Mechanics of fluids:
Gespeichert in:
1. Verfasser: | |
---|---|
Format: | Buch |
Sprache: | English |
Veröffentlicht: |
London [u.a.]
Taylor & Francis
2006
|
Ausgabe: | 8. ed. |
Schlagworte: | |
Online-Zugang: | Table of contents Inhaltsverzeichnis |
Beschreibung: | Includes index. -- "Seventh edition published by Stanley Thornes (Publishers) Ltd in 1998 Published by Spon Press in 2001." |
Beschreibung: | X, 696 S. Ill., graph. Darst. |
ISBN: | 0415362067 0415362059 |
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Datensatz im Suchindex
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adam_text | MECHANICS OF FLUIDS EIGHTH EDITION BERNARD MASSEY READER EMERITUS IN
MECHANICAL ENGINEERING UNIVERSITY COLLEGE, LONDON REVISED BY JOHN
WARD-SMITH FORMERLY SENIOR LECTURER IN MECHANICAL ENGINEERING BRUNEI
UNIVERSITY TAYLOR &. FRANCIS TAYLOR & FRANCIS CROUP LONDON AND NEW YORK
CONTENTS PREFACE TO THE EIGHTH EDITION IX 1 FUNDAMENTAL CONCEPTS 1 1.1
THE CHARACTERISTICS OF FLUIDS 1 1.2 NOTATION, DIMENSIONS, UNITS AND
RELATED MATTERS 4 1.3 PROPERTIES OF FLUIDS 12 1.4 THE PERFECT GAS:
EQUATION OF STATE 17 1.5 COMPRESSIBILITY 20 1.6 VISCOSITY 21 1.7 SURFACE
TENSION 28 1.8 BASIC CHARACTERISTICS OF FLUIDS IN MOTION 30 1.9
CLASSIFICATION AND DESCRIPTION OF FLUID FLOW 33 1.10 THE ROLES OF
EXPERIMENTATION AND THEORY IN FLUID MECHANICS 38 1.11 SUMMARY 41
PROBLEMS 41 2 FLUID STATICS 43 2.1 INTRODUCTION 43 2.2 VARIATION OF
PRESSURE WITH POSITION IN A FLUID 43 2.3 THE MEASUREMENT OF PRESSURE 48
2.4 FIRST AND SECOND MOMENTS OF AREA 57 2.5 HYDROSTATIC THRUSTS ON
SUBMERGED SURFACES 59 2.6 BUOYANCY 69 2.7 THE STABILITY OF BODIES IN
FLUIDS 71 2.8 EQUILIBRIUM OF MOVING FLUIDS 80 PROBLEMS 84 3 THE
PRINCIPLES GOVERNING FLUIDS IN MOTION 89 3.1 INTRODUCTION 89 3.2
ACCELERATION OF A FLUID PARTICLE 89 3.3 THE CONTINUITY EQUATION 90 3.4
BERNOULLI S EQUATION 92 3.5 GENERAL ENERGY EQUATION FOR STEADY FLOW OF
ANY FLUID 96 VI CONTENTS 3.6 PRESSURE VARIATION PERPENDICULAR TO
STREAMLINES 107 3.7 SIMPLE APPLICATIONS OF BERNOULLI S EQUATION 109
PROBLEMS 131 4 THE MOMENTUM EQUATION 134 4.1 INTRODUCTION 134 4.2 THE
MOMENTUM EQUATION FOR STEADY FLOW 134 4.3 APPLICATIONS OF THE MOMENTUM
EQUATION 138 PROBLEMS 156 5 PHYSICAL SIMILARITY AND DIMENSIONAL ANALYSIS
159 5.1 INTRODUCTION 159 5.2 TYPES OF PHYSICAL SIMILARITY 160 5.3 RATIOS
OF FORCES ARISING IN DYNAMIC SIMILARITY 162 5.4 THE PRINCIPAL
DIMENSIONLESS GROUPS OF FLUID DYNAMICS 167 5.5 OTHER DIMENSIONLESS
GROUPS 167 5.6 DIMENSIONAL ANALYSIS 170 5.7 THE APPLICATION OF DYNAMIC
SIMILARITY 179 5.8 SHIP RESISTANCE 182 PROBLEMS 188 6 LAMINAR FLOW
BETWEEN SOLID BOUNDARIES 191 6.1 INTRODUCTION 191 6.2 STEADY LAMINAR
FLOW IN CIRCULAR PIPES: THE HAGEN-POISEUILLE LAW 191 6.3 STEADY LAMINAR
