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The Pioneer Petroleum Corporation has a bond outstanding with an $60 annual interest payment, a market price of $880, and a maturity date in eight years. Assume the par
Find the following: (Use the approximation formula to compute the approximate yield to maturity and use a calculator or Excel to compute the exact yield to maturity. Do not round intermediate calculations. Input your answers as a percent rounded to 2 decimal places.)
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- The Pioneer Petroleum Corporation has a bond outstanding with an $85 annual interest payment, a market price of $800, and a maturity date in five years. Assume the par value of the bond is $1,000. Find the following: (use the approximation formula to compute the approximate yield to maturity and use the calculator method to compute the exact yield to maturity. Do not round intermediate calculations. Input your answers as a percent, round 2 decimal places.) A) Coupon rate % B) Current yield % C) Approximate yield to maturity % D) Exact yield to maturity %numerical answers should be calculated to at least two decimal places. Face value of bonds is taken as $100. assume coupon payments are paid once a year. Bond A: term to maturity=10 years, coupon rate = 9.75%, current price = $160.55. Find the current yield and yield to maturity of Bond A. Bond B: term to maturity-5 years, coupon rate = 11.25%, yield to maturity -2.35% p.a. Find the current price of Bond B. From your answer, what do say about this price when compared with the face value of the bond?Suppose that General Motors Acceptance Corporation issued a bond with 10 years until maturity, a face value of $1,000, and a coupon rate of 7% (annual payments). The yield to maturity on this bond when it was issued was 6%. Assuming the yield to maturity remains constant, what is the price of the bond immediately before it makes its first coupon payment? Complete the steps below using cell references to given data or previous calculations. In some cases, a simple cell reference is all you need. To copy/paste a formula across a row or down a column, an absolute cell reference or a mixed cell reference may be preferred. If a specific Excel function is to be used, the directions will specify the use of that function. Do not type in mumerical data into a cell or function. Instead, make a reference to the cell in which the data is found. Make your computations only in the blue cells highlighted below. In all cases, unless otherwise directed, use the earliest appearance of the data in your…
- Assume coupons are paid annually. Here are the prices of three bonds with 10 year maturities. Assume face value is $100. Bond Coupon a. What is the yield to maturity of each bond? b. What is the duration of each bond? Complete this question by entering your answers in the tabs below. Required A Required B What is the duration of each bond? Note: Do not round intermediate calculations. Round your answers to 2 decimal places.Today, interest rates on 1-year T-bonds yield 1.2%, interest rates on 2-year T-bonds yield 2%, and interest rates on 3-year T-bonds yield 3.3%. a. If the pure expectations theory is correct, what is the yield on 1-year T-bonds one year from now? Be sure to use a geometric average in your calculations. Do not round intermediate calculations. Round your answer to four decimal places.A plot of the yields on bonds with different terms to maturity but the same risk, liquidity, and tax considerations is known as O A. a yield curve. B. a risk-structure curve. OC. a term-structure curve. 5- O D. an interest-rate curve. Suppose people expect the interest rate on one-year bonds for each of the next four years to be 3%, 6%, 5%, and 6%. If the expectations theory of the term structure of interest rates is correct, then the implied interest rate on bonds with a maturity of four years is nearest whole number). %. (Round your response to the 2- Refer to the figure on your right. Suppose the expected interest rates on one-year bonds for each of the next four years are 4%, 5%, 6%, and 7%, respectively. 1. 1.) Use the line drawing tool (once) to plot the yield curve generated. 3 Term to Maturity in Years 2.) Use the point drawing tool to locate the interest rates on the next four years. 5. 3- Interest Rate .....
