Unsteady Squeezing Flows
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This book presents a comprehensive study of unsteady squeezing flows of Newtonian and non-Newtonian fluids under various boundary and physical conditions, including slip effects, porous media, and magnetohydrodynamic influences. It offers a rigorous mathematical formulation of these flow phenomena and applies advanced analytical and numerical techniques such as the Homotopy Perturbation Method, Optimal Homotopy Asymptotic Method, and He-Laplace Method to solve the resulting nonlinear problems.Designed for researchers, graduate students, and professionals in fluid dynamics and applied mathematics, this monograph bridges theory with application, offering both detailed analysis and practical insight. Through step-by-step modeling, graphical interpretation, and comparative validation, the book explores the rich behavior of complex fluid systems in squeezing environments.
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This book presents a comprehensive study of unsteady squeezing flows of Newtonian and non-Newtonian fluids under various boundary and physical conditions, including slip effects, porous media, and magnetohydrodynamic influences. It offers a rigorous mathematical formulation of these flow phenomena and applies advanced analytical and numerical techniques such as the Homotopy Perturbation Method, Optimal Homotopy Asymptotic Method, and He-Laplace Method to solve the resulting nonlinear problems.Designed for researchers, graduate students, and professionals in fluid dynamics and applied mathematics, this monograph bridges theory with application, offering both detailed analysis and practical insight. Through step-by-step modeling, graphical interpretation, and comparative validation, the book explores the rich behavior of complex fluid systems in squeezing environments.
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