A stock option gives its holder the right — but not the obligation — to buy or sell a stock at a fixed strike price on (or before) expiry. How much is that right worth today?
The insight behind the binomial model, introduced by Cox, Ross and Rubinstein in 1979, is disarmingly simple: divide time to expiry into equal steps. In each step the stock price either multiplies by an up factor or a down factor . At expiry every node carries a known payoff. Work backwards through the tree, discounting each node's value, and you get the fair price at the root.
The model is recombining: an up move followed by a down move lands on the same node as a down move followed by an up move (), so the tree has terminal nodes instead of . That makes the whole calculation run in time — fast enough to be practical long before continuous calculus is tractable.
As and the step size , the discrete tree converges to the famous Black-Scholes formula — the continuous limit of the same risk-neutral argument.
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