Answer:
The actual effective annual rate is <u>3.33%</u>.
Explanation:
Effective Annual Rate (EAR) refers to an interest rate has been adjusted for compounding over specified period of time.
Effective annual rate can therefore be described as the interest rate that paid to an investor in a year after compounding has been adjusted for.
Effective annual rate can be computed using the following formula:
EAR = [(1 + (i / n))^n] - 1 .............................(1)
Where;
i = Annual interest rate claimed by the dealer = 3.28%, or 0.0328
n = Number of compounding periods or months = 12
Substituting the values into equation (1), we have:
EAR = [(1 + (0.0328 / 12))^12] - 1 = 0.0332976137123635
EAR = 0.0333, or 3.33% approximately.
Therefore, the actual effective annual rate is <u>3.33%</u>.
Answer:
The correct answer is B
Explanation:
Bank reserve is the minimum cash which is required to kept on hand through the financial institutions so that could meet the requirements of central bank.
Checkable deposits is a kind of any demand deposit account in anticipation of the checks or the drafts in any form which will be written. In short, it means that the owner of the account could withdraw funds on demand.
So, if the primary decrease in bank reserve will also decrease the checkable deposit as there would be no cash with bank to provide to customers by the amount that is greater than the decrease in the reserve.
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Answer:
Option (c) is correct.
Explanation:
Given information states that bananas and tangerines are substitute goods. We know that the cross price elasticity of substitute goods is positive which means that there is a positive relationship between the price of one good and the quantity demanded for substitute good.
Therefore, in our case as the price of bananas increases and all the other factors remains constant then as a result the quantity demanded for tangerines increases.
Answer:
<em>16,800 dollars.</em>
Explanation:
<em>Overhead rate predetermined at availability.
</em>
= Approximate overhead processing times / Capacity machine hours.
= $33,600 / 24,000.
= $1.4 per hour on machine.
<em>Cost of Resources not used.
</em>
= (Machine hours at capacity - Actual machine hours) x Overhead speed estimated at load.
= ( 24,000 - 12,000) x $1.4.
= 16,800 dollars.