The economic growth engine: how energy and work drive material prosperity
This book addresses the topic of economic growth analysis from the angle of energy and material flows. It not only contains a variety of empirical indicators statistical analyses and insights, but also offers a pluralistic view on theorizing about economic growth and technological change.
Gespeichert in:
Hauptverfasser: | , |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Cheltenham [u.a.]
Elgar
2009
|
Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Zusammenfassung: | This book addresses the topic of economic growth analysis from the angle of energy and material flows. It not only contains a variety of empirical indicators statistical analyses and insights, but also offers a pluralistic view on theorizing about economic growth and technological change. |
Beschreibung: | "Published in association with the International Institute for Applied Systems Analysis (IIASA)." Includes bibliographical references (p. 353-392) and index |
Beschreibung: | XXI, 411 S. graph. Darst. 24 cm |
ISBN: | 9781848441828 9781849804356 1848441827 |
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650 | 4 | |a Power resources / Economic aspects | |
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650 | 7 | |a Thermodynamik |2 stw | |
650 | 7 | |a USA |2 stw | |
650 | 7 | |a Wirtschaftswachstum |2 stw | |
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650 | 4 | |a Economic development | |
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650 | 4 | |a Power resources |x Technological innovations | |
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Datensatz im Suchindex
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adam_text | CONTENTS LIST OF FIGURES VI LIST OF TABLES XI PREFACE AND
ACKNOWLEDGMENTS XIII INTRODUCTION XV 1. BACKGROUND 1 2. TECHNICAL
PROGRESS 30 3. INDUSTRIAL METABOLISM: MASS/ENERGY FLOWS 62 4. EXERGY
CONVERSION TO USEFUL WORK 89 5. ECONOMIC GROWTH THEORIES 134 6. THE
PRODUCTION FUNCTION APPROACH 175 7. NUMERICAL RESULTS FOR THE US AND
JAPAN 197 8. GROWTH FORECASTING 222 9. ECONOMIC GROWTH AND DEVELOPMENT:
TOWARDS A CATCH-UP MODEL (SIMPLIFIED REXSF MODEL) 252 10. CONCLUSIONS,
IMPLICATIONS AND CAVEATS 295 APPENDICES 311 REFERENCES 353 INDEX 393
FIGURES 1.1 SIMPLE SAL TOR CYCLE 9 3.1 THE MATERIALS LIFE CYCLE 66 3.2
US ECONOMIC SYSTEM AS A WHOLE FROM A MASS (LOW PERSPECTIVE (1993 IN MMT)
68 3.3A TOTAL MAJOR INPUTS TO GDP (FUELS, METALS, CONSTRUCTION,
