Physics:
Gespeichert in:
1. Verfasser: | |
---|---|
Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Basingstoke
Palgrave MacMillian
2015
|
Ausgabe: | 4. ed. |
Schriftenreihe: | Palgrave foundations
|
Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis Klappentext |
Beschreibung: | XI, 548 S. Ill., graph. Darst. |
ISBN: | 9781137443236 |
Internformat
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Datensatz im Suchindex
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adam_text | Contents
Preface ix
How to use this book x
Acknowledgements xi
Units and Measurements 1
Philosophy and practice in science 1
The S.l. system of units 1
Symbols and equations in physics 3
Making measurements in physics 4
Uncertainty and accuracy 6
Summary 8
Revision questions 8
PART 1 Mechanics 9
1 Forces in Equilibrium 11
1.1 Force as a vector 11
1.2 Turning effects 15
1.3 Stability 17
1.4 Friction 19
1.5 Equilibrium conditions 22
Summary 25
Revision questions 25
2 Dynamics 27
2.1 Speed and distance 27
2.2 Speed and velocity 29
2.3 Acceleration 30
2.4 The equations for uniform
acceleration 33
2.5 Acceleration due to gravity 35
2.6 Rates of change 38
Summary 40
Revision questions 40
3 Force and Motion 41
3.1 Newton s laws of motion 41
3.2 Force and momentum 45
H
3.3 Conservation of momentum 47
Summary 51
Revision questions 51
4 Energy and Power 53
4.1 Work and energy 53
4.2 Power and energy 56
4.3 Efficiency 58
4.4 Energy resources 60
Summary 64
Revision questions 64
PART 2 Properties of Materials 67
5 Matter and Molecules 69
5.1 States of matter 69
5.2 Elements and compounds 71
5.3 The Avogadro constant, Na 74
5.4 Intermolecular forces 75
Summary 77
Revision questions 78
6 Thermal Properties of Materials 79
6.1 Thermal expansion 79
6.2 Specific heat capacity 81
6.3 Specific latent heat 84
6.4 Heat transfer 86
6.5 More about thermal conduction 89
Summary 92
Revision questions 93
7 Strength of Solids 94
7.1 Measuring force 94
7.2 Force and materials 96
7.3 Stress and strain 97
7.4 Stress versus strain curves 100
7.5 Elastic energy 103
Summary 104
Revision questions 105
vi
8 Pressure 106
8.1 Pressure and force 106
8.2 Hydraulics 107
8.3 Pressure in a fluid at rest 109
8.4 Measurement of pressure 110
8.5 Flotation 112
Summary 114
Revision questions 114
PART 3 Waves 117
9 Properties of Waves 119
9.1 Types of waves 119
9.2 Measuring waves 120
9.3 Properties of waves 122
9.4 Longitudinal and transverse waves 126
9.5 Polarised light 128
Summary 129
Revision questions 129
10 Sound 131
10.1 The nature and properties of sound 131
10.2 The human ear 133
10.3 Ultrasonics 135
10.4 Vibrating strings 137
10.5 Acoustic resonance 139
Summary 142
Revision questions 143
11 Optics 145
11.1 Interference and the nature of light 145
11.2 Reflection and refraction of light 148
11.3 Lenses 151
11.4 Optical instruments 155
Summary 158
Revision questions 158
12 Electromagnetic Waves 160
12.1 The visible spectrum 160
12.2 Types of spectra 161
12.3 Infra-red and beyond 166
12.4 Ultraviolet radiation, X-radiation and
gamma radiation 170
Summary 172
Revision questions 173
FART 4 Electricity 175
13 Introduction to Electricity 177
13.1 Static electricity 177
13.2 Current and charge 180
13.3 Potential difference 185
13.4 Resistance 188
Summary 192
Revision questions 193
14 Electric Circuits 194
14.1 Cells and batteries 194
14.2 The potentiometer 198
14.3 The Wheatstone bridge 201
14.4 Resistivity 204
14.5 Electrical measurements 205
Summary 209
Revision questions 209
15 Capacitors 211
15.1 Storing charge 211
15.2 Capacitor combinations 214
15.3 Energy stored in a charged cell 217
15.4 Capacitor design factors 219
15.5 Capacitor discharge 221
Summary 224
Revision questions 224
16 Electronics 226
16.1 The systems approach 226
16.2 Electronic logic 227
16.3 Electronics at work 231
16.4 Operational amplifiers 234
16.5 Multivibrators 241
Summary 242
Revision questions 243
PART 5 Fields 244
17 Electric Fields 247
17.1 Electrostatic forces 247
17.2 Electric field patterns 249
17.3 Electric field strength 253
17.4 Electric potential 258
Summary 260
Revision questions 261
18 Magnetic Fields 262
18.1 Magnetic field patterns 262
18.2 Electromagnets 265
18.3 The motor effect 266
18.4 Magnetic flux density 269
18.5 Magnetic field formulae 272
18.6 Magnetic materials 275
Summary 278
Revision questions 279
19 Electromagnetic Induction 280
19.1 The dynamo effect 280
19.2 Magnetic flux 284
19.3 The alternating current generator 287
19.4 The transformer 290
19.5 Self-inductance 294
Summary 297
Revision questions 297
20 Alternating Current 299
20.1 Measurement of alternating currents
and voltages 299
20.2 Rectifier circuits 302
20.3 Alternating current and power 304
20.4 Capacitors in a.c. circuits 307
20.5 Coils in a.c. circuits 311
20.6 Resonant circuits 313
Summary 316
Revision questions 317
PART 6 Atomic and Nuclear
Physics 319
21 Electrons and Photons 321
21.1 Electron beams 321
21.2 The charge of the electron 326
21.3 Photoelectricity 330
21.4 Electrons in the atom 334
