Vector mechanics for engineers: statics and dynamics
Gespeichert in:
Format: | Buch |
---|---|
Sprache: | English |
Veröffentlicht: |
Boston [u.a.]
McGraw-Hill
c 2007
|
Ausgabe: | 8. ed. |
Schriftenreihe: | McGraw-Hill higher education
|
Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | Rev. ed. of: Vector mechanics for engineers / Ferdinand P. Beer. |
Beschreibung: | XXIX, 1326 S. Ill., graph. Darst. CD-ROM ; 7,5 cm |
ISBN: | 9780072976984 0072976985 |
Internformat
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500 | |a Rev. ed. of: Vector mechanics for engineers / Ferdinand P. Beer. | ||
650 | 4 | |a Analyse vectorielle | |
650 | 4 | |a Dynamique | |
650 | 4 | |a Mécanique appliquée | |
650 | 4 | |a Statique | |
650 | 4 | |a Dynamics | |
650 | 4 | |a Mechanics, Applied | |
650 | 4 | |a Statics | |
650 | 4 | |a Vector analysis | |
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Datensatz im Suchindex
_version_ | 1804135407977234432 |
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adam_text | DYNAMICS FERDINAND P. BEER LATE OF LEHIGH UNIVERSITY E. RUSSELL
JOHNSTON, JR. UNIVERSITY OF CONNECTICUT WILLIAM E. CLAUSEN THE OHIO
STATE UNIVERSITY WITH THE COLLABORATION OF PHILLIP J. CORNWELL
ROSE-HULMAN INSTITUTE OF TECHNOLOGY ME GRAIA/ HIGHER EDUCATION BOSTON
BURR RIDGE, IL DUBUQUE, IA NEW YORK SAN FRANCISCO ST. LOUIS BANGKOK
BOGOTA CARACAS KUALA LUMPUR LISBON LONDON MADRID MEXICO CITY MILAN
MONTREAL NEW DELHI SANTIAGO SEOUL SINGAPORE SYDNEY TAIPEI TORONTO
CONTENTS PREFACE XII ACKNOWLEDGMENTS XIX LIST OF SYMBOLS XXII 11
KINEMATICS OF PARTICLES 601 11.1 INTRODUCTION TO DYNAMICS 602
RECTILINEAR MOTION OF PARTICLES 603 11.2 POSITION, VELOCITY, AND
ACCELERATION 603 11.3 DETERMINATION OF THE MOTION OF A PARTICLE 607 11.4
UNIFORM RECTILINEAR MOTION 616 11.5 UNIFORMLY ACCELERATED RECTILINEAR
MOTION 617 11.6 MOTION OF SEVERAL PARTICLES 618 *11.7 GRAPHICAL SOLUTION
OF RECTILINEAR-MOTION PROBLEMS 630 *11.8 OTHER GRAPHICAL METHODS 631
CURVILINEAR MOTION OF PARTICLES 641 11.9 POSITION VECTOR, VELOCITY, AND
ACCELERATION 641 11.10 DERIVATIVES OF VECTOR FUNCTIONS 643 11.11
RECTANGULAR COMPONENTS OF VELOCITY AND ACCELERATION 645 11.12 MOTION
RELATIVE TO A FRAME IN TRANSLATION 646 11.13 TANGENTIAL AND NORMAL
COMPONENTS 663 11.14 RADIAL AND TRANSVERSE COMPONENTS 666 REVIEW AND
SUMMARY FOR CHAPTER 11 680 REVIEW PROBLEMS 684 COMPUTER PROBLEMS 687 12
KINETICS OF PARTICLES: NEWTON S SECOND LAW 691 12.1 INTRODUCTION 692
12.2 NEWTON S SECOND LAW OF MOTION 693 12.3 LINEAR MOMENTUM OF A
PARTICLE. RATE OF CHANGE OF LINEAR MOMENTUM 694 VII VIII CONTENTS 12.4
SYSTEMS OF UNITS 695 12.5 EQUATIONS OF MOTION 697 12.6 DYNAMIC
EQUILIBRIUM 699 12.7 ANGULAR MOMENTUM OF A PARTICLE. RATE OF CHANGE OF
ANGULAR MOMENTUM 718 12.8 EQUATIONS OF MOTION IN TERMS OF RADIAL AND
TRANSVERSE COMPONENTS 719 12.9 MOTION UNDER A CENTRAL FORCE.
