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1.

図書

図書
Julius S. Bendat
出版情報: New York : Wiley, c1998  xiii, 474 p. ; 24 cm
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Linear Systems, Random Data
Zero-Memory Nonlinear Systems
Direct and Reverse MI/SO
Techniques for Analysis and Identification of Nonlinear Systems
Parallel Linear and Nonlinear Systems
Determination of Physical Parameters with Memory in Nonlinear Systems
Nonlinear System Response Properties of a Naval Frigate from Measured Ocean Engineering Data
Nonlinear System Response Properties of a Naval Barge from Measured Ocean Engineering Data
Bilinear and Trilinear Systems
Input Output Relations for Bilinear and Trilinear Systems
References
Index
Glossary of Symbols
Linear Systems, Random Data
Zero-Memory Nonlinear Systems
Direct and Reverse MI/SO
2.

図書

図書
Abraham Pais ... [et al.] ; edited by Peter Goddard
出版情報: Cambridge : Cambridge University Press, 1998  xv, 124 p. ; 23 cm
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Preface / Peter Goddard
Dirac memorial address / Stephen Hawking
Paul Dirac: aspects of his life and work / Abraham Pais1:
Antimatter / Maurice Jacob2:
The monopole / David Olive3:
The Dirac equation and geometry / Michael F. Atiyah4:
Preface / Peter Goddard
Dirac memorial address / Stephen Hawking
Paul Dirac: aspects of his life and work / Abraham Pais1:
3.

図書

図書
by Hoang Tuy
出版情報: Dordrecht : Kluwer Academic Publishers, c1998  xi, 339 p. ; 25 cm
シリーズ名: Nonconvex optimization and its applications ; v. 22
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4.

図書

図書
José Galizia Tundisi and Yatsuka Saijo, editors
出版情報: S. Carlos : Brazilian Academy of Sciences, 1997  xiv, 513 p. ; 23 cm
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5.