CHEMICALS AND BIOMASS): IN TERMS OF MASS (USA, 1900 2004) 73 3.3B TOTAL
MAJOR INPUTS TO GDP (FUELS, METALS, CONSTRUCTION, CHEMICALS AND
BIOMASS): IN TERMS OF EXERGY (USA, 1900 2004) 73 3.4A MAJOR INPUTS OF
FOSSIL FUELS (COAL, PETROLEUM, NATURAL GAS AND NGL): MASS/CAPITA AND
EXERGY/EAPILA (USA, 1900 2004) 74 3.4B MAJOR INPUTS OF CHEMICALS TO GDP:
MASS/CAPITA AND EXE RGY/EAPITA (USA, 1900 2004) 74 3.4C MAJOR INPUTS OF
CONSTRUCTION TO GDP: MASS/CAPITA AND EXERGY/CAPITA (USA, 1900 2004) 15
3.4D MAJOR INPUTS OF METALS TO GDP: MASS/CAPITA AND EXERGY/ CAPITA (USA,
1900 2004) 75 3.4E MAJOR INPUTS OF BIOMASS TO GDP; MASS/CAPITA AND
EXERGY/ CAPITA (USA, 1900 2004) 76 3,4F TOTAL MAJOR INPUTS TO GDP
(FUELS, METALS, CONSTRUCTION, CHEMICALS AND BIOMASS): MASS/CAPITA AND
EXERGY/CAPILA (USA, 1900 2004) 76 3.5A MAJOR INPUTS TO GDP OF FOSSIL
FUEL: MASS/GDP AND EXERGY/ GDP (USA, 1900 2004) SI 3.5B MAJOR INPUTS TO
GDP OF CHEMICALS, MAJOR ORGANIC AND INORGANIC: MASS/GDP AND EXERGY/GDP
(USA, 1900 2004) 81 3.5C MAJOR INPUTS TO GDP OF CONSTRUCTION MATERIALS:
MASS/ GDP AND EXERGY/GDP (USA, 1900 2004) K2 3.5D MAJOR INPUTS TO GDP OF
METALS: MASS/GDP AND EXERGY/ GDP (USA, 1900 2004) S2 3.5E MAJOR INPUTS
TO GDP OF BIOMASS: MASS/GDI* AND EXCRGY/ GDP (USA, 1900 2004) K3 3.5F
TOTAL MAJOR INPUTS TO GDP (FUELS, METALS, CONSTRUCTION, CHEMICALS AND
BIOMASS): MASS/GDP AND EXERGY/GDP (USA, 1900-2004) VI VII 3.6 FIXCRGY
INTENSITIES: FOSSIL FUELS AND TOTAL (USA. 1 1 00 2005) 84 3.7A INPUTS
OFEXERGY BY SOURCE (USA, 1900 2004) 85 3.7B INPUTS OF EXERGY BY SOURCE
(JAPAN, I900 2004) 86 3. (USA, 1900 2004) 3.8B LLXERGY INPUT SOURCES AS
PERCENT OF TOTAL EXERGY INPUT (JAPAN,1900 2004) 87 4.1A PERCENT OF COAL
EXEI GY CONSUMED BY TYPE OF END-USE (USA, 1900 2004) 93 4.1B PERCENT OF
COAL EXERGY CONSUMED BY TYPE OF END-USE (JAPAN, 1900 2004) 93 4,2A
PERCENT OF PETROLEUM AND N( IF, EXERGY CONSUMED BY TYPE OF END-USE (USA,
1900 2004) 94 4.2B PERCENT OF PETROLEUM AND N( IF. EXERGY CONSUMED BY
TYPE OF END-USE (JAPAN, 1900 2004) 94 4.3A PERCENT OF NATURAL GAS EXERGY
CONSUMED BY TYPE OFEIUI-U.SE (USA, 1900 2004) 9S 4.3B PERCENT OF NATURAL
GAS EXERGY CONSUMED BY TYPE OF END-USE (JAPAN, 1900 2004) 95 4.4A
PERCENT OF TOTAL FOSSIL FUEL EXERGY CONSUMED BY TYPE OF END-USE(USA, I
WO 2004) 96 4.41) PERCENT OF TOTAL FOSSIL FUEL EXERGY CONSUMED BY TYPE
OF END-USE (.LAPUN, 1900 2004) 96 4.5 DEVELOPMENTS IN PETROLEUM
CRACKING FRACTIONS (USA, I9|() 72) 99 4.6 PETROLEUM UTILIZATION
ELLIEIENCY: PERCENT USED AS FUEL FOR PRIME MOVERS (USA, 1900 82) [00 4.7
