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Details for:
Yang F. Diffusionics. Diffusion Process Controlled by Diffusion Metamater. 2024
yang f diffusionics diffusion process controlled diffusion metamater 2024
Type:
E-books
Files:
1
Size:
21.1 MB
Uploaded On:
March 13, 2024, 2:29 p.m.
Added By:
andryold1
Seeders:
1
Leechers:
0
Info Hash:
D0BD524E65169A1CC7153FFB9C536421C5D4FAC3
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Textbook in PDF format This book presents a comprehensive exploration of diffusion metamaterials that control energy and mass diffusion. Currently, if from the perspective of governing equations, diffusion metamaterials and wave metamaterials (pioneered by J. B. Pendry in the 1990s) are recognised as the two most prominent branches in the field of metamaterials. These two branches differ in their emphasis on the diffusion equation (as the governing equation) and time-dependent characteristic lengths in diffusion metamaterials, as opposed to the wave equation (as the governing equation) and time-independent characteristic lengths in wave metamaterials. Organized into three distinct parts – 'Thermal Diffusion Metamaterials', 'Particle Diffusion Metamaterials', and 'Plasma Diffusion Metamaterials' – this book offers a rigorous exploration spanning physics, engineering, and materials science, aimed at advancing our understanding of diffusion processes controlled by diffusion metamaterials. Incorporating foundational theory, computational simulations, and laboratory experiments, the book equips researchers and scholars across these disciplines with comprehensive methods, insights, and results pivotal to the advancement of diffusion control. Beyond facilitating interdisciplinary discourse, the book serves as a catalyst for innovative breakthroughs at the crossroads of physics, thermodynamics, and materials science. Essentially, readers will acquire profound insights that empower them to spearhead advancements in diffusion science (diffusionics) and the engineering of metamaterials. Diffusionics: Basic Theory and Theoretical Framework Diffusion Metamaterials: Basic Simulation Methods Diffusion Metamaterials: Basic Experimental Methods Metamaterials for Thermal Diffusion: Thermal Conduction Transformation Thermotics and Effective Medium Theory for Thermal Conduction Unveiling the Thermal Cloak: A Journey from Theoretical Foundations to Cutting-Edge Applications Spatial and Temporal Modulation of Thermoelectric Metamaterials Metamaterials for Thermal Diffusion: Thermal Conduction and Convection Convective Heat Transfer in Porous Materials Non-Hermitian Physics and Topological Phenomena in Convective Thermal Metamaterials Beyond Traditional Thermal Convection: Spatiotemporal Modulation in Metamaterials Thermal Metamaterials for Temperature Maintenance: From Advances in Heat Conduction to Future Convection Prospects Metamaterials for Thermal Diffusion: Thermal Conduction and Radiation Radiative Metamaterials Based on Effective-Medium Theory Diffusion Approximation and Metamaterial Design of Thermal Radiation Metamaterials for Thermal Diffusion: Thermal Conduction, Convection, and Radiation Fundamental Methods and Design Paradigm for Omnithermotics Omnithermal Metamaterials: Mastering Diverse Heat Transfer Modes Omnithermal Metamaterials: Designing Universally Thermo-Adjustable Metasurfaces Metamaterials for Particle Diffusion Geometric Phases in Particle Diffusion with Non-Hermitian Hamiltonian Structures Particle Diffusion Process with Artificial Control: Diffusion Metamaterials Metamaterials for Plasma Diffusion Diffusion Metamaterials for Plasma Transport Summary and Prospect
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Yang F. Diffusionics. Diffusion Process Controlled by Diffusion Metamater. 2024.pdf
21.1 MB
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