Question: 5. Implied Volatility and Straddles. Let r = 4%, AO) = 100, and let the price of a 3-month (te = 0.25) ATMF (K =
5. Implied Volatility and Straddles. Let r = 4%, AO) = 100, and let the price of a 3-month (te = 0.25) ATMF (K = 100e0.04/4) call option be 2.50. (a) What is the implied volatility of the call option? (b) Calculate the Delta, Gamma, Vega of the call option? (c) What is the price of an ATMF straddle (ATMF call + ATMF (d) Holding volatility constant, how much does the price of the above straddle with K = 100e0.04/4 change if the asset price A(0) changes to 101? (e) Holding A(0) = 100 constant, how much does the price of the above straddle with K = 100e0.04/4 change if volatility increases by 1%, Onew = Oold + 0.01? (f) Starting with the equation for the price of an ATMF straddle, use Taylor Series expansion of N(x) at 0 to approximate the price of the ATMF straddle as a linear function of o. asada en 0 0 5. Implied Volatility and Straddles. Let r = 4%, AO) = 100, and let the price of a 3-month (te = 0.25) ATMF (K = 100e0.04/4) call option be 2.50. (a) What is the implied volatility of the call option? (b) Calculate the Delta, Gamma, Vega of the call option? (c) What is the price of an ATMF straddle (ATMF call + ATMF (d) Holding volatility constant, how much does the price of the above straddle with K = 100e0.04/4 change if the asset price A(0) changes to 101? (e) Holding A(0) = 100 constant, how much does the price of the above straddle with K = 100e0.04/4 change if volatility increases by 1%, Onew = Oold + 0.01? (f) Starting with the equation for the price of an ATMF straddle, use Taylor Series expansion of N(x) at 0 to approximate the price of the ATMF straddle as a linear function of o. asada en 0 0
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