Deck 13: Return, Risk, and the Security Market Line
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Deck 13: Return, Risk, and the Security Market Line
1
The weights that are commonly used when computing the expected return of a portfolio given
various economic scenarios are based on the probability of each economic scenario occurring.
various economic scenarios are based on the probability of each economic scenario occurring.
True
2
Risk premium = Expected return - Risk-free rate
True
3
A decrease in the rate of inflation is an example of systematic risk.
True
4
The weights that are commonly used when computing the expected return of a portfolio given
various economic scenarios are based on the amount invested in each security held in the portfolio.
various economic scenarios are based on the amount invested in each security held in the portfolio.
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5
Diversification works because forming stocks into portfolios reduces the standard deviation of
returns for each stock.
returns for each stock.
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6
A decrease in a firm's cost of borrowing is an example of systematic risk.
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7
The weights that are commonly used when computing the expected return of a portfolio given
various economic scenarios are based on the expected returns of the securities within the portfolio.
various economic scenarios are based on the expected returns of the securities within the portfolio.
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8
Diversification works because unsystematic risk exists.
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9
The weights that are commonly used when computing the expected return of a portfolio given
various economic scenarios are based on the systematic risk of each security held in the portfolio.
various economic scenarios are based on the systematic risk of each security held in the portfolio.
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10
It is NOT possible to construct a portfolio with zero variance of expected returns from assets whose
expected returns have positive variance individually.
expected returns have positive variance individually.
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11
The expected return of the portfolio considers the probability of various states of the economy.
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12
The expected return of the portfolio considers the amount of money currently invested in each
individual security.
individual security.
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13
If the standard deviation of return on the stocks of the S&P/TSX Composite Index has been
approximately 24% per year over the last decade, it must be true that half of the firms in the index
have a standard deviation of return below 24% over the same period.
approximately 24% per year over the last decade, it must be true that half of the firms in the index
have a standard deviation of return below 24% over the same period.
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14
The expected return of the portfolio considers the performance of each stock given various
economic scenarios.
economic scenarios.
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15
Announcement = Expected part - Surprise
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16
You believe that the possible returns on stock A will be either 25% or -15% over the coming year,
depending on whether the economy does well or does poorly. Given some probabilities of the
future state of the economy, you compute the standard deviation of the possible returns. To get the
dispersion of the possible outcomes in the same units as the outcomes themselves (i.e., in %), you
must then compute the variance.
depending on whether the economy does well or does poorly. Given some probabilities of the
future state of the economy, you compute the standard deviation of the possible returns. To get the
dispersion of the possible outcomes in the same units as the outcomes themselves (i.e., in %), you
must then compute the variance.
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17
The expected return of the portfolio considers various levels of economic activity.
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18
Total risk - Systematic risk = Unsystematic risk
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19
Diversification works because firm-specific risk can be dramatically reduced if not eliminated.
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20
The realized return on an asset can be broken down into an expected component and a discounted
component.
component.
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21
Diversifiable risks are generally associated with an individual firm or industry.
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22
An example of systematic risk would be if the stock of the major airlines dropped after two
airplanes crashed on the same day, making many passengers too nervous to fly.
airplanes crashed on the same day, making many passengers too nervous to fly.
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23
Adding some international securities into a portfolio of Canadian stocks helps reduce unsystematic
risk in a portfolio.
risk in a portfolio.
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24
A firm in Moose Jaw announces a revolutionary way to make auto airbags in a way that decreases
their risk to automobile occupants. This is a type of surprise that would be characterized as
unsystematic risk.
their risk to automobile occupants. This is a type of surprise that would be characterized as
unsystematic risk.
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25
Diversifiable risks can be essentially eliminated by investing in several unrelated securities.
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26
Eliminating unsystematic risk is the responsibility of the individual investor.
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27
A market risk factor is a risk that influences only a small number of assets.
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28
An increase in the productivity of ABC Co. workers is an example of systematic risk.
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29
If you invest in stocks with higher-than-average betas, you are certain to earn higher-than-average
returns over the next year.
returns over the next year.
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30
Lower consumer spending than expected is considered an example of unsystematic risk.
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31
Common stock sold and replaced with Treasury bills would increase a portfolio's systematic risk.
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32
Lower quarterly sales for Chapters than expected is considered an example of systematic risk.
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33
Combining stocks with bonds in a portfolio helps reduce unsystematic risk in a portfolio.
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34
Adding some Treasury bills to a risky portfolio helps reduce unsystematic risk in a portfolio.
