The science of construction materials:
Gespeichert in:
1. Verfasser: | |
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Format: | Buch |
Sprache: | English Danish |
Veröffentlicht: |
Berlin ; Heidelberg
Springer
2009
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Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | Aus dem Dän. übers. |
Beschreibung: | [250] S. in getr. Zählung Ill., graph. Darst. 29 cm |
ISBN: | 9783540708971 9783540708988 |
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Datensatz im Suchindex
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adam_text | CONTENTS CONTENTS LIST OF SYMBOLS XII PREFACE XV INTRODUCTION XVII 1.
SYSTEMS OF MATTER 1.1 ATOMS 1.2 STRUCTURE OF THE ATOM 1.2 ELEMENTS 1.2
ISOTOPES 1.3 1.2 RELATIVE ATOMIC MASS 1.3 1.3 RELATIVE MOLECULAR MASS
1.4 1.4 AMOUNT OF SUBSTANCE - THE MOLE 1.5 THE AVOGADRO CONSTANT 1.5 1.5
MOLAR MASS 1.6 1.6 MIXTURE OF SUBSTANCES 1.7 CONCENTRATION 1.7 1.7 THE
IDEAL GAS LAW 1.8 1.8 IDEAL GAS MIXTURE 1.9 ATMOSPHERIC AIR 1.9 HUMIDITY
1.9 1.9 REAL GASES 1.10 THE VAN DER WAALS EQUATION 1.11 THE VAN DER
WAALS CONSTANTS 1.11 1.10 INTERMOLECULAR FORCES 1.12 THE LENNARD-JONES
POTENTIAL 1.12 THE LENNARD-JONES PARAMETERS 1.13 HYDROGEN BOND 1.13 1.11
CRITICAL TEMPERATURE 1.14 THE VAN DER WAALS ISOTERMS 1.14 THE CRITICAL
POINT 1.15 CRITICAL CONSTANTS 1.16 1.12 SI UNITS 1.17 BASE UNITS 1.17
DERIVED UNITS 1.17 PREFIXES 1.17 SPECIAL UNITS 1.18 LIST OF KEY IDEAS
1.19 EXAMPLES 1.20 1.1: CORROSION OF IRON - STRAY CURRENT 1.20 1.2: AIR
HARDENING OF LIME MORTAR 1.21 1.3: FOAMING OF AERATED CONCRETE 1.22 1.4:
ACCELERATED TESTING OF CONCRETE 1.23 PAG BIBLIOGRAFISCHE INFORMATIONEN
HTTP://D-NB.INFO/99439425X DIGITALISIERT DURCH CONTENTS 1.5: MOLAR MASS
OF ATMOSPHERIC AIR 1.24 1.6: CHEMICAL SHRINKAGE BY HARDENING OF PORTLAND
CEMENT 1.25 EXERCISES 1-27 LITERATURE 1.30 2. THERMODYNAMIC CONCEPTS 2.1
THERMODYNAMIC SYSTEM 2.2 SYSTEM TYPES 2.2 2.2 DESCRIPTION OF STATE 2.3
2.3 THERMODYNAMIC VARIABLES 2.4 2.4 TEMPERATURE 2.6 THERMODYNAMIC
TEMPERATURE SCALE 2.6 OTHER TEMPERATURE UNITS 2.6 2.5 WORK 2.7 WORK AND
HEAT 2.7 THE CONCEPT OF WORK 2.8 MECHANICAL WORK 2.8 VOLUME WORK 2.9
SURFACE WORK 2.10 ELECTRICAL WORK 2.10 2.6 HEAT 2.11 HEAT CAPACITY OF A
SYSTEM 2.12 SPECIFIC HEAT CAPACITY 2.12 HEATING OF A SYSTEM OF