CONSERVATION OF ANGULAR MOMENTUM 720 12.10 NEWTON S LAW OF GRAVITATION
721 *12.11 TRAJECTORY OF A PARTICLE UNDER A CENTRAL FORCE 731 *12.12
APPLICATION TO SPACE MECHANICS 732 *12.13 KEPLER S LAWS OF PLANETARY
MOTION 735 REVIEW AND SUMMARY FOR CHAPTER 12 744 REVIEW PROBLEMS 748
COMPUTER PROBLEMS 751 13 KINETICS OF PARTICLES: ENERGY AND MOMENTUM
METHODS 755 13.1 INTRODUCTION 756 13.2 WORK OF A FORCE 756 13.3 KINETIC
ENERGY OF A PARTICLE. PRINCIPLE OF WORK AND ENERGY 760 13.4 APPLICATIONS
OF THE PRINCIPLE OF WORK AND ENERGY 762 13.5 POWER AND EFFICIENCY 763
13.6 POTENTIAL ENERGY 781 *13.7 CONSERVATIVE FORCES 783 13.8
CONSERVATION OF ENERGY 784 13.9 MOTION UNDER A CONSERVATIVE CENTRAL
FORCE. APPLICATION TO SPACE MECHANICS 786 13.10 PRINCIPLE OF IMPULSE AND
MOMENTUM 805 13.11 IMPULSIVE MOTION 808 13.12 IMPACT 820 13.13 DIRECT
CENTRAL IMPACT 820 13.14 OBLIQU E CENTRAL IMPACT 823 13.15 PROBLEMS
INVOLVING ENERGY AND MOMENTUM 826 REVIEW AND SUMMARY FOR CHAPTER 13 842
REVIEW PROBLEMS 848 COMPUTER PROBLEMS 851 14 SYSTEMS OF PARTICLES 855
14.1 INTRODUCTION 856 14.2 APPLICATION OF NEWTON S LAWS TO THE MOTION OF
A SYSTEM OF PARTICLES. EFFECTIVE FORCES 856 14.3 LINEAR AND ANGULAR
MOMENTUM OF A SYSTEM OF PARTICLES 859 14.4 MOTION OF THE MASS CENTER OF
A SYSTEM OF PARTICLES 860 14.5 ANGULAR MOMENTUM OF A SYSTEM OF PARTICLES
ABOUT ITS MASS CENTER 862 14.6 CONSERVATION OF MOMENTUM FOR A SYSTEM OF
PARTICLES 864 14.7 KINETIC ENERGY OF A SYSTEM OF PARTICLES 873 14.8
WORK-ENERGY PRINCIPLE. CONSERVATION OF ENERGY FOR A SYSTEM CONTENTS OF
PARTICLES 875 14.9 PRINCIPLE OF IMPULSE AND MOMENTUM FOR A SYSTEM OF
PARTICLES 875 *14.10 VARIABLE SYSTEMS OF PARTICLES 886 *14.11 STEADY
STREAM OF PARTICLES 886 *14.12 SYSTEMS GAINING OR LOSING MASS 889 REVIEW
AND SUMMARY FOR CHAPTER 14 904 REVIEW PROBLEMS 908 COMPUTER PROBLEMS 911
15 KINEMATICS OF RIGID BODIES 915 15.1 INTRODUCTION 916 15.2 TRANSLATION
918 15.3 ROTATION ABOUT A FIXED AXIS 919 15.4 EQUATIONS DEFINING THE
ROTATION OF A RIGID BODY ABOUT A FIXED AXIS 922 15.5 GENERAL PLANE
MOTION 932 15.6 ABSOLUTE AND RELATIVE VELOCITY IN PLANE MOTION 934 15.7
INSTANTANEOUS CENTER OF ROTATION IN PLANE MOTION 945 15.8 ABSOLUTE AND
RELATIVE ACCELERATION IN PLANE MOTION 956 *15.9 ANALYSIS OF PLANE MOTION
IN TERMS OF A PARAMETER 958 15.10 RATE OF CHANGE OF A VECTOR WITH
RESPECT TO A ROTATING FRAME 971 15.11 PLANE MOTION OF A PARTICLE
RELATIVE TO A ROTATING FRAME. CORIOLIS ACCELERATION 973 *15.12 MOTION
ABOUT A FIXED POINT 984 *15.13 GENERAL MOTION 987 *15.14
THREE-DIMENSIONAL MOTION OF A PARTICLE RELATIVE TO A ROTATING FRAME.