PERCENT OF CRUDE OIL CRACKED TO PRODUCE GASOLINE (USA, 1910 72) 100 4.FT
I A RM MECHANIZATION: SUBSLITULION OF MACHINERY FOR ANIMALS 101 4.9
PERFORMANCE OF STEAM ENGINES: FUEL CONSUMPTION AND THERMAL ELLICIENEY
102 44 0 SOURCES OF MECHANICAL DRIVE IN MANUFACTURING ESTABLISHMENTS
(USA, I860 1939) 103 44 I SUBSTITUTION OFDIESCL FOR STEAM LOCOMOTIVES IN
THE USA, 1935 57 105 4.12 INDEX OF TOTAL ELECTRICITY PRODUCTION BY
ELECTRIC UTILITIES (1902 -~ I) AND AVERAGE ENERGY CONVERSION ELLICIENEY
(USA, 1902 98) 106 44 3A HOUSEHOLD ELECTRIFICATION (I) (PERCENT OF
HOUSEHOLDS) 107 4.13B I LOUSEHOLD ELECTRIFICATION (II) (PERCENT OF
HOUSEHOLDS) 107 VIII THE ECONOMIC GROWTH ENGINE 4.14 COMPRESSION RATIO
IN AUTO ENGINES (USA, 1926 75) 108 4.15 INTERNAL COMBUSTION ENGINE
EFFICIENCY 109 4.16 BREAKDOWN OF ENERGY REQUIREMENTS FOR A TYPICAL
MID-SIZE AUTOMOBILE 110 4.17 EXERGY CONSUMPTION BY INDUSTRIAL PROCESSES
(USA, 1880-2000) 116 4.18 SECONDARY ELECTRICAL WORK BY FUNCTION AS
PERCENTAGE OF TOTAL SECONDARY ELECTRICAL WORK (USA, 1902-2000) 122 4.19
EFFICIENCIES IN PERFORMANCE: SECONDARY WORK FROM ELECTRICITY BY FUNCTION
(USA, 1900-2000) 123 4.20 VEHICLE FUEL RATES AND ENERGY CONVERSION
EFFICIENCY 124 4.21A ENERGY (EXERGY) CONVERSION EFFICIENCIES (USA, 1900
2004) 128 4.21B ENERGY (EXERGY) CONVERSION EFFICIENCIES (JAPAN,
1900-2004) 128 4.22 USEFUL WORK (U) FOR THE USA AND JAPAN, 1900-2004 129
4.23 AGGREGATE EFFICIENCIES FOR THE USA AND JAPAN, 1900-2004 129 4.24A
PRIMARY WORK AND PRIMARY WORK/GDP RATIO (USA, 1900-2005) 130 4.24B
PRIMARY WORK AND PRIMARY WORK/GDP RATIO (JAPAN, 1900-2005) 130 5.1
PRODUCTION-CONSUMPTION SYSTEMS 138 5.2 COST OF POWER PER HOUR AS
MULTIPLE OF HOURLY WAGE 148 6.1 SUBSTITUTABILITY IN AGGREGATE PRODUCTION
FUNCTIONS 180 6.2 THE PRODUCTION FRONTIER AS A TURBULENT CLOUD 184 6.3A
GDP AND FACTORS OF PRODUCTION (USA, 1900-2005) 188 6.3B GDP AND FACTORS
OF PRODUCTION (JAPAN, 1900-2005) 188 6.4 US GDP, 1900-2000 (ACTUAL
VERSUS THREE-FACTOR COBB-DOUGLAS FUNCTION 189 6.5 TECHNOLOGICAL PROGRESS
FUNCTION AND SOLOW RESIDUAL (USA, 1900-2005) 189 7.1 EXERGY TO GDP RATIO
(USA AND JAPAN, 1900 2005, EXCLUDING 1941-7) 198 7.2 USEFUL WORK (U) TO
GDP RATIO (USA AND JAPAN, 1900-2005, EXCLUDING 1941-7) 199 7.3 EXERGY TO
WORK EFFICIENCIES (F) (USA AND JAPAN, 1900-2005, EXCLUDING 1941 -7) 200
7.4A EMPIRICAL AND ESTIMATED GDP (USA, 1900-2005, EXCLUDING 1941-8) 206
7.4B EMPIRICAL AND ESTIMATED GDP (JAPAN, 1900-2005, EXCLUDING 1941-8)
207 7.5A COBB-DOUGLAS RESIDUALS (USA AND JAPAN, 1900-2005, EXCLUDING