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35
A unique risk is a risk that affects a relatively large number of the assets in the market.
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36
Latest unemployment figures increased, as expected is considered an example of unsystematic
risk.
risk.
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37
Higher quarterly loss than expected for Air Canada is considered an example of unsystematic risk.
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38
An increase in the rate of GDP growth is an example of systematic risk.
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39
Assume all of the stocks in a given industry fall as a result of an announcement about the general
health of the economy. This is an example of systematic risk.
health of the economy. This is an example of systematic risk.
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40
Beta measures diversifiable risk.
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41
Systematic risk is relevant to a well-diversified investor.
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42
No matter how much total risk an asset has, only the unsystematic portion is relevant in determining
the expected return on that asset.
the expected return on that asset.
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43
Quarterly profit for Imperial Oil equals expectations is considered an example of systematic risk.
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44
Low-beta stocks are sold and replaced with high-beta stocks would increase a portfolio's systematic
risk.
risk.
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45
The market rewards investors for diversifiable risk by paying a risk premium.
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46
The risk premium increases as the non-diversifiable risk increases.
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47
The Capital Asset Pricing Model specifically rewards investors for assuming unsystematic risk via
the application of beta in the formula.
the application of beta in the formula.
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48
Unsystematic risk is rewarded by the marketplace.
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49
Market risk is relevant to a well-diversified investor.
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50
Non-diversifiable risks are those risks you cannot avoid if you are invested in the financial markets.
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51
Spreading the retail industry portion of a portfolio over five separate stocks helps reduce
unsystematic risk in a portfolio.
unsystematic risk in a portfolio.
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52
Systematic risk is a type of risk that influences all assets to a greater or lesser degree.
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53
Systematic risk is relevant to a well-diversified investor.
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54
Stocks with a beta equal to the market beta are added to a portfolio of Treasury bills would increase
a portfolio's systematic risk.
a portfolio's systematic risk.
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55
Unsystematic risk is rewarded when it exceeds the market level of unsystematic risk.
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56
Systematic risk is another name for non-diversifiable risk.
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57
Non-diversifiable risk is relevant to a well-diversified investor.
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58
For a stock with beta equal to 1.5 signifies that the market risk premium is 10%, and the expected
return on the stock is 15%.
return on the stock is 15%.
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59
Non-diversifiable risk is measured by standard deviation.
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60
Lower trade deficit than expected is considered an example of systematic risk.
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61
Portfolio betas will always be greater than 1.0.
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62
A portfolio of Treasury bills will have a beta equal to minus one.
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63
The market risk premium of an individual security is dependent upon the security's systematic risk.
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64
The market risk premium of an individual security is dependent upon the market rate of return.
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65
If the portfolio beta is greater than one then the portfolio has more risk than the overall market.
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66
For a stock with beta equal to 1.5 signifies that the stock has a 50% higher expected return than the
average stock.
average stock.
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67
The market risk premium of an individual security is dependent upon the security's unique risk.
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68
The projected risk premium is defined as the sum of the expected return on a risky investment and
the return on a risk-free investment.
the return on a risk-free investment.
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69
The CAPM shows that the expected return for a particular asset depends on the reward for bearing
systematic risk.
systematic risk.
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70
If world events cause investors to become more risk-averse, we would expect the market risk
premium to increase.
premium to increase.
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71
The CAPM shows that the expected return for a particular asset depends on the amount of
unsystematic risk.
unsystematic risk.
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72
The market risk premium of an individual security is dependent upon the risk-free rate of return.
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73
Slope of the SML = [E(RA) + Rf]/ßA
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74
A portfolio beta is a weighted average of the betas of the individual securities contained in the
portfolio.
portfolio.
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75
For a stock with beta equal to 1.5 signifies that the stock has 50% more systematic risk than the
average stock.
average stock.
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76
If the total risk of firm X is greater than that of firm Y, then the beta of firm X must be greater than
that of firm Y.
that of firm Y.
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77
Beta is needed to estimate the amount of additional reward you will receive for purchasing a risky
asset instead of a risk-free asset.
asset instead of a risk-free asset.
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78
Delta is needed to estimate the amount of additional reward you will receive for purchasing a risky
asset instead of a risk-free asset.
asset instead of a risk-free asset.
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79
Market risk premium is needed to estimate the amount of additional reward you will receive for
purchasing a risky asset instead of a risk-free asset.
purchasing a risky asset instead of a risk-free asset.
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80
The CAPM shows that the expected return for a particular asset depends on the pure time value of
money.
money.
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