CORIOLIS ACCELERATION 998 *15.15 FRAME OF REFERENCE IN GENERAL MOTION
999 REVIEW AND SUMMARY FOR CHAPTER 15 1011 REVIEW PROBLEMS 1018 COMPUTER
PROBLEMS 1021 16 PLANE MOTION OF RIGID BODIES: FORCES AND ACCELERATIONS
1025 16.1 INTRODUCTION 1026 16.2 EQUATIONS OF MOTION FOR A RIGID BODY
1027 16.3 ANGULAR MOMENTUM OF A RIGID BODY IN PLANE MOTION 1028 16.4
PLANE MOTION OF A RIGID BODY. D ALEMBERT S PRINCIPLE 1029 *16.5 A REMARK
ON THE AXIOMS OF THE MECHANICS OF RIGID BODIES 1030 16.6 SOLUTION OF
PROBLEMS INVOLVING THE MOTION OF A RIGID BODY 1031 16.7 SYSTEMS OF RIGID
BODIES 1032 16.8 CONSTRAINED PLANE MOTION 1051 REVIEW AND SUMMARY FOR
CHAPTER 16 1073 REVIEW PROBLEMS 1075 COMPUTER PROBLEMS 1078 CONTENTS **
J PLANE MOTION OF RIGID BODIES: ENERGY AND MOMENTUM METHODS 1081 17.1
INTRODUCTION 1082 17.2 PRINCIPLE OF WORK AND ENERGY FOR A RIGID BODY
1082 17.3 WORK OF FORCES ACTING ON A RIGID BODY 1083 17.4 KINETIC ENERGY
OF A RIGID BODY IN PLANE MOTION 1084 17.5 SYSTEMS OF RIGID BODIES 1085
17.6 CONSERVATION OF ENERGY 1086 17.7 POWER 1087 17.8 PRINCIPLE OF
IMPULSE AND MOMENTUM FOR THE PLANE MOTION OF A RIGID BODY 1104 17.9
SYSTEMS OF RIGID BODIES 1107 17.10 CONSERVATION OF ANGULAR MOMENTUM 1107
17.11 IMPULSIVE MOTION 1120 17.12 ECCENTRIC IMPACT 1120 REVIEW AND
SUMMARY FOR CHAPTER 17 1 134 REVIEW PROBLEMS 1138 COMPUTER PROBLEMS 1141
18 KINETICS OF RIGID BODIES IN THREE DIMENSIONS 1145 *18.1 INTRODUCTION
1146 *18.2 ANGULAR MOMENTUM OF A RIGID BODY IN THREE DIMENSIONS 1147
*18.3 APPLICATION OF THE PRINCIPLE OF IMPULSE AND MOMENTUM TO THE
THREE-DIMENSIONAL MOTION OF A RIGID BODY 1151 *18.4 KINETIC ENERGY OF A
RIGID BODY IN THREE DIMENSIONS 1152 *18.5 MOTION OF A RIGID BODY IN
THREE DIMENSIONS 1165 *18.6 EULER S EQUATIONS OF MOTION. EXTENSION OF
D ALEMBERT S PRINCIPLE TO THE MOTION OF A RIGID BODY IN THREE DIMENSIONS
1166 *18.7 MOTION OF A RIGID BODY ABOUT A FIXED POINT 1167 *18.8
ROTATION OF A RIGID BODY ABOUT A FIXED AXIS 1168 *18.9 MOTION OF A
GYROSCOPE. EULERIAN ANGLES 1183 *18.10 STEADY PRECESSION OF A GYROSCOPE