1941-8) 208 7.5B LINEX RESIDUALS (USA AND JAPAN, 1900 2005, EXCLUDING
1941 H) 20K 7.6A PARAMETERS OF THE LINEX FUNCTION (USA, 1900 2005) 209
7.6B PARAMETERS O THE LINUX FUNCTION (JAPAN, 1900 2005) 209 7.7A
ELASTICITIES OF FACTORS OF PRODUCTION LINEX FUNCTION (USA, 1900 2005,
EXCLUDING 1941 7) 212 7.7B ELASTICITIES OF FACTORS OF PRODUCTION LIN EX
FUNCTION (JAPAN, 1900 2005, EXCLUDING I 941 7) 2 1 2 5.1 SIMULATED LABOR
HIRE AND LIRE RATE (USA, 1900 2000) 238 8.2 SIMULATED AND EMPIRICAL
LABOR (USA, 1900 2000) 239 8.3 SIMULATED AND EMPIRICAL CAPITAL (USA,
1900 2000} 240 8.4 ENERGY INTENSITY OF CAPITAL (USA, 1900 2000) 241 8.5
ENERGY INTENSITY OF GDP (USA, 1900 2000) 2 12 8.6 LOGISTIC AND
BI-LOGISTIE S-CURVE ILLS TO THE (REND OF AGGREGATE TECHNICAL EFFICIENCY
IN THE USA, 1900 2000 244 8.7 RATE OF CHANGE OF AGGREGATE TECLMICAL
ELLICIENCY OF PRIMARY EXERGY CONVERSION (USA, 1900 1998) 245 8.8
SENSITIVITY TEST RESULTS VARYING THE FRACTIONAL DECAY RATE OF OUTPUT
EXERGY INTENSITY 247 8.9 SENSITIVITY TEST RESULTS VARYING BOTH THE
FRACTIONAL RALE O OUTPUT EXERGY INTENSITY AND SELECTED PARAMETERS OF
THE BI-LOGISTIC CURVE CONTROLLING THE RATE OF ELLICIENCY GROWTH 24H 8.10
HISTORICAL (1950 2000) AND FORECAST (2000 50) GDP FOR ALTERNATE RATES OF
DECLINE OF THE ENERGY INTENSITY OF OUTPUT, USA 249 8.1 1 HISTORICAL
(1950 2000) AND FORECAST (2000 50} TECHNICAL EFFICIENCY OF ENERGY
CONVERSION FOR ALTERNATE RATES OF TECHNICAL ELLICIENCY GROWTH, USA 249
8.12 HISTORICAL (1950 2000) AND FORECAST (2000 50) GDI 1 FOR ALTERNATE
RATES OF TECHNICAL ELLICIENCY GROWTH, USA 250 9.1 PLOT OF GDI* GAP
AGAINST ENERGY POLICY GAP, ALL COUNTRIES, ALL YEARS 2( 7 9.2 FITTED
RESULTS FROM REGRESSION 4 (TABLE 9.3) 271 9.3A DEVELOPMENT TRACKS OF
COUNTRIES IN GROUP 2 273 9.3B DEVELOPMENT TRACKS OF COUNTRIES IN GROUP 3
273 9,3C DEVELOPMENT TRACKS OF COUNTRIES IN GROUP 4 274 9.3D DEVELOPMENT
TRACKS OF COUNTRIES IN GROUP H 274 9.4A WEIGHTED REGRESSIONS FOR GROUP 4
(OIL FACTOR --- 0.10) 27K 9.4B WEIGHTED REGRESSIONS FOR GROUP 8 (OIL
FACTOR ~ 0.10) 27 H 9.5A WEIGHTED REGRESSIONS LOR GROUP 4 (OIL FACTOR »
0.1 5) 279 9.5B WEIGHTED REGRESSIONS FOR GROUP 8 (OIL FACTOR = 0.1 5)
279 9.6A DEVELOPMENT TRACKS OF GROUP A COUNTRIES 281 X THE ECONOMIC
GROWTH ENGINE 9.6B DEVELOPMENT TRACKS OF GROUP C COUNTRIES 281 9,7A
DEVELOPMENT TRACKS OF CATCH-UP COUNTRIES (OIL FACTOR = 0.00) 282 9.7B
DEVELOPMENT TRACKS OF CATCH-UP COUNTRIES (OIL FACTOR =0.10) 282 9.7C
DEVELOPMENT TRACKS OF CATCH-UP COUNTRIES (OIL FACTOR =0.15) 283 9.16.
