Michael Schymura : Citation Profile


Are you Michael Schymura?

Leibniz-Zentrum für Europäische Wirtschaftsforschung (ZEW)

5

H index

4

i10 index

285

Citations

RESEARCH PRODUCTION:

1

Articles

8

Papers

RESEARCH ACTIVITY:

   3 years (2010 - 2013). See details.
   Cites by year: 95
   Journals where Michael Schymura has often published
   Relations with other researchers
   Recent citing documents: 57.    Total self citations: 0 (0 %)

MORE DETAILS IN:
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   Permalink: http://citec.repec.org/psc430
   Updated: 2023-05-27    RAS profile: 2013-07-17    
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Relations with other researchers


Works with:

Authors registered in RePEc who have co-authored more than one work in the last five years with Michael Schymura.

Is cited by:

Löschel, Andreas (13)

Pothen, Frank (13)

Shahbaz, Muhammad (7)

ADOM, PHILIP (5)

Ang, B.W. (5)

Su, Bin (4)

Hao, Yu (4)

Wiebe, Kirsten (4)

Campiglio, Emanuele (4)

Francois, Joseph (4)

Steckel, Jan (4)

Cites to:

Ang, B.W. (10)

Minier, Jenny (6)

Ederington, Josh (5)

Taylor, M. Scott (5)

Levinson, Arik (5)

Romer, David (4)

Cole, Matthew (4)

Copeland, Brian (4)

Weitzman, Martin (4)

Frankel, Jeffrey (4)

Quaas, Martin (3)

Main data


Where Michael Schymura has published?


Working Papers Series with more than one paper published# docs
ZEW Discussion Papers / ZEW - Leibniz Centre for European Economic Research7

Recent works citing Michael Schymura (2022 and 2021)


YearTitle of citing document
2021The relationship between economic growth and environment. Testing the EKC hypothesis for Latin American countries. (2021). de Juan, A ; Seri, C. In: Papers. RePEc:arx:papers:2105.11405.

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2021Are exporters more environmentally friendly? A re?appraisal that uses China’s micro?data. (2021). Yu, Anqi ; Sturm, Bodo ; Pei, Jiansuo. In: The World Economy. RePEc:bla:worlde:v:44:y:2021:i:5:p:1402-1427.

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2021What drives energy intensity fall in China? Evidence from a meta-frontier approach. (2021). Lin, Boqiang ; Wang, Miao. In: Applied Energy. RePEc:eee:appene:v:281:y:2021:i:c:s0306261920314720.

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2021Moving from final to useful stage in energy-economy analysis: A critical assessment. (2021). Heun, Matthew K ; Pizzol, Massimo ; Brockway, Paul E ; Aramendia, Emmanuel. In: Applied Energy. RePEc:eee:appene:v:283:y:2021:i:c:s0306261920315944.

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2022Decomposition the driving force of regional electricity consumption in Japan from 2001 to 2015. (2022). Sun, Qian ; Gao, Wei ; Zhang, Qingyu ; Huang, Liqiao ; Liu, Yongzhang ; Wang, Yang. In: Applied Energy. RePEc:eee:appene:v:308:y:2022:i:c:s0306261921016093.

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2021Artificial intelligence and energy intensity in China’s industrial sector: Effect and transmission channel. (2021). Liu, Jun ; Fujii, Hidemichi ; Yang, Kun. In: Economic Analysis and Policy. RePEc:eee:ecanpo:v:70:y:2021:i:c:p:276-293.

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2022The impact of city commercial banks’ expansion on China’s regional energy efficiency. (2022). Yang, Mingyan ; Pu, Zhengning. In: Economic Analysis and Policy. RePEc:eee:ecanpo:v:73:y:2022:i:c:p:10-28.

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2023Energy footprints and the international trade network: A new dataset. Is the European Union doing it better?. (2023). Tomberger, Patrick ; Oberdabernig, Doris A ; Francois, Joseph F ; Fernandez-Amador, Octavio. In: Ecological Economics. RePEc:eee:ecolec:v:204:y:2023:i:pa:s0921800922002968.

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2021Capital stranding cascades: The impact of decarbonisation on productive asset utilisation. (2021). Godin, Antoine ; Campiglio, Emanuele ; Cahen-Fourot, Louison ; Trsek, Stefan ; Kemp-Benedict, Eric. In: Energy Economics. RePEc:eee:eneeco:v:103:y:2021:i:c:s0140988321004515.

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2022Assessing the impact of industrial robots on manufacturing energy intensity in 38 countries. (2022). Lee, Chien-Chiang ; Li, Yaya ; Wang, En-Ze. In: Energy Economics. RePEc:eee:eneeco:v:105:y:2022:i:c:s0140988321005934.

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2022The impact of OFDI reverse technology spillovers on Chinas energy intensity: Analysis of provincial panel data. (2022). Sun, Chuanwang ; Li, Jianan ; Zhang, Wenyue. In: Energy Economics. RePEc:eee:eneeco:v:116:y:2022:i:c:s0140988322005291.

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2021The heterogeneous impacts of interregional green technology spillover on energy intensity in China. (2021). Shahbaz, Muhammad ; Han, Botang ; Wei, Zixiang ; Pan, Xiuzhen. In: Energy Economics. RePEc:eee:eneeco:v:96:y:2021:i:c:s0140988321000384.

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2021Driving factors of differences in primary energy intensities of 14 European countries. (2021). Sousa, Tania ; Henriques, Sofia Teives ; Guevara, Zeus. In: Energy Policy. RePEc:eee:enepol:v:149:y:2021:i:c:s0301421520308016.

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2021Enhancing or suppressing: The effect of labor costs on energy intensity in emerging economies. (2021). Wu, Yong-Qiu ; Chen, Fengzhang ; Tan, Yulu. In: Energy. RePEc:eee:energy:v:214:y:2021:i:c:s0360544220320715.