FLOW THROUGH AN ANNULUS 198 6.4 STEADY LAMINAR FLOW BETWEEN PARALLEL
PLANES 199 6.5 STEADY LAMINAR FLOW BETWEEN PARALLEL PLANES, ONE OF WHICH
IS MOVING 204 6.6 THE MEASUREMENT OF VISCOSITY 210 6.7 FUNDAMENTALS OF
THE THEORY OF HYDRODYNAMIC LUBRICATION 220 6.8 LAMINAR FLOW THROUGH
POROUS MEDIA 239 PROBLEMS 242 7 FLOW AND LOSSES IN PIPES AND FITTINGS
245 7.1 INTRODUCTION 245 7.2 FLOW IN PIPES OF CIRCULAR CROSS SECTION 245
7.3 VARIATION OF FRICTION FACTOR 249 7.4 DISTRIBUTION OF SHEAR STRESS IN
A CIRCULAR PIPE 257 7.5 FRICTION IN NON-CIRCULAR CONDUITS 259 7.6 OTHER
LOSSES IN PIPES 260 7.7 TOTAL HEAD AND PRESSURE LINES 271 7.8 PIPES IN
COMBINATION 277 7.9 CONDITIONS NEAR THE PIPE ENTRY 283 7.10 QUASI-STEADY
FLOW IN PIPES 284 7.11 FLOW MEASUREMENT 287 PROBLEMS 292 CONTENTS VII 8
BOUNDARY LAYERS, WAKES AND OTHER SHEAR LAYERS 298 8.1 INTRODUCTION 298
8.2 DESCRIPTION OF THE BOUNDARY LAYER 299 8.3 THE THICKNESS OF THE
BOUNDARY LAYER 301 8.4 THE MOMENTUM EQUATION APPLIED TO THE BOUNDARY
LAYER 303 8.5 THE LAMINAR BOUNDARY LAYER ON A FLAT PLATE WITH ZERO
PRESSURE GRADIENT 306 . 8.6 THE TURBULENT BOUNDARY LAYER ON A SMOOTH
FLAT PLATE WITH ZERO PRESSURE GRADIENT 313 8.7 FRICTION DRAG FOR LAMINAR
AND TURBULENT BOUNDARY LAYERS TOGETHER 317 8.8 EFFECT OF PRESSURE
GRADIENT 320 8.9 BOUNDARY LAYER CONTROL 338 8.10 EFFECT OF
COMPRESSIBILITY ON DRAG 340 8.11 EDDY VISCOSITY AND THE MIXING LENGTH
HYPOTHESIS 341 8.12 VELOCITY DISTRIBUTION IN TURBULENT FLOW 344 8.13
FREE TURBULENCE 352 8.14 COMPUTATIONAL FLUID DYNAMICS 353 PROBLEMS 358 9
THE FLOW OF AN INVISCID FLUID 361 9.1 INTRODUCTION 361 9.2 THE STREAM
FUNCTION 362 9.3 CIRCULATION AND VORTICITY 364 9.4 VELOCITY POTENTIAL
367 9.5 FLOW NETS 370 9.6 BASIC PATTERNS OF FLOW 373 9.7 COMBINING FLOW
PATTERNS 383 9.8 COMBINATIONS OF BASIC FLOW PATTERNS 384 9.9 FUNCTIONS
OF A COMPLEX VARIABLE 399 9.10 AN INTRODUCTION TO ELEMENTARY AEROFOIL
THEORY 403 PROBLEMS 410 10 FLOW WITH A FREE SURFACE 414 10.1
INTRODUCTION 414 10.2 TYPES OF FLOW IN OPEN CHANNELS 415 10.3 THE
STEADY-FLOW ENERGY EQUATION FOR OPEN CHANNELS 416 10.4 STEADY UNIFORM
FLOW - THE CHEZY EQUATION 419 10.5 THE BOUNDARY LAYER IN OPEN CHANNELS
423 10.6 OPTIMUM SHAPE OF CROSS-SECTION 425 10.7 FLOW IN CLOSED CONDUITS
ONLY PARTLY FULL 426 10.8 SIMPLE WAVES AND SURGES IN OPEN CHANNELS 427
10.9 SPECIFIC ENERGY AND ALTERNATIVE DEPTHS OF FLOW 431 10.10 THE
HYDRAULIC JUMP 438 10.11 THE OCCURRENCE OF CRITICAL CONDITIONS 443 10.12
GRADUALLY VARIED FLOW 456 VNI CONTENTS 10.13 10.14 10.15 OSCILLATORY
WAVES TSUNAMIS CONCLUSION PROBLEMS 11 COMPRESSIBLE FLOW OF GASES 11.1
11.2 11.3 11.4 11.5 11.6 11.7 11.8 11.9 11.10 11.11 11.12 11.13
INTRODUCTION THERMODYNAMIC CONCEPTS ENERGY EQUATION WITH VARIABLE
DENSITY: STATIC AND STAGNATION TEMPERATURE THE SPEED OF SOUND SHOCK
