Lecture

Mathematics and Computer Science: Bonnie Berger at MIT

Related lectures (31)
Primal-dual Optimization: Fundamentals
Explores primal-dual optimization, minimax problems, and gradient descent-ascent methods for optimization algorithms.
Optimization Methods: Convergence and Trade-offs
Covers optimization methods, convergence guarantees, trade-offs, and variance reduction techniques in numerical optimization.
Primal-dual Optimization: Extra-Gradient Method
Explores the Extra-Gradient method for Primal-dual optimization, covering nonconvex-concave problems, convergence rates, and practical performance.
Duplication of the Cube
Delves into the historical challenge of duplicating the cube, exploring construction methods, misattributions, and geometric concepts.
Multiple Integrals: Techniques and Properties
Explores multiple integrals, techniques, properties, and center of gravity calculation in various domains.
Calculus of Variations: Gradient Young Theorem
Covers the Gradient Young Theorem in the calculus of variations, discussing proofs and applications.
Nonlinear Systems: Equations and Solutions
Explores solving nonlinear systems of equations using Newton's method.
Cauchy Problem: Solutions and Verification
Explores the Cauchy problem, emphasizing solution finding and verification processes.
Volume Calculation: Two Cylinders Interaction
Explains the volume calculation by intersecting two cylinders using coordinates and integrals.
Applications of Theorems
Demonstrates the practical application of theorems in calculus through two clever examples.

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