The Finite Element Method in Engineering presents a comprehensive and systematic introduction to the theory and application of the finite element method (FEM) for solving engineering problems. The book covers fundamental concepts such as discretization, element formulation, shape functions, numerical integration, and the assembly of global system equations. Rao explains FEM through variational …
omputational Fluid Dynamics: The Basics with Applications provides a foundational introduction to the principles, mathematics, and numerical methods underlying modern CFD. The book covers governing equations of fluid motion, finite difference and finite volume techniques, grid generation, numerical stability, convergence, and discretization strategies. Anderson explains key concepts such as pot…
Aerodynamics for Engineering Students provides a comprehensive introduction to the fundamental principles of aerodynamics for engineering applications. The book covers fluid-flow theory, airfoil and wing aerodynamics, boundary-layer behavior, lift and drag generation, and aircraft performance. It also examines compressible flow, shock waves, and high-speed aerodynamics, supported by clear mathe…
Introduction to Finite Elements in Engineering by Tirupathi R. Chandrupatla provides a systematic and accessible introduction to the finite element method (FEM) for engineering analysis. The book explains the theoretical foundations of FEM, including discretization, element formulation, interpolation functions, numerical integration, and assembly of global equations. It covers a wide range of e…
Electrical Equipment in Mines, edited by H. Cotton, is a specialized engineering reference that focuses on the design, installation, and maintenance of electrical systems used in mining operations. It covers topics such as power distribution, safety protocols, equipment specifications, and environmental considerations unique to underground and surface mining. This book is valuable for engineers…
Industrial Power Systems Handbook by Donald Beeman is a comprehensive technical reference focused on the design, operation, and maintenance of electrical power systems in industrial environments. Published by McGraw-Hill, this book covers topics such as power distribution, system protection, equipment specifications, and reliability engineering. It is widely used by engineers and professionals …
Differential and Integral Calculus by N. Piskunov is a classic mathematics textbook that provides a rigorous and detailed exploration of calculus concepts. Widely used in engineering and science education, it covers topics such as limits, derivatives, integrals, and applications of calculus with clear explanations and numerous examples. Its structured approach makes it a valuable resource for s…
Principles and Applications of Electrical Engineering (Second Edition) by Giorgio Rizzoni is a comprehensive textbook designed to introduce students to the core concepts of electrical engineering. It integrates theoretical foundations with practical applications, covering topics such as circuit analysis, electronics, electromagnetism, and power systems. With a strong emphasis on real-world engi…
Electric Power Distribution System Engineering by Turan Gönen is a detailed technical textbook that focuses on the design, operation, and analysis of electric power distribution systems. Widely used in electrical engineering education and industry, it covers topics such as load forecasting, system planning, voltage regulation, and reliability. The book blends theoretical foundations with pract…
Electronic Devices: Circuits and Applications by William D. Stanley is a comprehensive textbook that explores the principles and practical applications of electronic components and circuit design. Aimed at students and professionals in electrical and electronic engineering, it covers topics such as semiconductors, amplifiers, oscillators, and integrated circuits, blending theory with real-world…