WAVES SUPERSONIC FLOW ROUND A CORNER THE PITOT TUBE IN COMPRESSIBLE FLOW
SOME GENERAL RELATIONS FOR ONE-DIMENSIONAL FLOWS ONE-DIMENSIONAL FLOW
THROUGH NOZZLES COMPRESSIBLE FLOW IN PIPES OF CONSTANT CROSS-SECTION
HIGH-SPEED FLOW PAST AN AEROFOIL ANALOGY BETWEEN COMPRESSIBLE FLOW AND
FLOW WITH A FREE SURFACE FLOW VISUALIZATION PROBLEMS 12 UNSTEADY FLOW
12.1 12.2 12.3 12.4 INTRODUCTION INERTIA PRESSURE PRESSURE TRANSIENTS
SURGE TANKS PROBLEMS 13 FLUID MACHINES 13.1 13.2 13.3 13.4 13.5 13.6
INTRODUCTION RECIPROCATING PUMPS TURBINES ROTODYNAMIC PUMPS HYDRODYNAMIC
TRANSMISSIONS THE EFFECT OF SIZE ON THE EFFICIENCY OF FLUID MACHINES
PROBLEMS APPENDIX 1 APPENDIX 2 APPENDIX 3 APPENDIX 4 ANSWERS TO ] INDEX
UNITS AND CONVERSION FACTORS PHYSICAL CONSTANTS AND PROPERTIES OF FLUIDS
TABLES OF GAS FLOW FUNCTIONS ALGEBRAIC SYMBOLS PROBLEMS 464 480 482 483
487 487 487 491 493 499 512 517 520 522 530 544 546 548 550 554 554 555
558 583 588 591 591 592 596 625 651 656 657 663 667 672 679 685 689
|
adam_txt |
MECHANICS OF FLUIDS EIGHTH EDITION BERNARD MASSEY READER EMERITUS IN
MECHANICAL ENGINEERING UNIVERSITY COLLEGE, LONDON REVISED BY JOHN
WARD-SMITH FORMERLY SENIOR LECTURER IN MECHANICAL ENGINEERING BRUNEI
UNIVERSITY TAYLOR &. FRANCIS TAYLOR & FRANCIS CROUP LONDON AND NEW YORK
CONTENTS PREFACE TO THE EIGHTH EDITION IX 1 FUNDAMENTAL CONCEPTS 1 1.1
THE CHARACTERISTICS OF FLUIDS 1 1.2 NOTATION, DIMENSIONS, UNITS AND
RELATED MATTERS 4 1.3 PROPERTIES OF FLUIDS 12 1.4 THE PERFECT GAS:
EQUATION OF STATE 17 1.5 COMPRESSIBILITY 20 1.6 VISCOSITY 21 1.7 SURFACE
TENSION 28 1.8 BASIC CHARACTERISTICS OF FLUIDS IN MOTION 30 1.9
CLASSIFICATION AND DESCRIPTION OF FLUID FLOW 33 1.10 THE ROLES OF
EXPERIMENTATION AND THEORY IN FLUID MECHANICS 38 1.11 SUMMARY 41
PROBLEMS 41 2 FLUID STATICS 43 2.1 INTRODUCTION 43 2.2 VARIATION OF
PRESSURE WITH POSITION IN A FLUID 43 2.3 THE MEASUREMENT OF PRESSURE 48
2.4 FIRST AND SECOND MOMENTS OF AREA 57 2.5 HYDROSTATIC THRUSTS ON
SUBMERGED SURFACES 59 2.6 BUOYANCY 69 2.7 THE STABILITY OF BODIES IN
FLUIDS 71 2.8 EQUILIBRIUM OF MOVING FLUIDS 80 PROBLEMS 84 3 THE
PRINCIPLES GOVERNING FLUIDS IN MOTION 89 3.1 INTRODUCTION 89 3.2
ACCELERATION OF A FLUID PARTICLE 89 3.3 THE CONTINUITY EQUATION 90 3.4
BERNOULLI'S EQUATION 92 3.5 GENERAL ENERGY EQUATION FOR STEADY FLOW OF
ANY FLUID 96 VI CONTENTS 3.6 PRESSURE VARIATION PERPENDICULAR TO
STREAMLINES 107 3.7 SIMPLE APPLICATIONS OF BERNOULLI'S EQUATION 109
PROBLEMS 131 4 THE MOMENTUM EQUATION 134 4.1 INTRODUCTION 134 4.2 THE
MOMENTUM EQUATION FOR STEADY FLOW 134 4.3 APPLICATIONS OF THE MOMENTUM
EQUATION 138 PROBLEMS 156 5 PHYSICAL SIMILARITY AND DIMENSIONAL ANALYSIS
159 5.1 INTRODUCTION 159 5.2 TYPES OF PHYSICAL SIMILARITY 160 5.3 RATIOS
OF FORCES ARISING IN DYNAMIC SIMILARITY 162 5.4 THE PRINCIPAL