DEVELOPMENT TRACKS OF CATCH-UP COUNTRIES (OIL FACTOR = 0.20) 283 9.7E
DEVELOPMENT TRACKS OF CATCH-UP COUNTRIES (OIL FACTOR = 0.25) 284 9.8A
SIMULATION RESULTS FOR CATCH-UP COUNTRIES (OIL = 0.00) 286 9.8B
SIMULATION RESULTS FOR CATCH-UP COUNTRIES (OIL = 0.10) 286 9.8C
SIMULATION RESULTS FOR CATCH-UP COUNTRIES (OIL * 0.15) 287 9.8D
SIMULATION RESULTS FOR CATCH-UP COUNTRIES (OIL = 0.20) 287 9,8E
SIMULATION RESULTS FOR CATCH-UP COUNTRIES (OIL = 0.25) 288 9,9A CHANGES
OF CATCH-UP ELASTICITY OF GDP WITH RESPECT TO EP FOR TWO MODELS USING
WEIGHTED REGRESSION RESULTS 289 9.9B CHANGES OF CATCH-UP ELASTICITY OF
EP WITH RESPECT TO GDP FOR TWO MODELS USING WEIGHTED REGRESSION RESULTS
290 9.10 DEVELOPMENT TRAJECTORY (GDP VERSUS EP) OF THE USA FROM
1960-2001 291 9.11 ANNUAL PERCENTAGE CHANGE IN US GDP AND EP INDICES,
1960-2001 292 C. 1 RELATIONSHIP BETWEEN GDP AND ELECTRIFICATION FOR
1997-2001 345 C.2 RELATIONSHIP BETWEEN GDP AND URBANIZATION FOR
1997-2001 345 C.3A PROCESSES OF URBANIZATION AND ELECTRIFICATION (FRANCE
AND JAPAN, 1960-2001) 346 C3B PROCESSES OF URBANIZATION AND
ELECTRIFICATION (BRAZIL AND CHINA, 1971-2001) 346 C.3C PROCESSES OF
URBANIZATION AND ELECTRIFICATION (INDIA AND INDONESIA, 1971 -2001) 347
C.3D PROCESSES OF URBANIZATION AND ELECTRIFICATION (SWEDEN AND UK,
1960-2001) 347 C.3E PROCESSES OF URBANIZATION AND ELECTRIFICATION (USA
1960-2001) 348 TABLES 1.1 EXAMPLES OF PRODUCTIVITY IMPROVEMENTS FROM
EXPERIENCE 13 3.1 TYPICAL CHEMICAL EXERGY CONTENT OF SOME FUELS 78 4.1
AVERAGE EXERGY EFFICIENCY OF PRIMARY WORK (PERCENT) 127 7.1 STATISTICS
OF MODEL FIT 210 7.2 COEFFICIENTS OF PRODUCTION FUNCTIONS 211 7.3
CAUSALITY TESTS 215 8.1 OPTIMAL LOGISTIC AND BI-LOGISTIC MODEL FOR
TECHNICAL EFFICIENCY/(USA, 1900-98) 244 8.2 FORECAST GDP GROWTH RATES
FOR THREE ALTERNATIVE TECHNOLOGY SCENARIOS 246 8.3 SENSITIVITY TEST
GAUSSIAN PROBABILITY DISTRIBUTION PARAMETERS 246 9.1 DUMMY VARIABLES 268
9.2 RESULTS OF LINEAR REGRESSIONS 269 9.3 DETAILED RESULTS OF REGRESSION
4 270 9.4 THE 12 GROUPS 272 9.5A REGRESSION RESULTS WITH DIFFERENT OIL
COEFFICIENTS FOR GROUPS 4 AND 8 (UNWEIGHTED) 276 9.5B REGRESSION RESULTS
WITH DIFFERENT OIL COEFFICIENTS FOR GROUPS 4 AND 8 (GDP WEIGHTED) 277
9.6 CATCH-UP COUNTRIES 280 9.7A REGRESSION RESULTS WITH DIFFERENT
COEFFICIENTS FOR CATCH-UP COUNTRIES ONLY (UNWEIGHTED) 285 9.7B
REGRESSION RESULTS WITH DIFFERENT COEFFICIENTS FOR CATCH-UP COUNTRIES
ONLY (GDP WEIGHTED) 285 B.I DERIVATION OF FOOD/FEED BIOMASS CONSUMPTION
314 B.2A DATA SOURCES FOR US ECONOMIC DATA 318 B.2B DATA DESCRIPTION AND
SOURCES FOR US COAL 319 B.2C DATA DESCRIPTION AND SOURCES FOR US
PETROLEUM 322 B.2D DATA DESCRIPTION AND SOURCES FOR US NATURAL GAS 324
B.2E DATA DESCRIPTION AND SOURCES FOR US FUEL WOOD AND BIOMASS 327 B.3A
DATA SOURCES FOR JAPANESE ECONOMIC DATA 329 B.3B DESCRIPTION AND SOURCES
OF JAPANESE COAL DATA 330 B.3C DESCRIPTION AND SOURCES OF JAPANESE
PETROLEUM DATA 331 XI XII THE ECONOMIC GROWTH ENGINE B.3D DESCRIPTION
AND SOURCES OF JAPANESE NATURAL GAS DATA, 1953 TO PRESENT 333 B.3E
DESCRIPTION AND SOURCES OF JAPANESE RENEWABLES AND BIOMASS DATA 333 B.4