図書

図書
edited by Hiroo Tominaga and Masakazu Tamaki
出版情報: Chichester : John Wiley, 1997  x, 403 p.; 24 cm
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Preface to the English Edition
Preface
Chemical Reactions and Design of Chemical Reactors / Hiroo TominagaChapter 1:
Introduction / 1.1:
Science and Engineering for Reactor Design / 1.2:
Theory of Chemical Reaction / 1.3:
Chemical Reaction Engineering and Reactor Design / 1.4:
Reactor Design for Industrial Processes / 1.5:
Naphtha Cracking / 1.5.1:
Tubular Steam Reforming / 1.5.2:
Epoxy Resin Production / 1.5.3:
Hydrotreating / 1.5.4:
Fluid Catalytic Cracking / 1.5.5:
Flue Gas Desulphurization / 1.5.6:
Equilibrium and Reaction Rate / Hiroshi KomiyamaChapter 2:
Nature of Chemical Reaction / 2.1:
Supply of Activation Energy / 2.1.1:
Elementary and Complex Reactions / 2.1.2:
Other Factors in Reactor Design / 2.1.3:
Direction of the Reaction Progress and Chemical Equilibrium / 2.2:
Direction of the Reaction Progress / 2.2.1:
Role of the Catalyst / 2.2.2:
Reversible and Irreversible Reactions / 2.2.3:
How to Calculate the Heat of Reaction and the Equilibrium Constant / 2.2.4:
Operating Conditions and Energy Efficiency of Chemical Reactions / 2.2.5:
The Rate of Reaction / 2.3:
Factors Governing the Rate of Reaction / 2.3.1:
Complex Reaction System / 2.4:
Rate-determining Step / 2.4.1:
Patterning of Reaction Systems / 2.4.2:
Relations with Other Transfer Processes / 2.4.3:
Fundamentals of Heat and Mass Transfer / Koichi AsanoChapter 3:
Rate Equations / 3.1:
Conduction of Heat / 3.1.1:
Diffusion / 3.1.2:
Diffusion Flux and Mass Flux / 3.1.3:
Mass and Heat Transfer Coefficients / 3.2:
Mass Transfer Coefficient / 3.2.1:
Overall Mass Transfer Coefficient / 3.2.2:
Heat Transfer Coefficient / 3.2.3:
Overall Heat Transfer Coefficient / 3.2.4:
Heat and Mass Transfer in a Laminar Boundary Layer along a Flat Plate / 3.3:
Governing Equations of Heat and Mass Transfer / 3.3.1:
Physical Interpretation of the Dimensionless Groups used in Heat and Mass Transfer Correlation / 3.3.2:
Similarity Transformation / 3.3.3:
Numerical Solutions for Heat and Mass Transfer / 3.3.4:
High Mass Flux Effect / 3.3.5:
Heat Transfer inside a Circular Tube in Laminar Flow / 3.4:
Heat Transfer inside a Circular Tube with Uniform Velocity Profile / 3.4.1:
Heat Transfer inside a Circular Tube with Parabolic Velocity Profile (Graetz problem) / 3.4.2:
Mass Transfer of Bubbles, Drops and Particles / 3.5:
Hadamard Flow / 3.5.1:
Evaporation of a Drop in the Gas Phase / 3.5.2:
Continuous Phase Mass Transfer of Bubbles or Drops in the Liquid Phase / 3.5.3:
Dispersed Phase Mass Transfer / 3.5.4:
Heat and Mass Transfer of a Group of Particles and the Void Function / 3.5.5:
Radiant Heat Transfer / 3.6:
Heat Radiation / 3.6.1:
Governing Equations of Radiant Heat Transfer / 3.6.2:
Fundamentals of Reactor Design / Chapter 4:
Reactor Types and Their Applications / Shintaro Furusaki4.1:
Homogeneous Reactors / 4.1.1:
Heterogeneous Reactors / 4.1.2:
Design of Homogeneous Reactors / Yukihiro Shimogaki4.2:
Material and Heat Balances in Reaction Systems / 4.2.1:
Design of Batch Stirred Tank Reactor / 4.2.2:
Design of Continuous Stirred Tank Reactors / 4.2.3:
Design of Tubular Reactors / 4.2.4:
Homogeneous and Heterogeneous Complex Reactions / 4.2.5:
Planning and Design of Multiphase Reactors / Masayuki Horio4.3:
Features of Planning and Design of Multiphase Reaction Processes / 4.3.1:
Model Description of Multiphase Processes / 4.3.2:
Concepts of Multiphase Reaction Processes / 4.3.3:
Development and Scale-up of Multiphase Reactors / 4.3.4:
Dynamic Analysis of Reaction System / Hisayoshi Matsuyama4.4:
Dynamics of Reactors / 4.4.1:
Stability of Reactors / 4.4.2:
Control of Reactors / 4.4.3:
Optimization of Reactor Systems / 4.4.4:
Design of an Industrial Reactor / Chapter 5:
Petrochemical Complex in Japan / Hiroshi Yagi5.1:
Cracking Furnace for Naphtha / 5.1.2:
Treatment of a Cracked Gas / 5.1.3:
Quench and Heat Recovery / 5.1.4:
Thermodynamics of Thermal Cracking Reaction / 5.1.5:
Mechanism of Thermal Cracking / 5.1.6:
Reaction Model for Yield Estimation / 5.1.7:
Design Procedure of Cracking Furnace / 5.1.8:
Results of Thermal Cracking Simulation / 5.1.9:
Technology Trend of a Cracking Furnace / 5.1.10:
The Reactions / J. R. Rostrup-Nielsen ; Lars J. Christiansen5.2:
The Tubular Reformer / 5.2.2:
The Catalyst and Reaction Rate / 5.2.3:
Poisoning / 5.2.4:
Carbon Formation / 5.2.5:
CO[subscript 2] Reforming / 5.2.6:
Reforming of High Hydrocarbons / 5.2.7:
Alternatives to Steam Reforming Technology / 5.2.8:
Epoxy Resin / Goro Soma ; Yasuo Hosono5.3:
Quality Parameters of Epoxy Resin / 5.3.2:
Elementary Reactions for Epoxy Resin Production / 5.3.3:
Epoxy Resin Production Processes / 5.3.4:
Process Operating Factors / 5.3.5:
The Reaction Model / 5.3.6:
Batch Operation / 5.3.7:
Simulation Using the Reaction Model / 5.3.8:
Design of the First-stage Reactor / 5.3.9:
Design of the Second-stage Reactor / 5.3.10:
Hydrotreating Reactor Design / Alan G. Bridge ; E. Morse Blue5.4:
Hydrotreating Objectives / 5.4.1:
Process Fundamentals / 5.4.2:
VGO Hydrotreating Reactions / 5.4.3:
VGO Hydrotreating Catalysts / 5.4.4:
VGO Hydrotreating Process Conditions / 5.4.5:
VGO Hydrotreating Reactor Design / 5.4.6:
VGO Hydrotreating Operation / 5.4.7:
VGO Hydrotreating Safety Procedures / 5.4.8:
Future Trends / 5.4.9:
Outline of the FCC Process / Toru Takatsuka ; Hideki Minami5.5:
Basic Theory of Fluid Catalytic Cracking / 5.5.2:
Theoretical Discussion of FCC Reactor Design / 5.5.3:
Practice of FCC Reactor Design / 5.5.4:
Material Balance and Heat Balance around Reactors / 5.5.5:
Wet Flue Gas Desulphurization / Hiroshi Yanagioka ; Teruo Sugiya5.6:
Process Description / 5.6.1:
Structure of JBR / 5.6.2:
Chemical Reactions in JBR / 5.6.3:
Heat and Material Balance around the Reactor / 5.6.4:
Reactive Impurities in the Flue Gas / 5.6.5:
Applicable Materials for the Wet FGD Plant / 5.6.6:
Index
Preface to the English Edition
Preface
Chemical Reactions and Design of Chemical Reactors / Hiroo TominagaChapter 1:
6.

