EM-1 Future Value and Compound Interest Using the future value tables, solve the following. Required: 1. What is the value on January 1, 2026, of $40,000 deposited on January 1, 2019, which accumulates interest at 12% compounded
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EM-1
Required:
1. What is the value on January 1, 2026, of $40,000 deposited on January 1, 2019, which accumulates interest at 12% compounded annually?
2. What is the value on January 1, 2025, of $10,000 deposited on July 1, 2019, which accumulates interest at 16% compounded quarterly?
3. What is the compound interest on an investment of $6,000 left on deposit for 5 years at 10% compounded annually?
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- PV and FV Tables:: 1. What is the present value on January 1, 2019, of $30,000 due on January 1, 2024, and discounted at 12% compounded annually? $____________ 2. What is the present value on July 1, 2019, of $8,000 due January 1, 2024, and discounted at 16% compounded quarterly? $_____________ 3. What is the amount of the present value discount (the difference between future value and present value) on $8,000 due at the end of 5 years at 10% compounded annually? $__________________ 4. What is the future value on December 31, 2023, of a deposit of $35,000 made on January 1, 2020, assuming interest of 10% compounded annually? $____________ 5. What is the future value on December 31, 2023, of a deposit of $10,000 made on January 1, 2020, assuming interest of 16% compounded quarterly? $_________________ 6. What is the future value on December 31, 2023, of a deposit of $25,000 made on January 1, 2020, assuming interest of 12% compounded semiannually? $____________ 7. What…Use the present value tables to answer the following questions. Required:1) What is the present value of a $100,000 loan issued on January 1, 2020, due on January 1, 2025, discounted at 14% compounded annually? 2) What is the present value of a $100,000 loan issued on January 1, 2020, due on July 1, 2025, discounted at 16% compounded quarterly? 3) How much is the difference between the face amount of $25,000 and the present value of $25,000 due at the end of sevenyearsat9%compoundedannually?Required 1 Calculate the future value. On January 1, 2020, $30,000 is deposited into a savings account. Assuming a 4% interest rate, calculate the amount accumulated on January 1, 2023, if interest is compounded annually. N (period of time) | (Interest) PV (Present Value FV (Future Value) PMT (Annuity) On January 1, 2020, $30,000 is deposited into a savings account. Assuming a 4% interest rate, calculate the amount accumulated on January 1, 2023, if interest is compounded semi-annually. N (period of time) | (Interest) PV (Present Value FV (Future Value) PMT (Annuity) Page 1 On January 1, 2020, $30,000 is deposited into a savings account. Assuming a 4% interest rate, calculate the amount accumulated on January 1, 2023, if interest is compounded quarterly. N (period of time) | (Interest) PV (Present Value FV (Future Value) PMT (Annuity) 2 In each of the three scenarios the FV should continue to increase. Explain why this passes the reasonablenes test.
- Prepare the amortization table for 2025, assuming that amortization is recorded on interest payment dates using the effective-interest method. (Round answers to 0 decimal places, e.g. 25,000.) Date Cash Expense Amortization Carrying Amount 1/1/25 $enter a dollar amount 6/30/25 $enter a dollar amount $enter a dollar amount $enter a dollar amount enter a dollar amount 12/31/25 enter a dollar amount enter a dollar amount enter a dollar amount enter a dollar amountCalculating Present Value For each of the following, compute the present value: Present Value Years Interest Rate Future Value ? 17.9% $16, 832 ? 9.7% $ 48,318? 23.13% $886, 073? 35 21% $550, 164EX.M.104 Use the compound interest tables to answer the following questions. (Click here to access the PV and FV tables to use with this problem.) Required: Round your answers to the nearest dollar. a. How much will be accumulated on January 1, 2024 if $450,000 is deposited on January 1, 2020, and interest is compounded annually at 10%? $__________________ b. How much will be accumulated on December 31, 2028 if $80,000 is deposited on December 31, 2020, and the fund pays 9% interest compounded semiannually? $__________________ c. What will be on deposit on January 1, 2025 if $50,000 is deposited on January 1, 2020, in a fund that earns 16% interest compounded quarterly? $______________________