DIMENSIONLESS GROUPS OF FLUID DYNAMICS 167 5.5 OTHER DIMENSIONLESS
GROUPS 167 5.6 DIMENSIONAL ANALYSIS 170 5.7 THE APPLICATION OF DYNAMIC
SIMILARITY 179 5.8 SHIP RESISTANCE 182 PROBLEMS 188 6 LAMINAR FLOW
BETWEEN SOLID BOUNDARIES 191 6.1 INTRODUCTION 191 6.2 STEADY LAMINAR
FLOW IN CIRCULAR PIPES: THE HAGEN-POISEUILLE LAW 191 6.3 STEADY LAMINAR
FLOW THROUGH AN ANNULUS 198 6.4 STEADY LAMINAR FLOW BETWEEN PARALLEL
PLANES 199 6.5 STEADY LAMINAR FLOW BETWEEN PARALLEL PLANES, ONE OF WHICH
IS MOVING 204 6.6 THE MEASUREMENT OF VISCOSITY 210 6.7 FUNDAMENTALS OF
THE THEORY OF HYDRODYNAMIC LUBRICATION 220 6.8 LAMINAR FLOW THROUGH
POROUS MEDIA 239 PROBLEMS 242 7 FLOW AND LOSSES IN PIPES AND FITTINGS
245 7.1 INTRODUCTION 245 7.2 FLOW IN PIPES OF CIRCULAR CROSS SECTION 245
7.3 VARIATION OF FRICTION FACTOR 249 7.4 DISTRIBUTION OF SHEAR STRESS IN
A CIRCULAR PIPE 257 7.5 FRICTION IN NON-CIRCULAR CONDUITS 259 7.6 OTHER
LOSSES IN PIPES 260 7.7 TOTAL HEAD AND PRESSURE LINES 271 7.8 PIPES IN
COMBINATION 277 7.9 CONDITIONS NEAR THE PIPE ENTRY 283 7.10 QUASI-STEADY
FLOW IN PIPES 284 7.11 FLOW MEASUREMENT 287 PROBLEMS 292 CONTENTS VII 8
BOUNDARY LAYERS, WAKES AND OTHER SHEAR LAYERS 298 8.1 INTRODUCTION 298
8.2 DESCRIPTION OF THE BOUNDARY LAYER 299 8.3 THE THICKNESS OF THE
BOUNDARY LAYER 301 8.4 THE MOMENTUM EQUATION APPLIED TO THE BOUNDARY
LAYER 303 8.5 THE LAMINAR BOUNDARY LAYER ON A FLAT PLATE WITH ZERO
PRESSURE GRADIENT 306 . 8.6 THE TURBULENT BOUNDARY LAYER ON A SMOOTH
FLAT PLATE WITH ZERO PRESSURE GRADIENT 313 8.7 FRICTION DRAG FOR LAMINAR
AND TURBULENT BOUNDARY LAYERS TOGETHER 317 8.8 EFFECT OF PRESSURE
GRADIENT 320 8.9 BOUNDARY LAYER CONTROL 338 8.10 EFFECT OF
COMPRESSIBILITY ON DRAG 340 8.11 EDDY VISCOSITY AND THE MIXING LENGTH
HYPOTHESIS 341 8.12 VELOCITY DISTRIBUTION IN TURBULENT FLOW 344 8.13
FREE TURBULENCE 352 8.14 COMPUTATIONAL FLUID DYNAMICS 353 PROBLEMS 358 9
THE FLOW OF AN INVISCID FLUID 361 9.1 INTRODUCTION 361 9.2 THE STREAM
FUNCTION 362 9.3 CIRCULATION AND VORTICITY 364 9.4 VELOCITY POTENTIAL
367 9.5 FLOW NETS 370 9.6 BASIC PATTERNS OF FLOW 373 9.7 COMBINING FLOW
PATTERNS 383 9.8 COMBINATIONS OF BASIC FLOW PATTERNS 384 9.9 FUNCTIONS
OF A COMPLEX VARIABLE 399 9.10 AN INTRODUCTION TO ELEMENTARY AEROFOIL
THEORY 403 PROBLEMS 410 10 FLOW WITH A FREE SURFACE 414 10.1
INTRODUCTION 414 10.2 TYPES OF FLOW IN OPEN CHANNELS 415 10.3 THE
STEADY-FLOW ENERGY EQUATION FOR OPEN CHANNELS 416 10.4 STEADY UNIFORM
FLOW - THE CHEZY EQUATION 419 10.5 THE BOUNDARY LAYER IN OPEN CHANNELS
423 10.6 OPTIMUM SHAPE OF CROSS-SECTION 425 10.7 FLOW IN CLOSED CONDUITS
ONLY PARTLY FULL 426 10.8 SIMPLE WAVES AND SURGES IN OPEN CHANNELS 427
10.9 SPECIFIC ENERGY AND ALTERNATIVE DEPTHS OF FLOW 431 10.10 THE
HYDRAULIC JUMP 438 10.11 THE OCCURRENCE OF CRITICAL CONDITIONS 443 10.12
