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|a 621.3815
|2 22
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|a UAMI
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|a Circuit analysis /
|c Virginia E. Wright, editor.
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|a New York :
|b Nova Science Publishers, Inc.,
|c [2011]
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|a 1 online resource.
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|a text
|b txt
|2 rdacontent
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|a computer
|b c
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|a online resource
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|a data file
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|a Electrical engineering developments
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|a Includes bibliographical references and index.
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|a Description based on print version record and CIP data provided by publisher.
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546 |
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|a English.
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|a CIRCUIT ANALYSIS; ELECTRICAL ENGINEERINGDEVELOPMENTS; CONTENTS; PREFACE; ELEMENT STAMP ALGORITHM FOR MATRIXFORMULATION OF SYMBOLIC CIRCUITS; Abstract; 1. Computer Representation of Symbolic Matrices; 2. Topological (Graphical) Representation of Matrices; 3. Basic Network Elements and Equations(Distributed vs. Lumped); 4. Nodal Analysis Techniques; 4.1. Formulation of the Nodal Admittance Matrix; 4.2. Tableau and Compacted Modified Nodal Analysis (CMNA)Methods; 4.3. Practical Application of the CMNA Method; 4.4. Implementation Considerations; 5. Conclusion; References.
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|a MICROWAVE AND MILLIMETER-WAVECOAXIAL-WAVEGUIDE POWERDIVIDING/COMBINING CIRCUITSAbstract; 1. Introduction; 2. Coaxial-Waveguide Power-Dividing/CombiningStructure; 3. Design of the Coaxial Stepped Impedance Transformer; 4. Analysis of the Coaxial Taper; 5. Coaxial-Waveguide Power Dividers/ Combiners UsingCoaxial Probe Array; 6. Coaxial-Waveguide Power Dividers with MicrostripProbes; 7. Millimeter-Wave Coaxial-WaveguidePower-Combining Amplifiers; 8. Planar Probe Coaxial Power Dividers/Combiners; 8a. Analysis of Coaxial Taper Transition; 8b. Planar Probe Array.
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|a 8c. Summary of the Total Design Procedure8d. Simulated and Measured Results of the Ten-Way Planar ProbeCoaxial Combiner; 9. Ultra-Wideband (UWB) Coaxial Power Divider withRotated Electric Field Mode; References; ANALYSIS OF FEEDBACK CIRCUITSUSING MILLER'S TECHNIQUES; Abstract; I. Introduction; II. Open Circuit Approximation Using Circuit Properties:Parallel Feedback Impedance; III. Determination of All Parameters:Parallel Feedback; 3.1. Parameters Using Z2 = ; 3.2. Parameters Using Z 1 = ; IV. Series Feedback Impedance: Short CircuitApproximation and Analysis.
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|a 4.1. Conditions for Short Circuit Approximation4.2. Determination of All Parameters; 4.3. An Example; V. Conclusions; References; TIRE PRESSURE -TEMPERATURE TESTERFOR REAL DRIVING CONDITIONS; Abstract; Introduction; Experimental Data Presentation and Discussion; Conclusion; References; ANALYZING CIRCUIT STRUCTURESAS LANGUAGE; Abstract; 1. Introduction; 2. Circuit Representation in Predicate Logic; 2.1. Prolog Language; 2.2. Facts; 2.3. Goal; 2.4. Rules; 2.5. Predicates for Circuit Structures; 2.6. Difficulties in Circuit Representation Using Predicate; 2.7. Changing Circuit Representation.
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|a 2.8. Lists3. Logic Grammar DCSG; 3.1. Word-Order Free Language; 3.2. DCSG Conversion; 3.3. Backward Chaining and Top Down Parsing; 3.4. The Looping Problem; 3.5. Solution of the Looping Problem; 4. Finding Structures in Circuits; 4.1. Circuits Represented as Sentences; 4.2. Grammar Rules without Recursion; 4.3. All Elements Connected to a Node; 4.4. Paths and Loops; 4.5. Series-Parallel Circuit; 5. Circuit Grammar for Functional Blocks; 5.1. Semantic Field in Left-Hand Side; 5.2. Semantic Terms in the Right-Hand Side; 6. Grammar Rules for Functional Blocks; 6.1. Electrical Dependencies.
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|a eBooks on EBSCOhost
|b EBSCO eBook Subscription Academic Collection - Worldwide
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650 |
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|a Electronic circuits.
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650 |
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|a Electric circuit analysis.
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|a Circuits électroniques.
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|a Circuits électriques
|x Analyse.
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|a TECHNOLOGY & ENGINEERING
|x Electronics
|x Circuits
|x General.
|2 bisacsh
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|a TECHNOLOGY & ENGINEERING
|x Electronics
|x Circuits
|x Integrated.
|2 bisacsh
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7 |
|a Electric circuit analysis
|2 fast
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|
7 |
|a Electronic circuits
|2 fast
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700 |
1 |
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|a Wright, Virginia E.,
|e editor.
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776 |
0 |
8 |
|i Print version:
|t Circuit analysis
|d New York : Nova Science Publishers, Inc., [2011]
|z 9781617281068 (hardcover)
|w (DLC) 2010025436
|
830 |
|
0 |
|a Electrical engineering developments series.
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856 |
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