SUBSTANCES 2.13 SYMBOLS AND UNITS 2.13 2.7 THERMODYNAMIC PROCESS 2.14
PROCESS CONDITIONS 2.15 PROCESS TYPES 2.15 LIST OF KEY IDEAS 2.16
EXAMPLES 2.18 2.1: MEASURING THE ADIABATIC HEAT DEVELOPMENT OF CONCRETE
2.18 2.2: MECHANICAL WORK IN TENSILE TESTING OF A STEEL ROD 2.19 2.3:
VOLUME WORK BY EVAPORATION OF WATER 2.20 2.4: SURFACE WORK BY
ATOMIZATION OF WATER 2.21 2.5: ELECTRICAL WORK BY GALVANIZING OF STEEL
2.22 2.6: HEATING OF MORTAR BY EMPLOYING HOT MIXING WATER 2.24 EXERCISES
2.24 LITERATURE 2.28 3. FIRST LAW 3. CONTENTS 3.3 INTERNAL ENERGY U 3.6
SYMBOLS AND UNITS 3.7 INTERNAL ENERGY AND HEAT CAPACITY 3.7 3.4 ENTHALPY
H 3.8 ENTHALPY H AS A STATE FUNCTION 3.8 SYMBOLS AND UNITS 3.9 ENTHALPY
AND HEAT CAPACITY 3.9 3.5 IDEAL GAS 3.10 JOULE S LAW 3.11 3.6 ISOTHERMAL
CHANGE OF STATE 3.12 3.7 ADIABATIC CHANGE OF STATE 3.13 ADIABATIC
EQUATIONS 3.14 COURSE OF ADIABATS 3.15 3.8 THERMOCHEMICAL EQUATION 3.16
REACTION ENTHALPY 3.16 REACTION EQUATIONS 3.16 REACTION HEAT 3.17
THERMOCHEMICAL CALCULATION 3.17 CALCULATION RULES 3.18 3.9 STANDARD
ENTHALPY 3.19 PRESSURE-DEPENDENCE OF ENTHALPY 3.20
TEMPERATURE-DEPENDENCE OF ENTHALPY 3.20 3.10 REACTION ENTHALPY 3.21
CALCULATION PROCEDURE 3.22 LIST OF KEY IDEAS 3.23 EXAMPLES 3.24 3.1:
TEMPERATURE RISE IN HARDENING PLASTER OF PARIS 3.24 3.2: COMPUTERIZED
CALCULATION OF THE EVAPORATION HEAT OF WATER 3.26 3.3: HEAT DEVELOPMENT
AND HYDRATION OF CLINKER MINERALS 3.27 3.4: FIRE RESISTANCE OF PLASTER
3.28 3.5: MEASUREMENT OF HYDRATION HEAT WITH A SOLUTION CALORIMETER 3.30
3.6: COMPUTERIZED ENTHALPY CALCULATION 3.32 EXERCISES 3.33 LITERATURE
3.38 4. SECOND LAW 4.1 INTRODUCTION 4.2 SPONTANEOU CONTENTS CALCULATION
PROCEDURE 4.16 4.9 CHEMICAL EQUILIBRIUM 4.17 THE CONSTANT GROWTH OF
ENTROPY 4.17 THERMODYNAMIC EQUILIBRIUM CONDITION 4.18 4.10 THE CONCEPT
OF ENTROPY 4.19 MICRO STATES 4.19 THE PROBABLE DISORDER 4.20 THE
BOLTZMANN RELATION 4.20 CAN ENTROPY DECREASE? 4.21 PHASE TRANSFORMATION
AND DISORDER 4.21 LIST OF KEY IDEAS 4.22 EXAMPLES 4.24 4.1:
TRANSFORMATION OF TIN AT A LOW TEMPERATURE - TIN PEST 4.24 4.2:
DEHYDRATION OF GYPSUM WHEN GRINDING PORTLAND CEMENT 4.26 4.3:
COMPUTERIZED CALCULATION OF THE PARTIAL PRESSURE OF SAT. WATER VAP. 4.27
4.4: DIFFERENTIAL THERMAL ANALYSIS OF CEMENT PASTE - DTA 4.29 4.5:
VAPOUR PRESSURE OF MERCURY - OCCUPATIONAL EXPOSURE LIMIT 4.31 4.6:
CONTROL OF RELATIVE HUMIDITY RH BY SALT HYDRATES 4.32 EXERCISES 4.34
LITERATURE 4.37 5. CALCULATIONS OF EQUILIBRIUM 5.1 THE GIBBS FREE ENERGY
5.2 DEFINITION OF FREE ENERGY G 5.2 THE G FUNCTION DIFFERENTIAL 5.2
SPONTANEOUS PROCESSES 5.3 FREE REACTION ENERGY 5.4 5.2 THE CLAPEYRON
EQUATION 5.5 PHASE EQUILIBRIUM IN SINGLE-COMPONENT SYSTEM 5.6
INTEGRATION OF THE CLAPEYRON EQUATION 5.6 5.3 THE CLAUSIUS-CLAPEYRON
EQUATION 5.7 INTEGRATION OF THE CLAUSIUS-CLAPEYRON EQUATION 5.8 5.4
ACTIVITY 5.9 5. CONTENTS 6. ELECTROCHEMISTRY 6.1 ELECTRIC CURRENT AND
CHARGE 6.2 ELECTRIC CURRENT 6.2 ELECTRIC CHARGE 6.3 THE FARADAY CONSTANT
6.3 6.2 ELECTRIC POTENTIAL 6.4 FIELD STRENGTH 6.4 ELECTRIC POTENTIAL 6.4
ELECTRIC WORK 6.5 6.3 ELECTRIC CONDUCTIVITY 6.6 CONDUCTIVITY 6.6
CONDUCTANCE 6.7 6.4 ELECTROCHEMICAL REACTION 6.8 ELECTROCHEMICAL CELL
6.8 REDOX REACTION 6.9 ELECTROCHEMICAL PROCESS 6.9 6.5 ELECTROCHEMICAL
POTENTIAL 6.11 THE ELECTROCHEMICAL POTENTIAL 6.11 DANIELI CELL 6.12 6.6
THE NERNST EQUATION 6.13 ELECTRIC WORK CONTRIBUTION 6.13 THE NERNST
EQUATION 6.13 6.7 TEMPERATURE DEPENDENCE OF THE POTENTIAL 6.15 6.8
NOTATION RULES 6.16 CELL DIAGRAM 6.16 CELL REACTION 6.17 6.9 STANDARD
POTENTIAL 6.19 STANDARD HYDROGEN ELECTRODE 6.19 POTENTIAL OF SINGLE
ELECTRODE 6.19 6.10 PASSIVATION 6.21 ANODE REACTION WITH PASSIVATION
6.21 REINFORCEMENT CORROSION 6.22 LIST OF KEY IDEAS 6.23 EXAMPLES 6.25
6.1: OXIDATION OF METALS IN WATER - PH DEPENDENCE 6.25 6.2: CALCULATING
AND PRODUCING A POURBAIX DIAGRAM FOR IRON FE 6.27 6.3: MEASUREMENT OF PH
WITH GLASS ELECTRODE MEMBRANE POTENTIAL 6.29 6.4 CONTENTS APPROXIMATE
UNCERTAINTY CALCULATION A.4 EXAMPLE: THERMODYNAMIC CALCULATION OF THE
ION PRODUCT AND PH OF WATER A.6 LITERATURE A.8 2. DIMENSIONAL ANALYSIS
A.8 FIELDS OF APPLICATION A.8 LIMITATIONS A.8 PHYSICAL DIMENSION A.9
TYPES OF DIMENSION A.9 DIMENSIONAL-HOMOGENEOUS EQUATION A. 10 THE
BUCKINGHAM PI TEOREM A. 10 DETERMINATION OF PI PARAMETERS A. 11
REWRITING OF PI PARAMETERS A.12 SYNTHETIC BASE UNITS A. 13 CALCULATION
EXAMPLES A.14 EXAMPLES: NON-STEADY CONVECTIVE COOLING OF CONCRETE
CROSS-SECTIONS A. 14 CAPILLARY COHESION IN PARTICLE SYSTEMS A. 17
LITERATURE A.19 3. NEWTON-RAPHSON ITERATION A.19 EXAMPLE: CALCULATION OF
AMOUNT OF SUBSTANCE, THE VAN DER WAALS EQUATION A.20 LITERATURE A.20 4.
