Answer: $8,391.90
Explanation:
So the company borrowed $40,000 from a bank.
They are to pay 7% interest on the note per year for 6 years.
We are to find the annual payments.
7% represents a constant payment schedule per year so we can use an Annuity formula.
Seeing as the Annuity factor has been calculated for us already we don't need to formula though.
The present value of an annuity factor for 6 years at 7% is 4.7665.
Calculating the present value of the annual payment can be done as follows,
= Amount / PVIFA (Present Value Interest Factor for an Annuity)
= 40,000/4.7665
= 8391.90181475
= $8,391.90
The annual payments equal $8,391.90.
Answer:
Total= $13,221.52
Explanation:
Giving the following information:
Deposited $3,200 in an account two years ago and is depositing another $5,000 today.
A final deposit of $3,500 will be made one year from now.
Interest expense= 4.85% compounded annually.
We need to calculate the final value of each deposit using the following formula:
FV= PV*(1+i)^n
First deposit= 3,200*(1.0485^5)= $4,055.01
Second deposit= 5,000*(1.0485^2)= $5,496.76
Third deposit= 3,500*(1.0485)= $3,669.75
Total= $13,221.52
Answer:
Basic corrective action
Explanation:
Basic corrective action is undertaken by management to its staff or employees in order to eliminate further recurrence of non-conformity with organization procedures, rules and policies. The written warning to Elena is an example of basic corrective action in order for her to stop absenteeism from work.
Answer: Participating preferred
Explanation:
Participating preferred is a stock which pays specific dividends rate to their customers and also receives additional dividends, this is made known Board of Directors and paid by the company, this meets up with the objectives a customers has for investing and having a stable income. It is so known as performance preferred and it gives the holder the benefit of collecting extra dividends.
Answer:
39 years
Explanation:
Under the rule of 70, the economy doubles its real GDP per capita income
In this the computation is done by dividing the 70 by the annual growth rate
So, the formula is shown below:
Time period = Rule of 70 ÷ growth rate
where,
Growth rate is 1.8%
So, the time period at which the GDP doubles is
= 70 ÷ 1.8
= 39 years
By dividing the rule of 70 by the growth rate we can find the number of years at which the GDP doubles