1185 *18.11 MOTION OF AN AXISYMMETRICAL BODY UNDER NO FORCE 1186 REVIEW
AND SUMMARY FOR CHAPTER 18 1199 REVIEW PROBLEMS 1204 COMPUTER PROBLEMS
1208 19 MECHANICAL VIBRATIONS 1213 19.1 INTRODUCTION 1214 VIBRATIONS
WITHOUT DAMPING 1214 19.2 FREE VIBRATIONS OF PARTICLES. SIMPLE HARMONIC
MOTION 1214 19.3 SIMPLE PENDULUM (APPROXIMATE SOLUTION) 1218 *19.4
SIMPLE PENDULUM (EXACT SOLUTION) 1219 19.5 FREE VIBRATIONS OF RIGID
BODIES 1228 19.6 APPLICATION OF THE PRINCIPLE OF CONSERVATION OF ENERGY
1240 CONTENTS 19.7 FORCED VIBRATIONS 1251 DAMPED VIBRATIONS 1261 *19.8
DAMPED FREE VIBRATIONS 1261 *19.9 DAMPED FORCED VIBRATIONS 1264 *19.10
ELECTRICAL ANALOGUES 1265 REVIEW AND SUMMARY FOR CHAPTER 19 1277 REVIEW
PROBLEMS 1282 COMPUTER PROBLEMS 1285 APPENDIX A SOME USF I UL H!
HNITIOH*; ALL! - PHOPI RK K OF V» C TOR AT KA H^A 1289 APPENDIX B
MOMENTS OF INERTIA OF IV1A.SSES 1295 APPENDIX C FUNDAMENTALS OF
ENGINEERING EXAMINATION 1333 PHOTO CREDITS 1335 INDEX 1337 ANSWERS TO
PROBLEMS 1345
|
adam_txt |
DYNAMICS FERDINAND P. BEER LATE OF LEHIGH UNIVERSITY E. RUSSELL
JOHNSTON, JR. UNIVERSITY OF CONNECTICUT WILLIAM E. CLAUSEN THE OHIO
STATE UNIVERSITY WITH THE COLLABORATION OF PHILLIP J. CORNWELL
ROSE-HULMAN INSTITUTE OF TECHNOLOGY ME GRAIA/ HIGHER EDUCATION BOSTON
BURR RIDGE, IL DUBUQUE, IA NEW YORK SAN FRANCISCO ST. LOUIS BANGKOK
BOGOTA CARACAS KUALA LUMPUR LISBON LONDON MADRID MEXICO CITY MILAN
MONTREAL NEW DELHI SANTIAGO SEOUL SINGAPORE SYDNEY TAIPEI TORONTO
CONTENTS PREFACE XII ACKNOWLEDGMENTS XIX LIST OF SYMBOLS XXII 11
KINEMATICS OF PARTICLES 601 11.1 INTRODUCTION TO DYNAMICS 602
RECTILINEAR MOTION OF PARTICLES 603 11.2 POSITION, VELOCITY, AND
ACCELERATION 603 11.3 DETERMINATION OF THE MOTION OF A PARTICLE 607 11.4
UNIFORM RECTILINEAR MOTION 616 11.5 UNIFORMLY ACCELERATED RECTILINEAR
MOTION 617 11.6 MOTION OF SEVERAL PARTICLES 618 *11.7 GRAPHICAL SOLUTION
OF RECTILINEAR-MOTION PROBLEMS 630 *11.8 OTHER GRAPHICAL METHODS 631
CURVILINEAR MOTION OF PARTICLES 641 11.9 POSITION VECTOR, VELOCITY, AND
ACCELERATION 641 11.10 DERIVATIVES OF VECTOR FUNCTIONS 643 11.11