BASIC US DATA, 1900-2006 334 B.5 BASIC JAPANESE DATA, 1900-2005 339 C.I
CORRELATIONS OF ELECTRIFICATION (E) AND URBANIZATION (U) FOR NINE
COUNTRIES 348 C.2 GROUP 4 AND GROUP 8 349 C.3 FULL COUNTRY LIST 350
|
any_adam_object | 1 |
author | Ayres, Robert U. 1932- Warr, Benjamin |
author_GND | (DE-588)171956370 (DE-588)171890469 |
author_facet | Ayres, Robert U. 1932- Warr, Benjamin |
author_role | aut aut |
author_sort | Ayres, Robert U. 1932- |
author_variant | r u a ru rua b w bw |
building | Verbundindex |
bvnumber | BV035383541 |
callnumber-first | H - Social Science |
callnumber-label | HD75 |
callnumber-raw | HD75 |
callnumber-search | HD75 |
callnumber-sort | HD 275 |
callnumber-subject | HD - Industries, Land Use, Labor |
classification_rvk | QC 340 |
ctrlnum | (OCoLC)271774716 (DE-599)BVBBV035383541 |
dewey-full | 338.9 |
dewey-hundreds | 300 - Social sciences |
dewey-ones | 338 - Production |
dewey-raw | 338.9 |
dewey-search | 338.9 |
dewey-sort | 3338.9 |
dewey-tens | 330 - Economics |
discipline | Wirtschaftswissenschaften |
format | Book |
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id | DE-604.BV035383541 |
illustrated | Illustrated |
indexdate | 2024-07-09T21:32:34Z |
institution | BVB |
isbn | 9781848441828 9781849804356 1848441827 |
language | English |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-017187769 |
oclc_num | 271774716 |
open_access_boolean | |
owner | DE-12 DE-11 DE-384 |
owner_facet | DE-12 DE-11 DE-384 |
physical | XXI, 411 S. graph. Darst. 24 cm |
publishDate | 2009 |
publishDateSearch | 2009 |
publishDateSort | 2009 |
publisher | Elgar |
record_format | marc |
spelling | Ayres, Robert U. 1932- Verfasser (DE-588)171956370 aut The economic growth engine how energy and work drive material prosperity Robert U. Ayers and Benjamin Warr Cheltenham [u.a.] Elgar 2009 XXI, 411 S. graph. Darst. 24 cm txt rdacontent n rdamedia nc rdacarrier "Published in association with the International Institute for Applied Systems Analysis (IIASA)." Includes bibliographical references (p. 353-392) and index This book addresses the topic of economic growth analysis from the angle of energy and material flows. It not only contains a variety of empirical indicators statistical analyses and insights, but also offers a pluralistic view on theorizing about economic growth and technological change. Economic development Power resources / Economic aspects Energie stw Neue Wachstumstheorie stw Prognose stw Prognoseverfahren stw Technischer Fortschritt stw Thermodynamik stw USA stw Wirtschaftswachstum stw Wirtschaftsentwicklung Power resources Economic aspects Power resources Technological innovations Technological innovations Economic aspects Thermodynamics Economic aspects Wachstumstheorie (DE-588)4128160-3 gnd rswk-swf Thermodynamik (DE-588)4059827-5 gnd rswk-swf Wirtschaftswachstum (DE-588)4066527-6 gnd rswk-swf Energie (DE-588)4014692-3 gnd rswk-swf Technischer Fortschritt (DE-588)4059252-2 gnd rswk-swf Wachstumstheorie (DE-588)4128160-3 s Thermodynamik (DE-588)4059827-5 