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e. Suppose California's population is 36.6 million people, and its population is expected to grow by 3% annually. How long will it take for the
e. Suppose California's population is 36.6 million people, and its population is expected to grow by 3% annually. How long will it take for the population to double? Round your answer to the nearest whole number. years f. Find the PV of an ordinary annuity that pays $1,000 each of the next 6 years if the interest rate is 15%. Then find the FV of that same annuity. Round your answers to the nearest cent. PV of ordinary annuity: \$ FV of ordinary annuity: \$ g. How will the PV and FV of the annuity in part f change if it is an annuity due rather than an ordinary annuity? Round your answers to the nearest cent. PV of annuity due: \$ FV of annuity due: \$ h. What will the FV and the PV for parts a and c be if the interest rate is 12% with semiannual compounding rather than 12% with annual compounding? Round your answers to the nearest cent. FV with semiannual compounding: \$ PV with semiannual compounding: \$ e. Suppose California's population is 36.6 million people, and its population is expected to grow by 3% annually. How long will it take for the population to double? Round your answer to the nearest whole number. years f. Find the PV of an ordinary annuity that pays $1,000 each of the next 6 years if the interest rate is 15%. Then find the FV of that same annuity. Round your answers to the nearest cent. PV of ordinary annuity: \$ FV of ordinary annuity: \$ g. How will the PV and FV of the annuity in part f change if it is an annuity due rather than an ordinary annuity? Round your answers to the nearest cent. PV of annuity due: \$ FV of annuity due: \$ h. What will the FV and the PV for parts a and c be if the interest rate is 12% with semiannual compounding rather than 12% with annual compounding? Round your answers to the nearest cent. FV with semiannual compounding: \$ PV with semiannual compounding: \$
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