21.5 X-rays 338
21.6 Wave mechanics 342
Summary 346
Revision questions 347
22 Radioactivity 349
22.1 Inside the atom 349
22.2 Radiation from radioactive
substances 352
22.3 The range and penetrating power of
alpha, beta and gamma radiation 356
22.4 Radioactive decay 360
22.5 The mathematics of radioactive
decay 363
Summary 365
Revision questions 366
23 Energy from the Nucleus 367
23.1 The nature of force 367
23.2 Binding energy 370
23.3 Nuclear power 375
23.4 Probing the nucleus 380
Summary 385
Revision questions 385
PART 7 Further Physics 387
24 Fluid Flow 389
24.1 Flow patterns 389
24.2 Flow rates 391
24.3 Viscous flow 394
24.4 Non-viscous flow 398
Summary 401
Revision questions 401
25 Gases 402
25.1 The gas laws 402
25.2 The ideal gas equation 407
25.3 The kinetic theory of gases 408
Summary 413
Revision questions 414
25 Thermodynamics 415
26.1 Temperature 415
26.2 Heat and work 418
26.3 The thermodynamics of ideal gases 420
26.4 The Second Law of Thermodynamics 426
Summary 429
Revision questions 429
27 Uniform Circular Motion 431
27.1 Circular measures 431
27.2 Centripetal acceleration 433
27.3 Reactions and rides 435
Summary 438
Revision questions 439
28 Gravitation 440
28.1 Newton s theory of gravity 440
28.2 Gravitational field strength 440
28.3 Gravitational potential energy 446
28.4 Satellite motion 448
Summary 451
Revision questions 452
Simple Harmonic Motion 453
29.1 Oscillating motion 453
29.2 Sine waves 456
29.3 Forces in oscillating systems 458
29.4 Resonance 462
Summary 464
Revision questions 465
Rotational Dynamics 466
30.1 Angular motion 466
30.2 Moment of inertia 469
30.3 Rotational kinetic energy 473
30.4 Angular momentum 477
Summary 481
Revision questions 481
Further Questions 482
Using Spreadsheets 494
List of Experiments in the Book 497
Location Guide to Mathematical Skills 499
Summary of Equations 500
Useful Data 504
Answers to In-text Questions and
Revision Questions 505
Answers to Further Questions 534
Glossary 535
index 543
This established text provides a first course in physics for
students on access or foundation programmes and for
non-specialist students on degree courses such as
biological sciences, chemical sciences, engineering,
mathematics and geology for whom physics is a subsidiary
subject. The book is also suitable for trainee science
teachers and medical students who need to develop a solid
background in physics.
Physics offers various routes into the subject via
independent introductory sections on mechanics,
materials, waves and electricity. Assuming no prior
knowledge and focusing on the essentials, the text
develops the topics of fields, electromagnetism,
electronics, atomic and nuclear physics, and advanced
Jim Breithaupt is a physics writer with extensive mechanics and thermodynamics, in a logical and succinct
experience of teaching physics in schools and colleges. style. Illustrations are used extensively to support
He has written several highly-regarded school and college theoretical explanations and help readers understand the
texts including New Understanding Physics for Advanced fundamentals of physics.
Level and AQA A Level Physics.
Now in its fourth edition, Physics contains a new section
on rotational dynamics, additional applications features
throughout and it has an attractive new layout
and design.
Key features include:
mathematical exercises and extensive
mathematical support
• worked examples in every chapter
a glossary of key terms and concepts
* chapter objectives and summaries
Ideal for use as a class text or for independent study,
Physics will help students who are new to the subject to gain
confidence in their knowledge and understanding of physics.
‘A refreshingly different approach with a good
mixture of fact, application and experiment... strong
on worked examples and end of chapter questions...
the coverage is comprehensive and up-to-date while
managing also to be sufficiently rigorous and concise.
l... there is a need for this type of text, which is much
more focused on the basic principles of the subject than
the currently available texts at foundation level.
umbnaat
ONLINE RESOURCES AT WWW.PA LGRAVE.COM/FOUNDAT IONS/BREITHAUPT,
INCLUDING FURTHER CASE STUDIES’ AND EXPERIMENTS
ISBN 978-1-137-44323-6
|
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author | Breithaupt, Jim 1947- |
author_GND | (DE-588)120548496 |
author_facet | Breithaupt, Jim 1947- |
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building | Verbundindex |
bvnumber | BV042896741 |
classification_rvk | UC 100 |
ctrlnum | (OCoLC)927974995 (DE-599)BVBBV042896741 |
dewey-full | 530 |
dewey-hundreds | 500 - Natural sciences and mathematics |
dewey-ones | 530 - Physics |
dewey-raw | 530 |
dewey-search | 530 |
dewey-sort | 3530 |
dewey-tens | 530 - Physics |
discipline | Physik |
edition | 4. ed. |
format | Book |
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title_full | Physics Jim Breithaupt |
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