PRINCIPLES OF CORPORATE FINANCE
PRINCIPLES OF CORPORATE FINANCE
13th Edition
ISBN: 9781264052059
Author: BREALEY
Publisher: MCG
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Chapter 3, Problem 8PS

Bond returns If a bond’s yield to maturity does not change, the return on the bond each year will be equal to the yield to maturity. Confirm this with a simple example of a four-year bond selling at a premium to face value. Now do the same for a four-year bond selling at a discount. For convenience, assume annual coupon payments.

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Summary Introduction

To discuss: Illustrate on return on bond equals yield to maturity (YTM).

Explanation of Solution

4-year bond selling at a premium to face value and the 3% coupon bond is 2%.

PV=(0.03×$1,000)×((10.02)[10.02×(1+0.02)4])+[$1,000(1+0.02)4]=$30×(($50[$46.19]))+[$1,0001.0824]=$30×($3.81)+$923.87=$1,038.17

If the yield to maturity remain same, 1 year later the bond will sell as follows:

PV=(0.03×$1,000)×((10.02)[10.02×(1+0.02)3])+[$1,000(1+0.02)3]=$30×(($50$47.125))+[$1,0001.061208]=$30×($2.875)+$942.322=$1,028.57

Calculation of interest rate:

r=($30+[$1,028.84$1,038.08 $1,038.08])=1.999or%

Thus, the interest rate equals yield to maturity.

Expert Solution
Check Mark
Summary Introduction

To discuss: Illustrate on return on bond equals yield to maturity (YTM).

Explanation of Solution

4-year bond selling at discount to face value and the 3% coupon bond is 4%.

PV=(0.03×$1,000)×((10.04)[10.04×(1+0.04)4])+[$1,000(1+0.04)4]0.046799=$30×((25[$21.368]))+[$1,0001.1699]=$30×($3.632)+$854.77=$963.73

If the yield to maturity remain same, 1 year later the bond will sell as follows:

PV=(0.03×$1,000)×((10.04)[10.04×(1+0.04)3])+[$1,0001.1249]=$30×(($25$22.22))+[$1,0001.1249]=$30×($2.78)+$888.97=$972.37

Calculation of interest rate:

r=($30+[$972.25$963.70 $963.70])=0.040or4%

Thus, the interest rate equals yield to maturity.

Thus, the interest rate equals yield to maturity.

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Suppose you are given the following information about the default-free, coupon-paying yield curve: Maturity (years) Coupon rate (annual payment) YTM a. Use arbitrage to determine the yield to maturity of a two-year zero-coupon bond. b. What is the zero-coupon yield curve for years 1 through 4? Note: Assume annual compounding. a. Use arbitrage to determine the yield to maturity of a two-year zero-coupon bond. The yield to maturity of a two-year, zero-coupon bond is %. (Round to two decimal places.) b. What is the zero-coupon yield curve for years 1 through 4? The yield to maturity for the three-year and four-year zero-coupon bond is found in the same manner as the two-year zero-coupon bond. The yield to maturity on the three-year, zero-coupon bond is %. (Round to two decimal places.) %. (Round to two decimal places.) The yield to maturity on the four-year, zero-coupon bond is Which graph best depicts the yield curve of the zero-coupon bonds? (Select the best choice below.) O A. 8- 7- 6-…
In calculating the current price of a bond paying semiannual coupons, one needs to O use double the number of years for the number of payments made. O use the semiannual coupon. O use the semiannual rate as the discount rate. O All of the above needs to be done.
Consider a 4-years bond with a 8% annual coupon rate and semi-annual payments. Let us suppose that the zero coupon curve rate today with annual compounding is given by the one in Table 1.(a) Calculate the discount factors for all the previous maturities and then the bond price.(b) Calculate the equivalent continuous compounding rates. What do you expect as result for the bond price with these rates? Should it be lower, higher or equal to the one in part (a)? Why? The equivalent continuous compounding rates should be lower than the annual rates. Why?

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PRINCIPLES OF CORPORATE FINANCE

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