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Catalogue of the Library of the Peabody Institute of the City of Baltimore ...
  • Language: en
  • Pages: 606

Catalogue of the Library of the Peabody Institute of the City of Baltimore ...

  • Type: Book
  • -
  • Published: 1892
  • -
  • Publisher: Unknown

None

Catalogue of the Library of the Peabody Institute of the City of Baltimore ...
  • Language: en
  • Pages: 702
Finite Elements for Electrical Engineers
  • Language: en
  • Pages: 520

Finite Elements for Electrical Engineers

Like the earlier editions, this text begins by deriving finite elements for the simplest familiar potential fields, then advances to formulate finite elements for a wide range of applied electromagnetics problems. A wide selection of demonstration programs allows the reader to follow the practical use of the methods.

Catalogue of the Library of the Peabody Institute of the City of Baltimore
  • Language: en
  • Pages: 1150

Catalogue of the Library of the Peabody Institute of the City of Baltimore

Reprint of the original, first published in 1883.

Catalogue of the Library of the Peabody Institute of the City of Baltimore
  • Language: en
  • Pages: 1158

Catalogue of the Library of the Peabody Institute of the City of Baltimore

  • Type: Book
  • -
  • Published: 1883
  • -
  • Publisher: Unknown

None

Second catalogue, including the additions made since 1882
  • Language: en
  • Pages: 670

Second catalogue, including the additions made since 1882

  • Type: Book
  • -
  • Published: 1896
  • -
  • Publisher: Unknown

None

Double-Grid Finite-Difference Frequency-Domain (DG-FDFD) Method for Scattering from Chiral Objects
  • Language: en
  • Pages: 127

Double-Grid Finite-Difference Frequency-Domain (DG-FDFD) Method for Scattering from Chiral Objects

This book presents the application of the overlapping grids approach to solve chiral material problems using the FDFD method. Due to the two grids being used in the technique, we will name this method as Double-Grid Finite Difference Frequency-Domain (DG-FDFD) method. As a result of this new approach the electric and magnetic field components are defined at every node in the computation space. Thus, there is no need to perform averaging during the calculations as in the aforementioned FDFD technique [16]. We formulate general 3D frequency-domain numerical methods based on double-grid (DG-FDFD) approach for general bianisotropic materials. The validity of the derived formulations for differen...

Encyclopedia of Coastal Science
  • Language: en
  • Pages: 1243

Encyclopedia of Coastal Science

This new Encyclopedia of Coastal Science stands as the latest authoritative source in the field of coastal studies, making it the standard reference work for specialists and the interested lay person. Unique in its interdisciplinary approach. This Encyclopedia features contributions by 245 well-known international specialists in their respective fields and is abundantly illustrated with line-drawings and photographs. Not only does this volume offer an extensive number of entries, it also includes various appendices, an illustrated glossary of coastal morphology and extensive bibliographic listings.

Handbook Of Coastal And Ocean Engineering (Expanded Edition) (In 2 Volumes)
  • Language: en
  • Pages: 1775

Handbook Of Coastal And Ocean Engineering (Expanded Edition) (In 2 Volumes)

The handbook contains a comprehensive compilation of topics that are at the forefront of many of the technical advances in ocean waves, coastal, and ocean engineering. More than 110 internationally recognized authorities in the field of coastal and ocean engineering have contributed articles in their areas of expertise to this handbook. These international luminaries are from highly respected universities and renowned research and consulting organizations around the world.

Modeling and Application of Electromagnetic and Thermal Field in Electrical Engineering
  • Language: en
  • Pages: 701

Modeling and Application of Electromagnetic and Thermal Field in Electrical Engineering

Co-authored by an international research group with a long-standing cooperation, this book focuses on engineering-oriented electromagnetic and thermal field modeling and application. It presents important contributions, including advanced and efficient finite element analysis used in the solution of electromagnetic and thermal field problems for large and multi-scale engineering applications involving application script development; magnetic measurement of both magnetic materials and components under various, even extreme conditions, based on well-established (standard and non-standard) experimental systems; and multi-level validation based on both industrial test systems and extended TEAM P21 benchmarking platform. Although these are challenging topics, they are useful for readers from both academia and industry.