An updated set of references and a list of abbreviations is also included in this edition.
Towards a Unified Field Theory for Classical Electrodynamics | SpringerLink
The volume will be a valuable reference to civil engineers, earth scientists and hydrologists interested in soil mechanics at both academic and professional levels. The Effective Stress Equation. The Porous-Solid Model. The Probabilistic Porous-Solid Model. Applications of the Porous-Solid Model.
Compression Strength of Soils. Tensile Strength. Volumetric Behavior.
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Collapse Upon Wetting. Expansive Soils. Hydro-Mechanical Coupling. A Fully Coupled Model.
For the case of unsaturated materials, a universally accepted Content Access Key:. Introduction Pp. The Effective Stress Equation Pp. The Porous-Solid Model Pp. Applications of the Porous-Solid Model Pp. Compression Strength of Soils Pp. Tensile Strength Pp. Volumetric Behavior Pp. Collapse Upon Wetting Pp. Expansive Soils Pp. Strain-induced tissue growth laws: applications to embryonic cardiovascular development. Sandra Rugonyi.
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Using cell deformation and motion to predict forces and collective behavior in morphogenesis. Matthias Merkel , M Lisa Manning. Mathematical modeling of cardiac growth and remodeling. Lik Chuan Lee , Ghassan S.
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Kassab , Julius M. References Publications referenced by this paper. Biomechanics of cardiovascular development. Larry A. The dynamic architecture of a developing organism : an interdisciplinary approach to the development of organisms L. How do sea urchins invaginate? Using biomechanics to distinguish between mechanisms of primary invagination. Lance A Davidson , Mimi A. Koehl , Ray E.
Keller , George F. Buxbaum , Steven R. A volumetric model for growth of arterial walls with arbitrary geometry and loads. Growth and remodeling in a thick-walled artery model: effects of spatial variations in wall constituents Patrick W.
TOWARD A UNIFIED THEORY OF REFLECTOR MAPPING
Alford , Jay D. Humphrey , Larry A. A model for aortic growth based on fluid shear and fiber stresses. Theoretical study of dynamics of arterial wall remodeling in response to changes in blood pressure. Apoptotic force and tissue dynamics during Drosophila embryogenesis.
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