7.5 UNKNOWN PERIODIC PAYMENTS Often, in a given problem, the present or future value, the interest rate and the number of periods are known and the size of the annuity is unknown. To determine the size of an annuity is to find the periodic payment. Example 9. What monthly payment is needed to accumulate 10,000 due after 2 years at 10%? Solution: Given: (general ordinary annuity) S = 10,000, t = 2 years, i = 10%, p = 1, c = 12, k = 1/12 Since the annuity is a general ordinary annuity and the given is the accumulated value then the formula to be used is S =R R = S Smi S120.10 R = 10000. S210.10 |(1.10)/12 –1 R = 10000 0.10 (1.102 – 1 0.10 |(1.10)/12 –1 (1.10)2 -1 R = 10000 R = 379.72 I 10000 x ( 1.10 ^ ( 1 +12) - 1 ) +(1.10^2 - 1) = 379.72
7.5 UNKNOWN PERIODIC PAYMENTS Often, in a given problem, the present or future value, the interest rate and the number of periods are known and the size of the annuity is unknown. To determine the size of an annuity is to find the periodic payment. Example 9. What monthly payment is needed to accumulate 10,000 due after 2 years at 10%? Solution: Given: (general ordinary annuity) S = 10,000, t = 2 years, i = 10%, p = 1, c = 12, k = 1/12 Since the annuity is a general ordinary annuity and the given is the accumulated value then the formula to be used is S =R R = S Smi S120.10 R = 10000. S210.10 |(1.10)/12 –1 R = 10000 0.10 (1.102 – 1 0.10 |(1.10)/12 –1 (1.10)2 -1 R = 10000 R = 379.72 I 10000 x ( 1.10 ^ ( 1 +12) - 1 ) +(1.10^2 - 1) = 379.72
MATLAB: An Introduction with Applications
6th Edition
ISBN:9781119256830
Author:Amos Gilat
Publisher:Amos Gilat
Chapter1: Starting With Matlab
Section: Chapter Questions
Problem 1P
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