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Related lectures (17)
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Thermodynamics and Energetics I
Explores fundamental thermodynamics concepts, laws, energy transfer, and system analysis.
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Machine Learning for Solving PDEs: Random Feature Method
Explores the Random Feature Method for solving PDEs using machine learning algorithms to approximate high-dimensional functions efficiently.
Periodic Table Elements and Assyr Abdulle's Contributions
Explores the periodic table of elements and Assyr Abdulle's significant contributions to numerical analysis.
Organic Chemistry: The Role of Vitamins and Reactions
Discusses the significance of vitamins and radical reactions in organic chemistry.
The Chemistry of Tea: Polyphenols and Health Effects
Explores the chemistry of tea, polyphenols, health effects, addition of electrophilic reagents to alkenes, and anti-Markovnikov addition.
Sampling Algorithms for Constrained Systems
Explores sampling algorithms for constrained systems, emphasizing the work of Benedict Leimkuhler from the University of Edinburgh.
Halogenation of Alkanes: Mechanisms and Reactions
Discusses the mechanisms of alkane halogenation, focusing on chlorination and bromination processes.
Linear Algebra: Subspaces and Transformations
Explores subspaces in linear algebra and transformations, including kernels and images of linear transformations.
Linear Algebra: Subspaces and Combinations
Explores subspaces and linear combinations in linear algebra.
Molecular Spectroscopy: Vibrational Modes
Explores molecular spectra, vibrational modes, Schrödinger equation solutions, and isotopic distribution in mass spectrometry.
Aromatic Compounds: Reactivity and Substitution
Explores the reactivity of aromatic compounds, including electrophilic addition and substitution reactions, regioselectivity, and reaction examples.
Stochastic Differential Equations: Mean-Field Inference
Explores inference for stochastic differential equations, focusing on numerical methods and convergence analysis.
Computational Molecular Design: Mathematical Theory, High Performance Computing, In Vivo Experiments
Explores Computational Molecular Design, emphasizing Mathematical Theory, High Performance Computing, and In Vivo Experiments.
Chemistry of Halogens and Noble Gases
Explores the chemistry of halogens and noble gases, covering properties, reactions, and compounds of elements like chlorine, bromine, xenon, and radon.
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