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For example, assume Amelia wants to earn a return of 8.75% and is offered the opportunity to purchase a $1,000 par value bond that pays
For example, assume Amelia wants to earn a return of 8.75% and is offered the opportunity to purchase a $1,000 par value bond that pays a 10.00% coupon rate (distributed semiannually) with three years remaining to maturity. The following formula can be used to compute the bond's intrinsic value: Intrinsic Value = A/(1+C)^1 + A/(1+C)^2 + A/(1+C)^3 + A/(1+C)^4 + A/(1+C)^5 + A/(1+C)^6 + B/(1+C)^6 Complete the following table by identifying the appropriate corresponding variables used in the equation. Based on this equation and the data, it is reasonable to expect that Amelia's potential bond investment is currently exhibiting an intrinsic value less than $1,000. Now, consider the situation in which Amelia wants to earn a return of 7.00%, but the bond being considered for purchase offers a coupon rate of 10.00%. Again, assume that the bond pays semiannual interest payments and has three years to maturity. If you round the bond's intrinsic value to the nearest whole dollar, then its intrinsic value of _____ (rounded to the nearest whole dollar) is ______ its par value, so that the bond is ______. Given your computation and conclusions, which of the following statements is true? When the coupon rate is greater than Amelia's required return, the bond's intrinsic value will be less than its par value. When the coupon rate is greater than Amelia's required return, the bond should trade at a premium. A bond should trade at a par when the coupon rate is greater than Amelia's required return. When the coupon rate is greater than Amelia's required return, the bond should trade at a discount
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