Applied Computational Finance
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ACF Lecture 1 - Primer on stochastic calculus (pdf)
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3.86 M |
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ACF Lecture 2 - Black-Scholes Model (pdf)
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3.06 M |
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Applied Computational Finance Lecture 3 - Local volatility (pdf)
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898.45 K |
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Applied Computational Finance Lecture 4 - Stochastic volatility (pdf)
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2 M |
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ACF Lecture 5 - Calibration (pdf)
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1.64 M |
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ACF Lecture 6 - Monte Carlo Methods (pdf)
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1.29 M |
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ACF Lecture 7 - Variance reduction methods (pdf)
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971.57 K |
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ACF Lecture 8 - Finite difference methods (pdf)
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871.62 K |
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ACF Lecture 9 - Optimisation (pdf)
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969.02 K |
The main aim of this course is to introduce students to core techniques in computational finance, such as simulation of asset prices, pricing options using stochastic models, Monte Carlo methods as applied to complex derivatives, solving Black-Scholes type equations numerically, solving dynamic optimization problems numerically, and how to implement these techniques using modelling software packages and programming languages.
This course consists of nine lectures and is designed to span approximately ten teaching weeks in a Master’s program in Financial Engineering.
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