Substituting r = 0.01 and n = 240 into the above formula, we can get:In the context of compound interest growth, if the initial value is set to P, the growth rate of each period is R, and the formula for calculating the final value F after N periods is F = P (1+R) N. In this topic, we mainly pay attention to the increase multiple, so we can regard the initial value as 1, where the growth rate of each trading day is r = 1\% = 0.01, and the number of periods passed is n = 240 trading days.The following is to calculate the increase of 240 trading days according to the daily increase of 2%, and calculate it through the calculator, 1.02 {240} \ approximate 115.8887.
1.01 {240} \ approximate 10.8926 is calculated by a calculator.\begin{align*}In the context of compound interest growth, if the initial value is set to P, the growth rate of each period is R, and the formula for calculating the final value F after N periods is F = P (1+R) N. In this topic, we mainly pay attention to the increase multiple, so we can regard the initial value as 1, where the growth rate of each trading day is r = 1\% = 0.01, and the number of periods passed is n = 240 trading days.
\begin{align*}We can use the formula for calculating the final value of compound interest to calculate the final increase under this continuous growth situation. The following are the specific steps:Substituting r = 0.01 and n = 240 into the above formula, we can get:
Strategy guide
Strategy guide 12-13
Strategy guide 12-13
Strategy guide 12-13
Strategy guide 12-13
Strategy guide
Strategy guide 12-13
Strategy guide 12-13