- Today, interest rates on 1-year T-bonds yield 1.4%, interest rates on 2-year T-bonds yield 2.3%, and interest rates on 3-year T-bonds yield 3.2%.a. If the pure expectations theory is correct, what is the yield on 1-year T-bonds one year from now? Be sure to use a geometric average in your calculations. Round your answer to four decimal places. Do not round intermediate calculations. % b. If the pure expectations theory is correct, what is the yield on 2-year T-bonds one year from now? Be sure to use a geometric average in your calculations. Round your answer to four decimal places. Do not round intermediate calculations. % c. If the pure expectations theory is correct, what is the yield on 1-year T-bonds two years from now? Be sure to use a geometric average in your calculations. Round your answer to four decimal places. Do not round intermediate calculations. %Today, interest rates on 1-year T-bonds yield 1.7%, interest rates on 2-year T-bonds yield 2.5%, and interest rates on 3-year T-bonds yield 3.7%.a. If the pure expectations theory is correct, what is the yield on 1-year T-bonds one year from now? Be sure to use a geometric average in your calculations. Do not round intermediate calculations. Round your answer to four decimal places. b. If the pure expectations theory is correct, what is the yield on 2-year T-bonds one year from now? Be sure to use a geometric average in your calculations. Do not round intermediate calculations. Round your answer to four decimal places. c. If the pure expectations theory is correct, what is the yield on 1-year T-bonds two years from now? Be sure to use a geometric average in your calculations. Do not round intermediate calculations. Round your answer to four decimal places.Suppose the returns on long-term government bonds are normally distributed. Assume long-term government bonds have a mean return of 6.1 percent and a standard deviation of 9.8 percent. What is the approximate probability that your return on these bonds will be less than −3.7 percent in a given year? Use the NORMDIST function in Excel® to answer this question. Note: Do not round intermediate calculations and enter your answer as a percent rounded to 2 decimal places, e.g., 32.16. What range of returns would you expect to see 95 percent of the time? Note: A negative answer should be indicated by a minus sign. Enter your answers from lowest to highest. Do not round intermediate calculations and enter your answers as a percent rounded to 2 decimal places, e.g., 32.16. What range would you expect to see 99 percent of the time? Note: A negative answer should be indicated by a minus sign. Enter your answers from lowest to highest. Do not round intermediate calculations and enter…
- The following table shows some data for three bonds. In each case, the bond has a coupon of zero. The face value of each bond is $1,000. Bond Price $ 260 260 A B C Maturity (Years) 20 24 Yield to Maturity a. Yield to maturity b. Maturity c. Price a. What is the yield to maturity of bond A? Note: Do not round intermediate calculations. Enter your answer as a percent rounded to 3 decimal places. Assume annual compounding. 10% 9 b. What is the maturity of B? Note: Do not round intermediate calculations. Round your answer to 2 decimal places. Assume annual compounding. c. What is the price of C? Note: Do not round intermediate calculations. Round your answer to 2 decimal places. Assume annual compounding. 2.600 % yearsSuppose that the prices of zero-coupon bonds with various maturities are given in the following table. The face value of each bond is $1,000. Maturity (Years) 1 2 3 4 5 Show Transcribed Text B) How could you construct a 1-year forward loan beginning in year 3? (Face Value) C) How could you construct a 1-year forward loan beginning in year 4? (Face Value) Required A Required B Complete this question by entering your answers in the tabs below. Face value Rate of synthetic loan → Show Transcribed Text Price $ 970.93 898.39 836.92 How could you construct a 1-year forward loan beginning in year 3? Note: Round your Rate of synthetic loan answer to 2 decimal places. Required A 776.20 685.42 Required B Face value Rate of synthetic loan Required C 7.85 % Required C How could you construct a 1-year forward loan beginning in year 4? Note: Round your Rate of synthetic loan answer to 2 decimal places. Ċ 13.29 %The following table summarizes prices of various default-free zero-coupon bonds ($100 face value): (Click on the following icon in order to copy its contents into a spreadsheet.) Maturity (years) Price (per $100 face value) 1 $96.31 a. Compute the yield to maturity for each bond. b. Plot the zero-coupon yield curve (for the first five years). c. Is the yield curve upward sloping, downward sloping, or flat? Note: Assume annual compounding. a. Compute the yield to maturity for each bond. The yield on the 1-year bond is The yield on the 2-year bond is The yield on the 3-year bond is The yield on the 4-year bond is The yield on the 5-year bond is %. (Round to two decimal places.) %. (Round to two decimal places.) %. (Round to two decimal places.) %. (Round to two decimal places.) %. (Round to two decimal places.) 2 $91.79 3 $87.10 4 $82.48 5 $77.45