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Take T E (0, oo) and consider a Black-Scholes market for a stock (S)eo.] (Geometric Brownian motion with drift r and volatility ). Consider the
Take T E (0, oo) and consider a Black-Scholes market for a stock (S)eo.] (Geometric Brownian motion with drift r and volatility ). Consider the all or nothing option with the payoff at time T defined bjy g(x) if xK, 0 where P > 0 and K > 0 are given constants Assume that we work in the Black-Scholes framework and compute the price (0:g(ST)) of the contract g(ST), i.e. compute an expression for the right hand side of Take T E (0, oo) and consider a Black-Scholes market for a stock (S)eo.] (Geometric Brownian motion with drift r and volatility ). Consider the all or nothing option with the payoff at time T defined bjy g(x) if xK, 0 where P > 0 and K > 0 are given constants Assume that we work in the Black-Scholes framework and compute the price (0:g(ST)) of the contract g(ST), i.e. compute an expression for the right hand side of
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