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MARC Record from marc_columbia

Record ID marc_columbia/Columbia-extract-20221130-030.mrc:101910172:5849
Source marc_columbia
Download Link /show-records/marc_columbia/Columbia-extract-20221130-030.mrc:101910172:5849?format=raw

LEADER: 05849cam a2200781Mi 4500
001 14742639
005 20200410084724.0
006 m o d
007 cr cn|||||||||
008 180521s2018 flua ob 001 0 eng d
035 $a(OCoLC)on1037045100
035 $a(NNC)14742639
040 $aCRCPR$beng$erda$epn$cCRCPR$dEBLCP$dYDX$dN$T$dOCLCQ$dMERER$dOCLCQ$dVLB$dNLE$dUPM$dUAB$dSTF$dCEF$dLVT$dKNOVL$dOCLCQ$dUWW$dOCLCQ
019 $a1037284283$a1037351602$a1039614495$a1041895692$a1051400787$a1097113540$a1099599784
020 $a9780429505195$q(e-book)
020 $a0429505191
020 $a9780429999178$q(e-book ;$qPDF)
020 $a0429999178
020 $a9780429999161
020 $a042999916X
020 $a9781523118274$q(electronic bk.)
020 $a152311827X$q(electronic bk.)
020 $z9781138585553
020 $z1138585556
024 7 $a10.1201/9780429505195$2doi
035 $a(OCoLC)1037045100$z(OCoLC)1037284283$z(OCoLC)1037351602$z(OCoLC)1039614495$z(OCoLC)1041895692$z(OCoLC)1051400787$z(OCoLC)1097113540$z(OCoLC)1099599784
037 $a9780429999161$bIngram Content Group
050 4 $aTJ184
072 7 $aSCI041000$2bisacsh
072 7 $aTEC009070$2bisacsh
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072 7 $aTEC$x009070$2bisacsh
082 14 $a[E]
082 04 $a[E]
082 04 $aWB004
082 04 $aWB038
082 04 $aWB057
082 04 $aWB075
082 04 $aSCEC281020
082 04 $aSCEC27
082 04 $aSCEC272105
082 04 $aSCEC2795
082 04 $aSCEC01
049 $aZCUA
100 1 $aRadzevich, S. P.$q(Stepan Pavlovich),$eauthor.
245 10 $aTheory of Gearing :$bKinematics, Geometry, and Synthesis, Second Edition /$cStephen P. Radzevich.
250 $aSecond edition.
264 1 $aBoca Raton, FL :$bCRC Press,$c2018.
264 4 $c©2018
300 $a1 online resource :$btext file, PDF
336 $atext$btxt$2rdacontent
337 $acomputer$bc$2rdamedia
338 $aonline resource$bcr$2rdacarrier
500 $a"Written by a leading expert, Theory of Gearing: Kinematics, Geometry, and Synthesis, Second Edition is intended for engineers and researchers in the field of gear design, gear production, gear inspection, and application of gears. It focuses on the scientific theory of gearing, in all its aspects, and its application to new gear types and designs."--Provided by publisher.
505 0 $aCover; Half Title; Title Page; Copyright Page; Dedication; Contents; Preface; Acknowledgments; Author; Notation; Introduction; 1. A Brief Overview of the Evolution of the Scientific Theory of Gearing; 1.1 Preliminary Remarks; 1.2 Earliest Designs of Gears; 1.3 Pre-Eulerian Period of Gear Art; 1.4 The Origin of the Scientific Theory of Gearing: Eulerian Period of Gear Art; 1.5 Post-Eulerian Period of Developments in the Field of Gearing; 1.6 Developments in the Field of Perfect Gearings; 1.6.1 Grant Bevel Gearing; 1.6.2 Contribution by Professor N.I. Kolchin; 1.6.3 Novikov Conformal Gearing.
505 8 $a1.6.4 Contribution by Professor V.A. Gavrilenko1.6.5 Contribution by Walton Musser; 1.7 Tentative Chronology of the Evolution of the Theory of Gearing; 1.8 Developments in the Field of Approximate Gearings; 1.8.1 Cone Double-Enveloping Worm Gearing; 1.8.2 Approximate Bevel Gearing; 1.8.3 Approximate Crossed-Axes Gearing; 1.8.4 Face Gearing; 1.9 A Brief Summary of the Principal Accomplishments in the Theory of Gearing Achieved by the Beginning of the 21st Century; 1.9.1 Condition of Contact of the Interacting Tooth Flanks of a Gear and Pinion; 1.9.1.1 Condition of Contact.
505 8 $a1.9.2 Condition of Conjugacy of the Interacting Tooth Flanks of a Gear and Pinion1.9.3 Condition of Equality of Base Pitches of the Interacting Tooth Flanks of a Gear and Pinion; 1.10 Concluding Remarks; Part I: Fundamentals; 2. Kinematics of a Gear Pair; 2.1 Transmission of Motion by Means of a Gear Pair; 2.2 Vector Representation of Gear Pair Kinematics; 2.2.1 Concept of Vector Representation of Gear Pair Kinematics; 2.2.2 Vector Diagrams of Three Different Types for Spatial Gear Pairs; 2.2.2.1 Vector Diagrams of Rotary-Negative Crossed-Axes Gear Pairs.
505 8 $a2.2.2.2 Vector Diagrams of Rotary-Positive Crossed-Axes Gear Pairs2.2.2.3 Vector Diagrams of Rotary-Zero Crossed-Axes Gear Pairs; 2.2.2.4 Analytical Criterion of Type of Crossed-Axes Gear Pair; 2.3 Classification of Possible Types of Vector Diagrams of Gear Pairs; 2.4 Complementary Vectors to Vector Diagrams of Gear Pairs; 2.4.1 Centerline Vectors of a Gear Pair; 2.4.2 Axial Vectors of a Gear Pair; 2.4.3 Useful Kinematic and Geometric Formulas; 2.5 Possible Future Developments in the Theory of Gearing; 3. Principal Planes and Principal Reference Systems Associated with a Gear Pair.
505 8 $a3.1 Principal Planes Associated with a Gear Pair3.1.1 Case of Intersected-Axes Gearing; 3.1.2 Case of Parallel-Axes Gearing; 3.2 Principal Reference Systems Associated with a Gear Pair; 3.3 Coordinate System Transformations; 3.3.1 Transition from the Gear Reference System to the Main Reference System; 3.3.2 Transition from the Pinion Reference System to the Main Reference System; 4. Conditions for Transmitting a Uniform Rotation Smoothly from a Driving Shaft to a Driven Shaft: Three Fundamental Laws of Gearing.
504 $aIncludes bibliographical references and index.
650 0 $aGearing.
650 7 $aTECHNOLOGY & ENGINEERING$xMechanical.$2bisacsh
650 7 $aGearing.$2fast$0(OCoLC)fst00939404
655 4 $aElectronic books.
776 08 $iPrint version:$z9780429999178$z9780429999161
856 40 $uhttp://www.columbia.edu/cgi-bin/cul/resolve?clio14742639.001$zTaylor & Francis eBooks
856 40 $uhttp://www.columbia.edu/cgi-bin/cul/resolve?clio14742639.002$zTaylor & Francis eBooks
852 8 $blweb$hEBOOKS