5,000,000 x 110% = $5,500,000
the difference between the face value and the actual market price = $5,500,000 - $5,000,000 = $500,000 must be recorded as premium on bonds payable (increases the bonds' carrying value)
Answer:
supply curve to the right.
Explanation:
A drought decreases the supply of agricultural products, which means that at any given price a lower quantity will be supplied; conversely, especially good weather would shift the supply curve to the right. Drought refers to a period characterized by little or no rainfall in a geographical location over a specific period of time. When there's a drought, the production of agricultural products will be very much affected, thereby causing a decrease in the quantity of farm products.
On the other hand, a good weather would cause an increase in the quantity of farm products and as a result of this, the supply curve would shift rightward because there's enough product to meet the customer's demands or needs.
Answer:
a. How long will the current bridge system work before a new bracing system is required?: 64.18 years or 64 years and 2 months.
b. What if the annual traffic rate increases at 8 % annually: The bracing system will last for 24.65 years or 24 years and 7 months.
c. At what traffic increase rate will the current system last only 12 years: 17.13%
Explanation:
a. Denote x is the time taken for the number of pedestrian to grow from 300 to 2000. The current pedestrian is 300, the grow rate per year is 3% or 1.03 times a year. Thus, to reach 2,000, we have the equation: 300 x 1.03^x = 2000. Show the equate, we have 1.03^x = 6.67 <=> x = 64.18
b. Denote x is the time taken for the number of pedestrian to grow from 300 to 2000. The current pedestrian is 300, the grow rate per year is 8% or 1.08 times a year. Thus, to reach 2,000, we have the equation: 300 x 1.08^x = 2000. Show the equate, we have 1.08^x = 6.67 <=> x = 24.65.
c. Denote x as traffic increase rate. The current pedestrian is 300, the grow rate per year is (1+x) times a year. Thus, to reach 2,000 after 12 years and thus a new bracing system to be in place, we have the equation: 300 x (1+x)^12 = 2000. Show the equate, we have (1+x)^12 = 6.67 <=> 1+x = 1.1713 <=> x = 17.13%.