- Present Value Computations Using the present value tables, solve the following. (Click here to access the time value of money tables to use with this problem.) Round your answers to two decimal places. Required: 1. What is the present value on January 1, 2016, of $30,000 due on January 1, 2020, and discounted at 10% compounded annually? 2. What is the present value on January 1, 2016, of $40,000 due on January 1, 2020, and discounted at 11% compounded semiannually? $ 3. What is the present value on January 1, 2016, of $50,000 due on January 1, 2020, and discounted at 16% compounded quarterly? $Using the four methods, find the interest on Php. 4,400 at 5 4/5 % simple interest from September 9, 2020, to April 19, 2021Use these present value tables to answer the question that follow. Below is a table for the present value of $1 at Compound interest. Year 6% 10% 12% 1 0.943 0.909 0.893 2 0.890 0.826 0.797 3 0.840 0.751 0.712 4 0.792 0.683 0.636 5 0.747 0.621 0.567 Below is a table for the present value of an annuity of $1 at compound interest. Year 6% 10% 12% 1 0.943 0.909 0.893 2 1.833 1.736 1.690 3 2.673 2.487 2.402 4 3.465 3.170 3.037 5 4.212 3.791 3.605 Using the tables above, what would be the present value of $17,508 (rounded to the nearest dollar) to be received four years from today, assuming an earnings rate of 10%? a.$17,508 b.$13,866 c.$55,500 d.$11,958 how to do this 1? Use these present value tables to answer the question that follow. Below is a table for the present value of $1 at Compound interest. Year 6% 10% 12% 1 0.943 0.909 0.893 2 0.890 0.826 0.797 3 0.840 0.751 0.712 4 0.792 0.683 0.636 5 0.747 0.621 0.567 Below is a…
- Use these present value tables to answer the question that follow.Below is a table for the present value of $1 at compound interest. Year 6% 10% 12% 1 0.943 0.909 0.893 2 0.890 0.826 0.797 3 0.840 0.751 0.712 4 0.792 0.683 0.636 5 0.747 0.621 0.567 Below is a table for the present value of an annuity of $1 at compound interest. Year 6% 10% 12% 1 0.943 0.909 0.893 2 1.833 1.736 1.690 3 2.673 2.487 2.402 4 3.465 3.170 3.037 5 4.212 3.791 3.605 Using the tables above, what would be the internal rate of return of an investment of $227,460 that would generate an annual cash inflow of $60,000 for the next five years?Use these present value tables to answer the question that follow. Below is a table for the present value of $1 at Compound interest. Year 6% 10% 12% 1 0.943 0.909 0.893 2 0.890 0.826 0.797 3 0.840 0.751 0.712 4 0.792 0.683 0.636 5 0.747 0.621 0.567 Below is a table for the present value of an annuity of $1 at compound interest. Year 6% 10% 12% 1 0.943 0.909 0.893 2 1.833 1.736 1.690 3 2.673 2.487 2.402 4 3.465 3.170 3.037 5 4.212 3.791 3.605 Using the tables above, what is the present value of $16,491.00 (rounded to the nearest dollar) to be received at the end of each of the next four years, assuming an earnings rate of 12%? a.$59,450 b.$16,491 c.$50,083 d.$39,611 Use these present value tables to answer the question that follow. Below is a table for the present value of $1 at Compound interest. Year 6% 10% 12% 1 0.943 0.909 0.893 2 0.890 0.826 0.797 3 0.840 0.751 0.712 4 0.792 0.683 0.636 5 0.747 0.621 0.567 Below is a…Use these present value tables to answer the question that follow.Below is a table for the present value of $1 at compound interest. Year 6% 10% 12% 1 0.943 0.909 0.893 2 0.890 0.826 0.797 3 0.840 0.751 0.712 4 0.792 0.683 0.636 5 0.747 0.621 0.567 Below is a table for the present value of an annuity of $1 at compound interest. Year 6% 10% 12% 1 0.943 0.909 0.893 2 1.833 1.736 1.690 3 2.673 2.487 2.402 4 3.465 3.170 3.037 5 4.212 3.791 3.605 Using the tables above, if an investment is made now for $23,500 that will generate a cash inflow of $8,000 a year for the next four years, what would be the net present value of the investment, assuming an earnings rate of 10%? a. $16,050 b. $25,360 c. $23,500 d. $1,860
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