CRAMER S FORMULA A.20 EXAMPLE: SOLUTION OF LINEAR EQUATION SYSTEM A.22
LITERATURE A.22 5. LINEAR REGRESSION A.22 EXAMPLE: INFLUENCE OF THE
FORCE-FIBRE ANGLE ON THE COMPRESSIVE STRENGTH OF WOOD A.24 LITERATURE
A.25 6. EXACT DIFFERENTIAL A.26 EXAMPLE: CHANGE OF STATE, IDEAL GAS A.27
LITERATURE A.28 7. GRADIENT FIELD A.28 EXAMPLE: CALCULATION OF GRADIENT
AND CURVE INTEGRAL A.30 LITERATUR PAGE XI CONTENTS DEBYE-HUECKEFS LAW
A.38 EXAMPLE: ION STRENGTH AND ACTIVITY COEFFICIENT IN SALINE SOLUTION
A.39 LITERATURE A.39 APPENDIX B TABLES PHYSICAL CONSTANTS B.2 ELEMENTS
B.2 VAN DER WAALS CONSTANTS B.5 THERMOCHEMICAL DATA (1) (INORGANIC
COMPOUNDS) B.6 THERMOCHEMICAL DATA (2) (CEMENT-CHEMICAL COMPOUNDS) B.18
THERMOCHEMICAL DATA (3) (ORGANIC COMPOUNDS) B.21 MOLAR HEAT CAPACITY
B.22 SURFACE TENSION B.25 ELECTROCHEMICAL STANDARD POTENTIAL B.26 WATER
AND WATER VAPOUR B.26 APPENDIX C SOLUTIONS TO CHECK-UP QUESTIONS AND
EXERCISES SOLUTIONS TO CHECK-UP QUESTIONS AND EXERCISES C.2 1. SYSTEMS
OF MATTER C.2 2. THERMODYNAMIC CONCEPTS C.3 3. FIRST LAW C.5 4. SECOND
LAW C.6 5. CALCULATIONS OF EQUILIBRIUM C.8 6. ELECTROCHEMISTRY C.9
APPENDIX D SUBJECT INDEX SUBJECT INDEX D.I APPENDIX E ACKNOWLEDGEMENTS
FOR ILLUSTRATIONS ACKNOWLEDGEMENTS FOR ILLUSTRATIONS E.I
|
any_adam_object | 1 |
author | Freiesleben Hansen, Per |
author_facet | Freiesleben Hansen, Per |
author_role | aut |
author_sort | Freiesleben Hansen, Per |
author_variant | h p f hp hpf |
building | Verbundindex |
bvnumber | BV035847057 |
classification_rvk | ZI 4000 |
ctrlnum | (OCoLC)466117853 (DE-599)DNB99439425X |
dewey-full | 620.1129 624.18 |
dewey-hundreds | 600 - Technology (Applied sciences) |
dewey-ones | 620 - Engineering and allied operations 624 - Civil engineering |
dewey-raw | 620.1129 624.18 |
dewey-search | 620.1129 624.18 |
dewey-sort | 3620.1129 |
dewey-tens | 620 - Engineering and allied operations |
discipline | Maschinenbau / Maschinenwesen Bauingenieurwesen |
format | Book |
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id | DE-604.BV035847057 |
illustrated | Illustrated |
indexdate | 2024-07-09T22:06:01Z |
institution | BVB |
isbn | 9783540708971 9783540708988 |
language | English Danish |
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oclc_num | 466117853 |
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owner | DE-92 DE-83 |
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physical | [250] S. in getr. Zählung Ill., graph. Darst. 29 cm |
publishDate | 2009 |
publishDateSearch | 2009 |
publishDateSort | 2009 |
publisher | Springer |
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spelling | Freiesleben Hansen, Per Verfasser aut Materialefysik for bygningsingeniører The science of construction materials Per Freiesleben Hansen. Ed. by Ole Mejlhede Jensen Berlin ; Heidelberg Springer 2009 [250] S. in getr. Zählung Ill., graph. Darst. 29 cm txt rdacontent n rdamedia nc rdacarrier Aus dem Dän. übers. Physikalisch-chemische Eigenschaft (DE-588)4369521-8 gnd rswk-swf Baustoff (DE-588)4004945-0 gnd rswk-swf Baustoff (DE-588)4004945-0 s Physikalisch-chemische Eigenschaft (DE-588)4369521-8 s DE-604 DNB Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=018705226&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Freiesleben Hansen, Per The science of construction materials Physikalisch-chemische Eigenschaft (DE-588)4369521-8 gnd Baustoff (DE-588)4004945-0 gnd |
subject_GND | (DE-588)4369521-8 (DE-588)4004945-0 |
title | The science of construction materials |
title_alt | Materialefysik for bygningsingeniører |
title_auth | The science of construction materials |
title_exact_search | The science of construction materials |
title_full | The science of construction materials Per Freiesleben Hansen. Ed. by Ole Mejlhede Jensen |
title_fullStr | The science of construction materials Per Freiesleben Hansen. Ed. by Ole Mejlhede Jensen |
title_full_unstemmed | The science of construction materials Per Freiesleben Hansen. Ed. by Ole Mejlhede Jensen |
title_short | The science of construction materials |
title_sort | the science of construction materials |
topic | Physikalisch-chemische Eigenschaft (DE-588)4369521-8 gnd Baustoff (DE-588)4004945-0 gnd |
topic_facet | Physikalisch-chemische Eigenschaft Baustoff |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=018705226&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
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