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Books on the topic 'Solid matrices'

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1

Centi, Gabriele, Blanka Wichterlová, and Alexis T. Bell, eds. Catalysis by Unique Metal Ion Structures in Solid Matrices. Dordrecht: Springer Netherlands, 2001. http://dx.doi.org/10.1007/978-94-010-0782-5.

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2

Tindal, R. Investigations of photophysical parameters of luminescent reagents in solutions and in solid matrices. Manchester: UMIST, 1995.

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3

I, Gidopoulos N., and Wilson S. 1950-, eds. The fundamentals of electron density, density matrix, and density functional theory in atoms, molecules, and the solid state. Dordrecht: Kluwer Academic Publishers, 2003.

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4

D, Messman J., and Environmental Monitoring Systems Laboratory (Research Triangle Park, N.C.), eds. Determination of stable valence states of chromium in aqueous and solid waste matrices: Experimental verification of chemical behavior. Cincinnati, OH: U.S. Environmental Protection Agency, Environmental Monitoring Systems Laboratory, 1986.

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5

Karlsson, Hans O. Atomic and molecular density-of-states by direct Lanczos methods. Uppsala: Acta Universitatis Upsaliensis, 1994.

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6

Wichterlová, Blanka, Alexis T. Bell, and Gabriele Centi. Catalysis by Unique Metal Ion Structures in Solid Matrices: From Science to Application. Springer, 2012.

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7

(Editor), N. I. Gidopoulos, and S. Wilson (Editor), eds. The Fundamentals of Electron Density, Density Matrix and Density Functional Theory in Atoms, Molecules and the Solid State (Progress in Theoretical Chemistry and Physics). Springer, 2003.

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8

(Editor), Gabriele Centi, Blanka Wichterlová (Editor), and Alexis T. Bell (Editor), eds. Catalysis by Unique Metal Ion Structures in Solid Matrices: From Science to Application (NATO Science Series II: Mathematics, Physics and Chemistry). Springer, 2001.

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9

(Editor), Gabriele Centi, Blanka Wichterlová (Editor), and Alexis T. Bell (Editor), eds. Catalysis by Unique Metal Ion Structures in Solid Matrices: From Science to Application (NATO Science Series II: Mathematics, Physics and Chemistry). Springer, 2001.

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10

Mindes, Gayle. Teaching Young Children Social Studies. Praeger, 2006. http://dx.doi.org/10.5040/9798216023340.

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By linking theory to practice with an emphasis on national and state standards, Head Start Performance Standards, No Child Left Behind, and IDEA, the authors coherently combine principles of child development and social studies content to create a solid program for preschool through grade three. The authors maintain the overriding idea throughout theTeaching Young Childrenseries—that strategies derived from knowledge of child development are used to teach content knowledge. It is this concern that makes this volume an excellent resource for teachers and parents. In addition to specific discussions of how to build and conduct a social studies curriculum, the work includes vignettes of teachers and children in the classroom; graphics illustrating concepts and methods; and matrices, charts and tables to enhance understanding. The authors effectively intertwine social learning in young children and development of self-concept with the theme-based curriculum of the National Council for Social Studies, the principles of multicultural education, parent collaboration to support learning, and creating connections between classroom and community.
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11

Flarend, Alice, and Robert Hilborn. Quantum Computing: From Alice to Bob. Oxford University Press, 2022. http://dx.doi.org/10.1093/oso/9780192857972.001.0001.

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Quantum Computing: From Alice to Bob provides a distinctive and accessible introduction to the rapidly growing fields of quantum information science (QIS) and quantum computing (QC). The book is designed for undergraduate students and upper-level secondary school students with little or no background in physics, computer science, or mathematics beyond secondary school algebra and trigonometry. While broadly accessible, the book provides a solid conceptual and formal understanding of quantum states and entanglement—the key ingredients in quantum computing. The authors give detailed treatments of many of the classic quantum algorithms that demonstrate how and when QC has an advantage over classical computers. The book provides a solid explanation of the physics of QC and QIS and then weds that knowledge to the mathematics of QC algorithms and how those algorithms deploy the principles of quantum physics to solve the problem. This book connects the physics concepts, the computer science vocabulary, and the mathematics, providing a complete picture of how QIS and QC work. The authors give multiple representations of the concept—textual, graphical, and symbolic (state vectors, matrices, and Dirac notation)—which are the lingua franca of QIS and QC. Those multiple representations allow the readers to develop a broader and deeper understanding of the fundamental concepts and their applications. In addition, the book provides examples of recent experimental demonstrations of quantum teleportation and the applications of quantum computational chemistry. The last chapter connects to the growing commercial world of QC and QIS and provides recommendations for further study.
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12

Kardestuncer, Hayrettin. Matrix Analysis of Discrete Elastic Systems: Course Held at the Department of Mechanics of Solids, October 1972. Springer London, Limited, 2014.

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13

Bohigas, Oriol, and Hans Weidenmuller. History – an overview. Edited by Gernot Akemann, Jinho Baik, and Philippe Di Francesco. Oxford University Press, 2018. http://dx.doi.org/10.1093/oxfordhb/9780198744191.013.2.

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This article discusses the first four decades of the history of random matrix theory (RMT), that is, until about 1990. It first considers Niels Bohr's formulation of the concept of the compound nucleus, which is at the root of the use of random matrices in physics, before analysing the development of the theory of spectral fluctuations. In particular, it examines the Wishart ensemble; Dyson's classification leading to the three canonical ensembles — Gaussian Orthogonal Ensemble (GOE), Gaussian Unitary Ensemble (GUE), and Gaussian Symplectic Ensemble (GSE); and the breaking of a symmetry or an invariance. It also describes how random matrix models emerged from quantum physics, more specifically from a statistical approach to the strongly interacting many-body system of the atomic nucleus. The article concludes with an overview of data on nuclear resonances, many-body theory, chaos, number theory, scattering theory, replica trick and supersymmetry, disordered solids, and interacting fermions and field theory.
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14

Zhao, Xiao-Ling. FRP-Strengthened Metallic Structures. Taylor & Francis Group, 2013.

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15

Zhao, Xiao-Ling. FRP-Strengthened Metallic Structures. Taylor & Francis Group, 2013.

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16

Zhao, Xiao-Ling. FRP-Strengthened Metallic Structures. Taylor & Francis Group, 2013.

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17

FRP-Strengthened Metallic Structures. Taylor & Francis Group, 2013.

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18

FRP-Strengthened Metallic Structures. Taylor & Francis Group, 2017.

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