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The taking of private property for development projects has caused controversy in many nations, where it has often been used to benefit powerful interests at the expense of the general public. This edited collection is the first to use a common framework to analyze the law and economics of eminent domain around the world. The authors show that seemingly disparate nations face a common set of problems in seeking to regulate the condemnation of private property by the state. They include the tendency to forcibly displace the poor and politically weak for the benefit of those with greater influence, disputes over compensation, and resort to condemnation in cases where it destroys more economic value than it creates. With contributions from leading scholars in the fields of property law and economics, the book offers a comparative perspective and considers a wide range of possible solutions to these problems.
The taking of private property for development projects has caused controversy in many nations, where it has often been used to benefit powerful interests at the expense of the general public. This edited collection is the first to use a common framework to analyze the law and economics of eminent domain around the world. The authors show that seemingly disparate nations face a common set of problems in seeking to regulate the condemnation of private property by the state. They include the tendency to forcibly displace the poor and politically weak for the benefit of those with greater influence, disputes over compensation, and resort to condemnation in cases where it destroys more economic value than it creates. With contributions from leading scholars in the fields of property law and economics, the book offers a comparative perspective and considers a wide range of possible solutions to these problems.
Analytical formulations are developed to account for the coupled mechanical, electrical, and thermal response of piezoelectric composite materials. The coupled response is captured at the material level through the thermopiezoelectric constitutive equations and leads to the inherent capability to model both the sensory and active responses of piezoelectric materials. A layerwise laminate theory is incorporated to provide more accurate analysis of the displacements, strains, stresses, electric fields, and thermal fields through-the-thickness. Thermal effects which arise from coefficient of thermal expansion mismatch, pyroelectric effects, and temperature dependent material properties are explicitly accounted for in the formulation. Corresponding finite element formulations are developed for piezoelectric beam, plate, and shell elements to provide a more generalized capability for the analysis of arbitrary piezoelectric composite structures. The accuracy of the current formulation is verified with comparisons from published experimental data and other analytical models. Additional numerical studies are also conducted to demonstrate additional capabilities of the formulation to represent the sensory and active behaviors. A future plan of experimental studies is provided to characterize the high temperature dynamic response of piezoelectric composite materials.
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