1.

Record Nr.

UNINA9910716110503321

Titolo

State Bank & Trust Co., Fayetteville, Tenn. February 20, 1926. -- Committed to the Committee of the Whole House and ordered to be printed

Pubbl/distr/stampa

[Washington, D.C.] : , : [U.S. Government Printing Office], , 1926

Descrizione fisica

1 online resource (4 pages)

Collana

House report / 69th Congress, 1st session. House ; ; no. 336

[United States congressional serial set] ; ; [serial no. 8535]

Altri autori (Persone)

ThomasElmer <1876-1965> (Democrat (OK))

Soggetti

Lost articles

Postal service

Receipts (Acknowledgments)

Savings bonds

Legislative materials.

Lingua di pubblicazione

Inglese

Formato

Materiale a stampa

Livello bibliografico

Monografia

Note generali

Batch processed record: Metadata reviewed, not verified. Some fields updated by batch processes.

FDLP item number not assigned.



2.

Record Nr.

UNINA9910707827303321

Autore

Andersen Stephen O.

Titolo

Aqueous and semi-aqueous alternatives for CFC-113 and methyl chloroform cleaning of printed circuit board assemblies / / by ICOLP Technical Committee ; Stephen O. Andersen ; revised by Stephen O. Andersen [and three others]

Pubbl/distr/stampa

[Washington, D.C.] : , : [U.S. Environmental Protection Agency], , 1994

Edizione

[Revised October 1994.]

Descrizione fisica

1 online resource (ix, 87 pages) : illustrations

Soggetti

Cleaning compounds - Environmental aspects

Air quality management

Printed circuits industry - Environmental aspects

Chlorofluorocarbons

Trichloroethane

Ozone layer

Handbooks and manuals.

Lingua di pubblicazione

Inglese

Formato

Materiale a stampa

Livello bibliografico

Monografia

Note generali

"Final"--PDF cover.

"May 1991"--PDF cover.

Nota di bibliografia

Includes bibliographical references (pages 79-80).



3.

Record Nr.

UNINA9910254320303321

Autore

Aluf Ofer

Titolo

Advance Elements of Optoisolation Circuits : Nonlinearity Applications in Engineering / / by Ofer Aluf

Pubbl/distr/stampa

Cham : , : Springer International Publishing : , : Imprint : Springer, , 2017

ISBN

3-319-55316-X

Edizione

[1st ed. 2017.]

Descrizione fisica

1 online resource (XVIII, 824 p.)

Disciplina

621.3

Soggetti

Microwaves

Optical engineering

Lasers

Photonics

Statistical physics

Electronic circuits

Microwaves, RF and Optical Engineering

Optics, Lasers, Photonics, Optical Devices

Applications of Nonlinear Dynamics and Chaos Theory

Circuits and Systems

Lingua di pubblicazione

Inglese

Formato

Materiale a stampa

Livello bibliografico

Monografia

Nota di bibliografia

Includes bibliographical references and index.

Nota di contenuto

Optoisolation Circuits with Limit Cycles -- Optoisolation Circuits Bifurcation Analysis (I) -- Optoisolation Circuits Bifurcation Analysis (II) -- Optoisolation Circuits Analysis Floquet Theory -- Optoisolation NDR Circuits Behavior Investigation by Using Floquet Theory -- Optoisolation's Circuits with Periodic Limit-cycle Solutions Orbital Stability -- Optoisolation's Circuits Poincare Maps and Periodic Orbit.

Sommario/riassunto

This book on advanced optoisolation circuits for nonlinearity applications in engineering addresses two separate engineering and scientific areas, and presents advanced analysis methods for optoisolation circuits that cover a broad range of engineering applications. The book analyzes optoisolation circuits as linear and nonlinear dynamical systems and their limit cycles, bifurcation, and limit cycle stability by using Floquet theory. Further, it discusses a



broad range of bifurcations related to optoisolation systems: cusp-catastrophe, Bautin bifurcation, Andronov-Hopf bifurcation, Bogdanov-Takens (BT) bifurcation, fold Hopf bifurcation, Hopf-Hopf bifurcation, Torus bifurcation (Neimark-Sacker bifurcation), and Saddle-loop or Homoclinic bifurcation. Floquet theory helps as to analyze advance optoisolation systems. Floquet theory is the study of the stability of linear periodic systems in continuous time. Another way to describe Floquet theory, it is the study of linear systems of differential equations with periodic coefficients. The optoisolation system displays a rich variety of dynamical behaviors including simple oscillations, quasi-periodicity, bi-stability between periodic states, complex periodic oscillations (including the mixed-mode type), and chaos. The route to chaos in this optoisolation system involves a torus attractor which becomes destabilized and breaks up into a fractal object, a strange attractor. The book is unique in its emphasis on practical and innovative engineering applications. These include optocouplers in a variety of topological structures, passive components, conservative elements, dissipative elements, active devices, etc. In each chapter, the concept is developed from the basic assumptions up to the final engineering outcomes. The scientific background is explained at basic and advanced levels and closely integrated with mathematical theory. The book is primarily intended for newcomers to linear and nonlinear dynamics and advanced optoisolation circuits, as well as electrical and electronic engineers, students and researchers in physics who read the first book “Optoisolation Circuits Nonlinearity Applications in Engineering”. It is ideally suited for engineers who have had no formal instruction in nonlinear dynamics, but who now desire to bridge the gap between innovative optoisolation circuits and advanced mathematical analysis methods.