RECTANGULAR COMPONENTS OF VELOCITY AND ACCELERATION 645 11.12 MOTION
RELATIVE TO A FRAME IN TRANSLATION 646 11.13 TANGENTIAL AND NORMAL
COMPONENTS 663 11.14 RADIAL AND TRANSVERSE COMPONENTS 666 REVIEW AND
SUMMARY FOR CHAPTER 11 680 REVIEW PROBLEMS 684 COMPUTER PROBLEMS 687 12
KINETICS OF PARTICLES: NEWTON'S SECOND LAW 691 12.1 INTRODUCTION 692
12.2 NEWTON'S SECOND LAW OF MOTION 693 12.3 LINEAR MOMENTUM OF A
PARTICLE. RATE OF CHANGE OF LINEAR MOMENTUM 694 VII VIII CONTENTS 12.4
SYSTEMS OF UNITS 695 12.5 EQUATIONS OF MOTION 697 12.6 DYNAMIC
EQUILIBRIUM 699 12.7 ANGULAR MOMENTUM OF A PARTICLE. RATE OF CHANGE OF
ANGULAR MOMENTUM 718 12.8 EQUATIONS OF MOTION IN TERMS OF RADIAL AND
TRANSVERSE COMPONENTS 719 12.9 MOTION UNDER A CENTRAL FORCE.
CONSERVATION OF ANGULAR MOMENTUM 720 12.10 NEWTON'S LAW OF GRAVITATION
721 *12.11 TRAJECTORY OF A PARTICLE UNDER A CENTRAL FORCE 731 *12.12
APPLICATION TO SPACE MECHANICS 732 *12.13 KEPLER'S LAWS OF PLANETARY
MOTION 735 REVIEW AND SUMMARY FOR CHAPTER 12 744 REVIEW PROBLEMS 748
COMPUTER PROBLEMS 751 13 KINETICS OF PARTICLES: ENERGY AND MOMENTUM
METHODS 755 13.1 INTRODUCTION 756 13.2 WORK OF A FORCE 756 13.3 KINETIC
ENERGY OF A PARTICLE. PRINCIPLE OF WORK AND ENERGY 760 13.4 APPLICATIONS
OF THE PRINCIPLE OF WORK AND ENERGY 762 13.5 POWER AND EFFICIENCY 763
13.6 POTENTIAL ENERGY 781 *13.7 CONSERVATIVE FORCES 783 13.8
CONSERVATION OF ENERGY 784 13.9 MOTION UNDER A CONSERVATIVE CENTRAL
FORCE. APPLICATION TO SPACE MECHANICS 786 13.10 PRINCIPLE OF IMPULSE AND
MOMENTUM 805 13.11 IMPULSIVE MOTION 808 13.12 IMPACT 820 13.13 DIRECT
CENTRAL IMPACT 820 13.14 OBLIQU E CENTRAL IMPACT 823 13.15 PROBLEMS
INVOLVING ENERGY AND MOMENTUM 826 REVIEW AND SUMMARY FOR CHAPTER 13 842
REVIEW PROBLEMS 848 COMPUTER PROBLEMS 851 14 SYSTEMS OF PARTICLES 855
14.1 INTRODUCTION 856 14.2 APPLICATION OF NEWTON'S LAWS TO THE MOTION OF
A SYSTEM OF PARTICLES. EFFECTIVE FORCES 856 14.3 LINEAR AND ANGULAR
MOMENTUM OF A SYSTEM OF PARTICLES 859 14.4 MOTION OF THE MASS CENTER OF
