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GuDViN [60]
3 years ago
5

A computer accessory salesman attempts to convince you to purchase a "solar neutrino" shield for your new computer. (It's even "

on sale"!) Why do you turn down this excellent offer?
Business
1 answer:
Margaret [11]3 years ago
4 0

Answer:

Because neutrinos rarely, if ever, interact with my computer.

Explanation:

A computer accessory salesman attempts to convince me to purchase a "solar neutrino" shield for my new computer. (It's even "on-sale" !) I turn down this excellent offer <u>because neutrinos rarely, if ever, interact with my computer.</u><u> </u>Lack of any links to stuff, neutrinos remain extraordinarily unfriendly. They simply don't desire to communicate with anything in today's material world. To neutrinos, the Sun is translucent, and huge numbers of them walk away into all ways of space at approximately the pace concerning light.

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Suppose that the S&amp;P 500, with a beta of 1.0, has an expected return of 13% and T-bills provide a risk-free return of 4%. a.
Aleksandr [31]

Answer:

a. The answers are as follows:

(i) Expected of Return of Portfolio = 4%; and Beta of Portfolio = 0

(ii) Expected of Return of Portfolio = 6.25%; and Beta of Portfolio = 0.25

(iii) Expected of Return of Portfolio = 8.50%; and Beta of Portfolio = 0.50

(iv) Expected of Return of Portfolio = 10.75%; and Beta of Portfolio = 0.75

(v) Expected of Return of Portfolio = 13%; and Beta of Portfolio = 1.0

b. Change in expected return = 9% increase

Explanation:

Note: This question is not complete as part b of it is omitted. The complete question is therefore provided before answering the question as follows:

Suppose that the S&P 500, with a beta of 1.0, has an expected return of 13% and T-bills provide a risk-free return of 4%.

a. What would be the expected return and beta of portfolios constructed from these two assets with weights in the S&P 500 of (i) 0; (ii) 0.25; (iii) 0.50; (iv) 0.75; (v) 1.0

b. How does expected return vary with beta? (Do not round intermediate calculations.)

The explanation to the answers are now provided as follows:

a. What would be the expected return and beta of portfolios constructed from these two assets with weights in the S&P 500 of (i) 0; (ii) 0.25; (iii) 0.50; (iv) 0.75; (v) 1.0

To calculate these, we use the following formula:

Expected of Return of Portfolio = (WS&P * RS&P) + (WT * RT) ………… (1)

Beta of Portfolio = (WS&P * BS&P) + (WT * BT) ………………..………………. (2)

Where;

WS&P = Weight of S&P = (1) – (1v)

RS&P = Return of S&P = 13%, or 0.13

WT = Weight of T-bills = 1 – WS&P

RT = Return of T-bills = 4%, or 0.04

BS&P = 1.0

BT = 0

After substituting the values into equation (1) & (2), we therefore have:

(i) Expected return and beta of portfolios with weights in the S&P 500 of 0 (i.e. WS&P = 0)

Using equation (1), we have:

Expected of Return of Portfolio = (0 * 0.13) + ((1 - 0) * 0.04) = 0.04, or 4%

Using equation (2), we have:

Beta of Portfolio = (0 * 1.0) + ((1 - 0) * 0) = 0

(ii) Expected return and beta of portfolios with weights in the S&P 500 of 0.25 (i.e. WS&P = 0.25)

Using equation (1), we have:

Expected of Return of Portfolio = (0.25 * 0.13) + ((1 - 0.25) * 0.04) = 0.0625, or 6.25%

Using equation (2), we have:

Beta of Portfolio = (0.25 * 1.0) + ((1 - 0.25) * 0) = 0.25

(iii) Expected return and beta of portfolios with weights in the S&P 500 of 0.50 (i.e. WS&P = 0.50)

Using equation (1), we have:

Expected of Return of Portfolio = (0.50 * 0.13) + ((1 - 0.50) * 0.04) = 0.0850, or 8.50%

Using equation (2), we have:

Beta of Portfolio = (0.50 * 1.0) + ((1 - 0.50) * 0) = 0.50

(iv) Expected return and beta of portfolios with weights in the S&P 500 of 0.75 (i.e. WS&P = 0.75)

Using equation (1), we have:

Expected of Return of Portfolio = (0.75 * 0.13) + ((1 - 0.75) * 0.04) = 0.1075, or 10.75%

Using equation (2), we have:

Beta of Portfolio = (0.75 * 1.0) + ((1 - 0.75) * 0) = 0.75

(v) Expected return and beta of portfolios with weights in the S&P 500 of 1.0 (i.e. WS&P = 1.0)

Using equation (1), we have:

Expected of Return of Portfolio = (1.0 * 0.13) + ((1 – 1.0) * 0.04) = 0.13, or 13%

Using equation (2), we have:

Beta of Portfolio = (1.0 * 1.0) + (1 – 1.0) * 0) = 1.0

b. How does expected return vary with beta? (Do not round intermediate calculations.)

There expected return will increase by the percentage of the difference between Expected Return and Risk free rate. That is;

Change in expected return = Expected Return - Risk free rate = 13% - 4% = 9% increase

4 0
3 years ago
Which one of these statements related to discounted payback is correct?a) the discounted payback period decreases as teh discoun
Free_Kalibri [48]

Answer:

A) the discounted payback period decreases as the discount rate increases

Explanation:

The discounted payback period is used to determine the profitability of an investment project.

A not discounted payback period is how long does it take for the cash flows of a project to recoup the investment's cost without considering the value of money in time. By applying a discount to the cash flows, the discounted period will more accurately measure the length of time needed to recoup an investment using current dollars.

The higher the discount rate, the longer it will take for the cash flows to cover the investment's cost, so if the discount rate lowers, then the discounted payback period will be shorter.

5 0
4 years ago
Suppose the market for pizzas is unregulated. That is, pizza prices are free to adjust based on the forces of supply and demand.
Ghella [55]

Answer:

The correct word for the blank space is: lower; buyers to offer higher prices.

Explanation:

In a market driven by supply and demand laws, shortages are caused because of excess in demand as a result of lower prices. Thus, that price is lower than the equilibrium price. Besides, if there is a need to push that price to its equilibrium level, sellers will have to increase the price implying buyers will have to offer higher prices.

5 0
3 years ago
Which depict a negative externality? (Select all that apply)
kompoz [17]

Answer:

The corrects answers for this would be A and C.

Explanation:

As you can see, for both a and c, those are the only two answers that have a negative outcome, hence the negative externality.

5 0
3 years ago
sally borrowed $1000 from her friend monique two years ago. their arrangement required sally to repay $250 each year for the sub
ANEK [815]

Answer:

a

Explanation:

Here are the options to this question :

A. yes, 475 is more than the PV of the two remaining payments

B. More information is needed to decide

C. Monique is indifferent between the options, the PVs are equivalent

D. No, the PV of the remaining two payments is more than 475

We have to determine the present value of the remaining two payments and compare the options

Present value is the sum of discounted cash flows

Present value can be calculated using a financial calculator

Cash flow in year 1 = 0

Cash flow in year 2 = 0

Cash flow in year 3 = 250

Cash flow in year 4 = 250

I = 2%

PV = $466.54

$475  is greater than $466.54. Therefore, she should accept the single $475 payment

To find the PV using a financial calculator:

1. Input the cash flow values by pressing the CF button. After inputting the value, press enter and the arrow facing a downward direction.

2. after inputting all the cash flows, press the NPV button, input the value for I, press enter and the arrow facing a downward direction.  

3. Press compute  

8 0
3 years ago
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