Calculation of the Turbulent Boundary Layer and of Transition on a Plane Plate
Author: René Hirsch
Publisher:
Published: 1967
Total Pages: 204
ISBN-13:
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Author: René Hirsch
Publisher:
Published: 1967
Total Pages: 204
ISBN-13:
DOWNLOAD EBOOKAuthor: Charles Proteus Steinmetz
Publisher:
Published: 1900
Total Pages: 772
ISBN-13:
DOWNLOAD EBOOKAuthor: Charles Proteus Steinmetz
Publisher:
Published: 1917
Total Pages: 392
ISBN-13:
DOWNLOAD EBOOKAuthor: Jiaxing Liu
Publisher: Springer
Published: 2014-09-04
Total Pages: 543
ISBN-13: 3662438658
DOWNLOAD EBOOKSpacecraft TT&C and Information Transmission Theory and Technologies introduces the basic theory of spacecraft TT&C (telemetry, track and command) and information transmission. Combining TT&C and information transmission, the book presents several technologies for continuous wave radar including measurements for range, range rate and angle, analog and digital information transmissions, telecommand, telemetry, remote sensing and spread spectrum TT&C. For special problems occurred in the channels for TT&C and information transmission, the book represents radio propagation features and its impact on orbit measurement accuracy, and the effects caused by rain attenuation, atmospheric attenuation and multi-path effect, and polarization composition technology. This book can benefit researchers and engineers in the field of spacecraft TT&C and communication systems. Liu Jiaxing is a professor at The 10th Institute of China Electronics Technology Group Corporation.
Author: Walter R. Johnson
Publisher: Springer Science & Business Media
Published: 2007-02-05
Total Pages: 318
ISBN-13: 3540680101
DOWNLOAD EBOOKThis book provides a hands-on experience with atomic structure calculations. Material covered includes angular momentum methods, the central field Schrödinger and Dirac equations, Hartree-Fock and Dirac-Hartree-Fock equations, multiplet structure, hyperfine structure, the isotope shift, dipole and multipole transitions, basic many-body perturbation theory, configuration interaction, and correlation corrections to matrix elements. The book also contains numerical methods for solving the Schrödinger and Dirac eigenvalue problems and the (Dirac)-Hartree-Fock equations.
Author: István Vágó
Publisher: Akademiai Kiads
Published: 2003
Total Pages: 192
ISBN-13:
DOWNLOAD EBOOK"Illustrated by examples, this book discusses the theory of transmission line systems. It is recommended to those who are interested in theoretical electricity and to those who would like to use this theory in their planning of electric networks."
Author: R.G. Compton
Publisher: Elsevier
Published: 2012-12-02
Total Pages: 501
ISBN-13: 0444600701
DOWNLOAD EBOOKThe Theory of Kinetics covers the practice and theory of kinetics and the kinetics of inorganic and organic reactions in gaseous and condensed phases and at interfaces. This text is composed of five chapters and starts with a review of the kinetic characterization of complex reaction systems. The succeeding chapter describes the formal and radical kinetics, as well as the energy factor in chain reactions. These topics are followed by a survey of the theory of the kinetics of elementary gas phase reactions and the unimolecular reaction of activated chemical species. The discussion then shifts to the general properties, reactions, and the theory of elementary reactions in solution. The last chapter examines the theory of kinetics of solid-state reactions. This book is of great value to physical, inorganic, and organic chemists.
Author: Kevin Heng
Publisher: Princeton University Press
Published: 2017-01-10
Total Pages: 290
ISBN-13: 0691166986
DOWNLOAD EBOOKAn essential introduction to the theory of exoplanetary atmospheres The study of exoplanetary atmospheres—that is, of planets orbiting stars beyond our solar system—may be our best hope for discovering life elsewhere in the universe. This dynamic, interdisciplinary field requires practitioners to apply knowledge from atmospheric and climate science, astronomy and astrophysics, chemistry, geology and geophysics, planetary science, and even biology. Exoplanetary Atmospheres provides an essential introduction to the theoretical foundations of this cutting-edge new science. Exoplanetary Atmospheres covers the physics of radiation, fluid dynamics, atmospheric chemistry, and atmospheric escape. It draws on simple analytical models to aid learning, and features a wealth of problem sets, some of which are open-ended. This authoritative and accessible graduate textbook uses a coherent and self-consistent set of notation and definitions throughout, and also includes appendixes containing useful formulae in thermodynamics and vector calculus as well as selected Python scripts. Exoplanetary Atmospheres prepares PhD students for research careers in the field, and is ideal for self-study as well as for use in a course setting. The first graduate textbook on the theory of exoplanetary atmospheres Unifies knowledge from atmospheric and climate science, astronomy and astrophysics, chemistry, planetary science, and more Covers radiative transfer, fluid dynamics, atmospheric chemistry, and atmospheric escape Provides simple analytical models and a wealth of problem sets Includes appendixes on thermodynamics, vector calculus, tabulated Gibbs free energies, and Python scripts Solutions manual (available only to professors)
Author: Herbert Bristol Dwight
Publisher:
Published: 1925
Total Pages: 234
ISBN-13:
DOWNLOAD EBOOKAuthor: Julius E. Harris
Publisher:
Published: 1971
Total Pages: 92
ISBN-13:
DOWNLOAD EBOOKA numerical method for solving the equations for laminar, transitional, and turbulent compressible boundary layers for either planar or axisymmetric flows is presented. The fully developed turbulent region is treated by replacing the Reynolds stress terms with an eddy viscosity model. The mean properties of the transitional boundary layer are calculated by multiplying the eddy viscosity by an intermittency function based on the statistical production and growth of the turbulent spots. A specifiable turbulent Prandtl number relates the turbulent flux of heat to the eddy viscosity. A three-point implicit finite-difference scheme is used to solve the system of equations. The momentum and energy equations are solved simultaneously without iteration. Numerous test cases are compared with experimental data for supersonic and hypersonic flows; these cases include flows with both favorable and mildly unfavorable pressure gradient histories, mass flux at the wall, and traverse curvature.