A SYSTEM OF PARTICLES 860 14.5 ANGULAR MOMENTUM OF A SYSTEM OF PARTICLES
ABOUT ITS MASS CENTER 862 14.6 CONSERVATION OF MOMENTUM FOR A SYSTEM OF
PARTICLES 864 14.7 KINETIC ENERGY OF A SYSTEM OF PARTICLES 873 14.8
WORK-ENERGY PRINCIPLE. CONSERVATION OF ENERGY FOR A SYSTEM CONTENTS OF
PARTICLES 875 14.9 PRINCIPLE OF IMPULSE AND MOMENTUM FOR A SYSTEM OF
PARTICLES 875 *14.10 VARIABLE SYSTEMS OF PARTICLES 886 *14.11 STEADY
STREAM OF PARTICLES 886 *14.12 SYSTEMS GAINING OR LOSING MASS 889 REVIEW
AND SUMMARY FOR CHAPTER 14 904 REVIEW PROBLEMS 908 COMPUTER PROBLEMS 911
15 KINEMATICS OF RIGID BODIES 915 15.1 INTRODUCTION 916 15.2 TRANSLATION
918 15.3 ROTATION ABOUT A FIXED AXIS 919 15.4 EQUATIONS DEFINING THE
ROTATION OF A RIGID BODY ABOUT A FIXED AXIS 922 15.5 GENERAL PLANE
MOTION 932 15.6 ABSOLUTE AND RELATIVE VELOCITY IN PLANE MOTION 934 15.7
INSTANTANEOUS CENTER OF ROTATION IN PLANE MOTION 945 15.8 ABSOLUTE AND
RELATIVE ACCELERATION IN PLANE MOTION 956 *15.9 ANALYSIS OF PLANE MOTION
IN TERMS OF A PARAMETER 958 15.10 RATE OF CHANGE OF A VECTOR WITH
RESPECT TO A ROTATING FRAME 971 15.11 PLANE MOTION OF A PARTICLE
RELATIVE TO A ROTATING FRAME. CORIOLIS ACCELERATION 973 *15.12 MOTION
ABOUT A FIXED POINT 984 *15.13 GENERAL MOTION 987 *15.14
THREE-DIMENSIONAL MOTION OF A PARTICLE RELATIVE TO A ROTATING FRAME.
CORIOLIS ACCELERATION 998 *15.15 FRAME OF REFERENCE IN GENERAL MOTION
999 REVIEW AND SUMMARY FOR CHAPTER 15 1011 REVIEW PROBLEMS 1018 COMPUTER
PROBLEMS 1021 16 PLANE MOTION OF RIGID BODIES: FORCES AND ACCELERATIONS
1025 16.1 INTRODUCTION 1026 16.2 EQUATIONS OF MOTION FOR A RIGID BODY
1027 16.3 ANGULAR MOMENTUM OF A RIGID BODY IN PLANE MOTION 1028 16.4
PLANE MOTION OF A RIGID BODY. D'ALEMBERT'S PRINCIPLE 1029 *16.5 A REMARK
ON THE AXIOMS OF THE MECHANICS OF RIGID BODIES 1030 16.6 SOLUTION OF
PROBLEMS INVOLVING THE MOTION OF A RIGID BODY 1031 16.7 SYSTEMS OF RIGID
BODIES 1032 16.8 CONSTRAINED PLANE MOTION 1051 REVIEW AND SUMMARY FOR
CHAPTER 16 1073 REVIEW PROBLEMS 1075 COMPUTER PROBLEMS 1078 CONTENTS **
"J PLANE MOTION OF RIGID BODIES: ENERGY AND MOMENTUM METHODS 1081 17.1