図書

図書
Robert C. Nelson
出版情報: Boston, Mass. : WCB/McGraw Hill, c1998  xiii, 441 p. ; 25 cm
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Introduction / 1:
Static Stability and Control / 2:
Aircraft Equations of Motion / 3:
Longitudinal Motion (Stick Fixed) / 4:
Lateral Motion (Stick Fixed) / 5:
Aircraft Response to Control on Atmospheric Inputs / 6:
Automatic Control Theory-The Classical Approach / 7:
Application of Classic Control Theory to Aircraft Autopilot Design / 8:
Modern Control Theory / 9:
Applications of Modern Control Theory to Aircraft Autopilot Design / 10:
Appendixes
Atmospheric Tables
Geometric, Mass, and Aerodynamic Characteristics of Selected Airplanes
Mathematical Review of Laplace Transforms and Matrix Algebra
Review of Control System Analysis Techniques
Introduction / 1:
Static Stability and Control / 2:
Aircraft Equations of Motion / 3:
7.

図書

図書
edited by K. Otsuka and C.M. Wayman
出版情報: Edinburgh : Cambridge University Press, 1998  xiv, 284 p. ; 26 cm
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Introduction / K. Otsuka ; C. M. Wayman1:
Mechanism of shape memory effect and superelasticity / 2:
Ti-Ni shape memory alloys / T. Saburi3:
Cu-based shape memory alloys / T. Tadaki4:
Ferrous shape memory alloys / T. Maki5:
Fabrication of shape memory alloys / Y. Suzuki6:
Characteristics of shape memory alloys / J. Van Humbeeck ; R. Stalmans7:
Shape memory ceramics / K. Uchino8:
Shape memory polymers / M. Irie9:
General applications of SMA's and smart materials / K. N. Melton10:
The design of shape memory alloy actuators and their applications / I. Ohkata11:
Medical and dental applications of shape memory alloys / S. Miyazaki12:
Introduction / K. Otsuka ; C. M. Wayman1:
Mechanism of shape memory effect and superelasticity / 2:
Ti-Ni shape memory alloys / T. Saburi3:
8.

図書

図書
with contributions by H. Galina ... [et al.]
出版情報: Berlin : Springer-Verlag, c1998  vi, 187 p. ; 25 cm
シリーズ名: Advances in polymer science ; 137
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9.

図書

図書
Serge Abrate
出版情報: New York : Cambridge University Press, c1998  x, 289 p. ; 24 cm
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目次情報: 続きを見る
Introduction / 1:
Contact laws / 2:
Impact dynamics / 3:
Low velocity impact damage / 4:
Damage prediction / 5:
Residual properties / 6:
Ballistic impact / 7:
Repairs / 8:
Impact on sandwich structures / 9:
References
Introduction / 1:
Contact laws / 2:
Impact dynamics / 3:
10.

図書

図書
David J. Green
出版情報: Cambridge ; New York : Cambridge University Press, c1998  xii, 336 p. ; 26 cm
シリーズ名: Cambridge solid state science series
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