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Horizontal Forces in Frames
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Related lectures (31)
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Model Compression: Techniques for Efficient NLP Models
Explores model compression techniques in NLP, discussing pruning, quantization, weight factorization, knowledge distillation, and attention mechanisms.
Introduction to Structural Mechanics
Introduces the basics of structural mechanics, covering plane trusses, internal forces, and equilibrium analysis.
Entropy and Compression I
Explores entropy theory, compression without loss, and the efficiency of the Shannon-Fano algorithm in data compression.
Deformation of Planar Systems: Structural Behavior and Analysis
Covers the deformation of planar systems and the analysis of structural behavior under forces.
Data Compression: Entropy Definition
Explores data compression through entropy definition, types, and practical examples, illustrating its role in efficient information storage and transmission.
JPEG XS & JPEG XL: Next-Gen Image Compression
Explores the cutting-edge JPEG XS and JPEG XL image compression standards, emphasizing their efficiency and versatility in various applications.
Buckling II: Instability of Slender Elastic Structures Under Compression
Explores buckling instability in slender elastic structures under compression, covering Euler buckling load and moment-curvature relations.
Data Compression and Shannon's Theorem: Lossy Compression
Explores data compression, including lossless methods and the necessity of lossy compression for real numbers and signals.
Principal Component Analysis: Applications and Limitations
Explores the applications and limitations of Principal Component Analysis, including denoising, compression, and regression.
Data Compression and Entropy: Basics and Introduction
Introduces data compression, entropy, and the importance of reducing redundancy in data.