GRADUALLY VARIED FLOW 456 VNI CONTENTS 10.13 10.14 10.15 OSCILLATORY
WAVES TSUNAMIS CONCLUSION PROBLEMS 11 COMPRESSIBLE FLOW OF GASES 11.1
11.2 11.3 11.4 11.5 11.6 11.7 11.8 11.9 11.10 11.11 11.12 11.13
INTRODUCTION THERMODYNAMIC CONCEPTS ENERGY EQUATION WITH VARIABLE
DENSITY: STATIC AND STAGNATION TEMPERATURE THE SPEED OF SOUND SHOCK
WAVES SUPERSONIC FLOW ROUND A CORNER THE PITOT TUBE IN COMPRESSIBLE FLOW
SOME GENERAL RELATIONS FOR ONE-DIMENSIONAL FLOWS ONE-DIMENSIONAL FLOW
THROUGH NOZZLES COMPRESSIBLE FLOW IN PIPES OF CONSTANT CROSS-SECTION
HIGH-SPEED FLOW PAST AN AEROFOIL ANALOGY BETWEEN COMPRESSIBLE FLOW AND
FLOW WITH A FREE SURFACE FLOW VISUALIZATION PROBLEMS 12 UNSTEADY FLOW
12.1 12.2 12.3 12.4 INTRODUCTION INERTIA PRESSURE PRESSURE TRANSIENTS
SURGE TANKS PROBLEMS 13 FLUID MACHINES 13.1 13.2 13.3 13.4 13.5 13.6
INTRODUCTION RECIPROCATING PUMPS TURBINES ROTODYNAMIC PUMPS HYDRODYNAMIC
TRANSMISSIONS THE EFFECT OF SIZE ON THE EFFICIENCY OF FLUID MACHINES
PROBLEMS APPENDIX 1 APPENDIX 2 APPENDIX 3 APPENDIX 4 ANSWERS TO ] INDEX
UNITS AND CONVERSION FACTORS PHYSICAL CONSTANTS AND PROPERTIES OF FLUIDS
TABLES OF GAS FLOW FUNCTIONS ALGEBRAIC SYMBOLS PROBLEMS 464 480 482 483
487 487 487 491 493 499 512 517 520 522 530 544 546 548 550 554 554 555
558 583 588 591 591 592 596 625 651 656 657 663 667 672 679 685 689 |
any_adam_object | 1 |
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author | Massey, Bernard S. |
author_facet | Massey, Bernard S. |
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author_sort | Massey, Bernard S. |
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building | Verbundindex |
bvnumber | BV020873200 |
callnumber-first | T - Technology |
callnumber-label | TA357 |
callnumber-raw | TA357 |
callnumber-search | TA357 |
callnumber-sort | TA 3357 |
callnumber-subject | TA - General and Civil Engineering |
classification_rvk | UF 4000 |
classification_tum | MTA 300f |
ctrlnum | (OCoLC)60321285 (DE-599)BVBBV020873200 |
dewey-full | 620.1/06 |
dewey-hundreds | 600 - Technology (Applied sciences) |
dewey-ones | 620 - Engineering and allied operations |
dewey-raw | 620.1/06 |
dewey-search | 620.1/06 |
dewey-sort | 3620.1 16 |
dewey-tens | 620 - Engineering and allied operations |
discipline | Physik |
discipline_str_mv | Physik |
edition | 8. ed. |
format | Book |
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genre | 1\p (DE-588)4143389-0 Aufgabensammlung gnd-content 2\p (DE-588)4123623-3 Lehrbuch gnd-content |
genre_facet | Aufgabensammlung Lehrbuch |
id | DE-604.BV020873200 |
illustrated | Illustrated |
index_date | 2024-07-02T13:26:42Z |
indexdate | 2024-07-09T20:27:11Z |
institution | BVB |
isbn | 0415362067 0415362059 |
language | English |