INTRODUCTION 1082 17.2 PRINCIPLE OF WORK AND ENERGY FOR A RIGID BODY
1082 17.3 WORK OF FORCES ACTING ON A RIGID BODY 1083 17.4 KINETIC ENERGY
OF A RIGID BODY IN PLANE MOTION 1084 17.5 SYSTEMS OF RIGID BODIES 1085
17.6 CONSERVATION OF ENERGY 1086 17.7 POWER 1087 17.8 PRINCIPLE OF
IMPULSE AND MOMENTUM FOR THE PLANE MOTION OF A RIGID BODY 1104 17.9
SYSTEMS OF RIGID BODIES 1107 17.10 CONSERVATION OF ANGULAR MOMENTUM 1107
17.11 IMPULSIVE MOTION 1120 17.12 ECCENTRIC IMPACT 1120 REVIEW AND
SUMMARY FOR CHAPTER 17 1 134 REVIEW PROBLEMS 1138 COMPUTER PROBLEMS 1141
18 KINETICS OF RIGID BODIES IN THREE DIMENSIONS 1145 *18.1 INTRODUCTION
1146 *18.2 ANGULAR MOMENTUM OF A RIGID BODY IN THREE DIMENSIONS 1147
*18.3 APPLICATION OF THE PRINCIPLE OF IMPULSE AND MOMENTUM TO THE
THREE-DIMENSIONAL MOTION OF A RIGID BODY 1151 *18.4 KINETIC ENERGY OF A
RIGID BODY IN THREE DIMENSIONS 1152 *18.5 MOTION OF A RIGID BODY IN
THREE DIMENSIONS 1165 *18.6 EULER'S EQUATIONS OF MOTION. EXTENSION OF
D'ALEMBERT'S PRINCIPLE TO THE MOTION OF A RIGID BODY IN THREE DIMENSIONS
1166 *18.7 MOTION OF A RIGID BODY ABOUT A FIXED POINT 1167 *18.8
ROTATION OF A RIGID BODY ABOUT A FIXED AXIS 1168 *18.9 MOTION OF A
GYROSCOPE. EULERIAN ANGLES 1183 *18.10 STEADY PRECESSION OF A GYROSCOPE
1185 *18.11 MOTION OF AN AXISYMMETRICAL BODY UNDER NO FORCE 1186 REVIEW
AND SUMMARY FOR CHAPTER 18 1199 REVIEW PROBLEMS 1204 COMPUTER PROBLEMS
1208 19 MECHANICAL VIBRATIONS 1213 19.1 INTRODUCTION 1214 VIBRATIONS
WITHOUT DAMPING 1214 19.2 FREE VIBRATIONS OF PARTICLES. SIMPLE HARMONIC
MOTION 1214 19.3 SIMPLE PENDULUM (APPROXIMATE SOLUTION) 1218 *19.4
SIMPLE PENDULUM (EXACT SOLUTION) 1219 19.5 FREE VIBRATIONS OF RIGID
BODIES 1228 19.6 APPLICATION OF THE PRINCIPLE OF CONSERVATION OF ENERGY
1240 CONTENTS 19.7 FORCED VIBRATIONS 1251 DAMPED VIBRATIONS 1261 *19.8
DAMPED FREE VIBRATIONS 1261 *19.9 DAMPED FORCED VIBRATIONS 1264 *19.10
ELECTRICAL ANALOGUES 1265 REVIEW AND SUMMARY FOR CHAPTER 19 1277 REVIEW
PROBLEMS 1282 COMPUTER PROBLEMS 1285 APPENDIX A SOME USF I UL H!