s Technischer Fortschritt (DE-588)4059252-2 s 1\p DE-604 Wirtschaftswachstum (DE-588)4066527-6 s Energie (DE-588)4014692-3 s 2\p DE-604 Warr, Benjamin Verfasser (DE-588)171890469 aut SWB Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=017187769&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 | Ayres, Robert U. 1932- Warr, Benjamin The economic growth engine how energy and work drive material prosperity Economic development Power resources / Economic aspects Energie stw Neue Wachstumstheorie stw Prognose stw Prognoseverfahren stw Technischer Fortschritt stw Thermodynamik stw USA stw Wirtschaftswachstum stw Wirtschaftsentwicklung Power resources Economic aspects Power resources Technological innovations Technological innovations Economic aspects Thermodynamics Economic aspects Wachstumstheorie (DE-588)4128160-3 gnd Thermodynamik (DE-588)4059827-5 gnd Wirtschaftswachstum (DE-588)4066527-6 gnd Energie (DE-588)4014692-3 gnd Technischer Fortschritt (DE-588)4059252-2 gnd |
subject_GND | (DE-588)4128160-3 (DE-588)4059827-5 (DE-588)4066527-6 (DE-588)4014692-3 (DE-588)4059252-2 |
title | The economic growth engine how energy and work drive material prosperity |
title_auth | The economic growth engine how energy and work drive material prosperity |
title_exact_search | The economic growth engine how energy and work drive material prosperity |
title_full | The economic growth engine how energy and work drive material prosperity Robert U. Ayers and Benjamin Warr |
title_fullStr | The economic growth engine how energy and work drive material prosperity Robert U. Ayers and Benjamin Warr |
title_full_unstemmed | The economic growth engine how energy and work drive material prosperity Robert U. Ayers and Benjamin Warr |
title_short | The economic growth engine |
title_sort | the economic growth engine how energy and work drive material prosperity |
title_sub | how energy and work drive material prosperity |
topic | Economic development Power resources / Economic aspects Energie stw Neue Wachstumstheorie stw Prognose stw Prognoseverfahren stw Technischer Fortschritt stw Thermodynamik stw USA stw Wirtschaftswachstum stw Wirtschaftsentwicklung Power resources Economic aspects Power resources Technological innovations Technological innovations Economic aspects Thermodynamics Economic aspects Wachstumstheorie (DE-588)4128160-3 gnd Thermodynamik (DE-588)4059827-5 gnd Wirtschaftswachstum (DE-588)4066527-6 gnd Energie (DE-588)4014692-3 gnd Technischer Fortschritt (DE-588)4059252-2 gnd |
topic_facet | Economic development Power resources / Economic aspects Energie Neue Wachstumstheorie Prognose Prognoseverfahren Technischer Fortschritt Thermodynamik USA Wirtschaftswachstum Wirtschaftsentwicklung Power resources Economic aspects Power resources Technological innovations Technological innovations Economic aspects Thermodynamics Economic aspects Wachstumstheorie |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=017187769&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
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