lccn | 2005011591 |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-014194915 |
oclc_num | 60321285 |
open_access_boolean | |
owner | DE-M49 DE-BY-TUM |
owner_facet | DE-M49 DE-BY-TUM |
physical | X, 696 S. Ill., graph. Darst. |
publishDate | 2006 |
publishDateSearch | 2006 |
publishDateSort | 2006 |
publisher | Taylor & Francis |
record_format | marc |
spelling | Massey, Bernard S. Verfasser aut Mechanics of fluids Bernard Massey 8. ed. London [u.a.] Taylor & Francis 2006 X, 696 S. Ill., graph. Darst. txt rdacontent n rdamedia nc rdacarrier Includes index. -- "Seventh edition published by Stanley Thornes (Publishers) Ltd in 1998 Published by Spon Press in 2001." Fluid mechanics Strömungsmechanik (DE-588)4077970-1 gnd rswk-swf Hydromechanik (DE-588)4026312-5 gnd rswk-swf Flüssigkeit (DE-588)4017621-6 gnd rswk-swf Mechanik (DE-588)4038168-7 gnd rswk-swf 1\p (DE-588)4143389-0 Aufgabensammlung gnd-content 2\p (DE-588)4123623-3 Lehrbuch gnd-content Strömungsmechanik (DE-588)4077970-1 s 3\p DE-604 Flüssigkeit (DE-588)4017621-6 s Mechanik (DE-588)4038168-7 s 4\p DE-604 Hydromechanik (DE-588)4026312-5 s 5\p DE-604 http://www.loc.gov/catdir/toc/ecip0512/2005011591.html Table of contents HEBIS Datenaustausch Darmstadt application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=014194915&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 3\p cgwrk 20201028 DE-101 https://d-nb.info/provenance/plan#cgwrk 4\p cgwrk 20201028 DE-101 https://d-nb.info/provenance/plan#cgwrk 5\p cgwrk 20201028 DE-101 https://d-nb.info/provenance/plan#cgwrk |
spellingShingle | Massey, Bernard S. Mechanics of fluids Fluid mechanics Strömungsmechanik (DE-588)4077970-1 gnd Hydromechanik (DE-588)4026312-5 gnd Flüssigkeit (DE-588)4017621-6 gnd Mechanik (DE-588)4038168-7 gnd |
subject_GND | (DE-588)4077970-1 (DE-588)4026312-5 (DE-588)4017621-6 (DE-588)4038168-7 (DE-588)4143389-0 (DE-588)4123623-3 |
title | Mechanics of fluids |
title_auth | Mechanics of fluids |
title_exact_search | Mechanics of fluids |
title_exact_search_txtP | Mechanics of fluids |
title_full | Mechanics of fluids Bernard Massey |
title_fullStr | Mechanics of fluids Bernard Massey |
title_full_unstemmed | Mechanics of fluids Bernard Massey |
title_short | Mechanics of fluids |
title_sort | mechanics of fluids |
topic | Fluid mechanics Strömungsmechanik (DE-588)4077970-1 gnd Hydromechanik (DE-588)4026312-5 gnd Flüssigkeit (DE-588)4017621-6 gnd Mechanik (DE-588)4038168-7 gnd |
topic_facet | Fluid mechanics Strömungsmechanik Hydromechanik Flüssigkeit Mechanik Aufgabensammlung Lehrbuch |
url | http://www.loc.gov/catdir/toc/ecip0512/2005011591.html http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=014194915&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT masseybernards mechanicsoffluids |