HNITIOH*; ALL!'- PHOPI RK K OF V» C TOR AT KA H^A 1289 APPENDIX B
MOMENTS OF INERTIA OF IV1A.SSES 1295 APPENDIX C FUNDAMENTALS OF
ENGINEERING EXAMINATION 1333 PHOTO CREDITS 1335 INDEX 1337 ANSWERS TO
PROBLEMS 1345 |
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edition | 8. ed. |
format | Book |
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genre | (DE-588)4143389-0 Aufgabensammlung gnd-content (DE-588)4123623-3 Lehrbuch gnd-content |
genre_facet | Aufgabensammlung Lehrbuch |
id | DE-604.BV021618019 |
illustrated | Illustrated |
index_date | 2024-07-02T14:52:46Z |
indexdate | 2024-07-09T20:40:01Z |
institution | BVB |
isbn | 9780072976984 0072976985 |
language | English |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-014833124 |
oclc_num | 65207020 |
open_access_boolean | |
owner | DE-91G DE-BY-TUM DE-703 |
owner_facet | DE-91G DE-BY-TUM DE-703 |
physical | XXIX, 1326 S. Ill., graph. Darst. CD-ROM ; 7,5 cm |
publishDate | 2007 |
publishDateSearch | 2007 |
publishDateSort | 2007 |
publisher | McGraw-Hill |
record_format | marc |
series2 | McGraw-Hill higher education |
spelling | Vector mechanics for engineers statics and dynamics Ferdinand P. Beer ... 8. ed. Boston [u.a.] McGraw-Hill c 2007 XXIX, 1326 S. Ill., graph. Darst. CD-ROM ; 7,5 cm txt rdacontent n rdamedia nc rdacarrier McGraw-Hill higher education Rev. ed. of: Vector mechanics for engineers / Ferdinand P. Beer. Analyse vectorielle Dynamique Mécanique appliquée Statique Dynamics Mechanics, Applied Statics Vector analysis Vektoranalysis (DE-588)4191992-0 gnd rswk-swf Technische Mechanik (DE-588)4059231-5 gnd rswk-swf Statik (DE-588)4056987-1 gnd rswk-swf (DE-588)4143389-0 Aufgabensammlung gnd-content (DE-588)4123623-3 Lehrbuch gnd-content Technische Mechanik (DE-588)4059231-5 s Vektoranalysis (DE-588)4191992-0 s 1\p DE-604 Statik (DE-588)4056987-1 s 2\p DE-604 Beer, Ferdinand Pierre 1915-2003 Sonstige (DE-588)171970500 oth HEBIS Datenaustausch Darmstadt application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=014833124&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis 1\p cgwrk 20201028 DE-101 https://d-nb.info/provenance/plan#cgwrk 2\p cgwrk 20201028 DE-101 https://d-nb.info/provenance/plan#cgwrk |
spellingShingle | Vector mechanics for engineers statics and dynamics Analyse vectorielle Dynamique Mécanique appliquée Statique Dynamics Mechanics, Applied Statics Vector analysis Vektoranalysis (DE-588)4191992-0 gnd Technische Mechanik (DE-588)4059231-5 gnd Statik (DE-588)4056987-1 gnd |
subject_GND | (DE-588)4191992-0 (DE-588)4059231-5 (DE-588)4056987-1 (DE-588)4143389-0 (DE-588)4123623-3 |
title | Vector mechanics for engineers statics and dynamics |
title_auth | Vector mechanics for engineers statics and dynamics |
title_exact_search | Vector mechanics for engineers statics and dynamics |
title_exact_search_txtP | Vector mechanics for engineers statics and dynamics |
title_full | Vector mechanics for engineers statics and dynamics Ferdinand P. Beer ... |
title_fullStr | Vector mechanics for engineers statics and dynamics Ferdinand P. Beer ... |
title_full_unstemmed | Vector mechanics for engineers statics and dynamics Ferdinand P. Beer ... |
title_short | Vector mechanics for engineers |
title_sort | vector mechanics for engineers statics and dynamics |
title_sub | statics and dynamics |
topic | Analyse vectorielle Dynamique Mécanique appliquée Statique Dynamics Mechanics, Applied Statics Vector analysis Vektoranalysis (DE-588)4191992-0 gnd Technische Mechanik (DE-588)4059231-5 gnd Statik (DE-588)4056987-1 gnd |
topic_facet | Analyse vectorielle Dynamique Mécanique appliquée Statique Dynamics Mechanics, Applied Statics Vector analysis Vektoranalysis Technische Mechanik Statik Aufgabensammlung Lehrbuch |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=014833124&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT beerferdinandpierre vectormechanicsforengineersstaticsanddynamics |