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2021Attribution of changes in an intensity index. (2021). Meng, Bo ; Bi, Hui-Min ; Sun, Ke-Juan ; Xiao, Hao. In: Energy. RePEc:eee:energy:v:216:y:2021:i:c:s0360544220322957.

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2021Energy efficiency in South Asia: Trends and determinants. (2021). Goswami, Binoy ; Jain, Princy. In: Energy. RePEc:eee:energy:v:221:y:2021:i:c:s0360544221000116.

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2021Sustainable design, integration, and operation for energy high-performance process systems. (2021). Varbanov, Petar Sabev ; Seferlis, Panos ; Kleme, Jii Jaromir ; Chin, Hon Huin ; Papadopoulos, Athanasios I. In: Energy. RePEc:eee:energy:v:224:y:2021:i:c:s0360544221004072.

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2021Impact of finance pressure on energy intensity: Evidence from China’s manufacturing sectors. (2021). Wang, Zhongcheng ; Xue, Xinhong. In: Energy. RePEc:eee:energy:v:226:y:2021:i:c:s0360544221004692.

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2021The relationship between manufacturing growth and CO2 emissions: Does renewable energy consumption matter?. (2021). Hou, Yaru ; Wang, En-Ze ; Yang, Mian. In: Energy. RePEc:eee:energy:v:232:y:2021:i:c:s0360544221012809.

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2021Analyzing manufacturing sector and selected development challenges: A panel data analysis. (2021). HALKOS, GEORGE ; Todorov, Valentin ; de Alba, Jaime Moll. In: Energy. RePEc:eee:energy:v:235:y:2021:i:c:s0360544221015012.

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2022Energy technology of conservation versus substitution and energy intensity in China. (2022). Li, Mengfan ; Chen, Xiang ; Luan, Bingjiang ; Huang, Junbing. In: Energy. RePEc:eee:energy:v:244:y:2022:i:pa:s0360544221029443.

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2022Building a top-down method based on machine learning for evaluating energy intensity at a fine scale. (2022). Guo, Jinyu ; Ma, Jinji ; Li, Zhengqiang ; Hong, Jin. In: Energy. RePEc:eee:energy:v:255:y:2022:i:c:s0360544222014086.

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2021Elasticity of substitution and biased technical change in the CES production function for Chinas metal-intensive industries. (2021). Huang, Jianbai ; Zhong, Meirui ; Zeng, Anqi ; Zhu, Xuehong. In: Resources Policy. RePEc:eee:jrpoli:v:73:y:2021:i:c:s0301420721002282.

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2022Energy intensity and energy-specific technological progress: A case study in Guangdong province of China. (2022). Guo, Lili ; Wang, Yajun ; Huang, Junbing. In: Renewable Energy. RePEc:eee:renene:v:184:y:2022:i:c:p:990-1001.

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2023Unleashing the influence of industrialization and trade openness on renewable energy intensity using path model analysis: A roadmap towards sustainable development. (2023). Hao, Xibin ; Nazir, Rabia ; Laila, Ume ; Wang, Rongji. In: Renewable Energy. RePEc:eee:renene:v:202:y:2023:i:c:p:280-288.

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2022When being renewable may not be enough: Typologies of trends in energy and carbon footprint towards sustainable development. (2022). Allegretti, G ; Montoya, M A ; Bertussi, L. A. S., ; Talamini, E. In: Renewable and Sustainable Energy Reviews. RePEc:eee:rensus:v:168:y:2022:i:c:s1364032122007420.

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2021Digital skills, relatedness and green diversification: A study of European regions. (2021). Castellacci, Fulvio ; Consoli, Davide ; Santoalha, Artur. In: Research Policy. RePEc:eee:respol:v:50:y:2021:i:9:s0048733321001384.

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2021Energy, productivity and structural growth. The last two centuries. (2021). Malanima, Paolo. In: Structural Change and Economic Dynamics. RePEc:eee:streco:v:58:y:2021:i:c:p:54-65.

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2022New insights into decoupling economic growth, technological progress and carbon dioxide emissions: Evidence from 40 countries. (2022). Leitão, João ; Santibanez-Gonzalez, Ernesto ; Ferreira, Joaquim ; Leito, Joo. In: Technological Forecasting and Social Change. RePEc:eee:tefoso:v:174:y:2022:i:c:s0040162521006843.

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2022Environmental impact of information and communication technology: Unveiling the role of education in developing countries. (2022). Dagar, Vishal ; Zafar, Muhammad Wasif ; Saeed, Asif ; Khan, Irfan ; Zhang, Chunhong. In: Technological Forecasting and Social Change. RePEc:eee:tefoso:v:178:y:2022:i:c:s0040162522001020.

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2021Analyzing the Driving Forces behind CO 2 Emissions in Energy-Resource-Poor and Fossil-Fuel-Centered Economies: Case Studies from Taiwan, Japan, and South Korea. (2021). Huang, Hao-Syuan ; Wu, Jung-Hua. In: Energies. RePEc:gam:jeners:v:14:y:2021:i:17:p:5351-:d:623857.

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2021Clustering Analysis of Energy Consumption in the Countries of the Visegrad Group. (2021). Ochnio, Luiza ; Rokicki, Tomasz ; Gostkowski, Micha ; Bedycka-Borawska, Aneta ; Borawski, Piotr ; Szczepaniuk, Hubert ; Ratajczak, Marcin ; Wojtczuk, Kamil ; Koszela, Grzegorz. In: Energies. RePEc:gam:jeners:v:14:y:2021:i:18:p:5612-:d:630798.

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2022Modelling Structural Effect and Linkage on Carbon Emissions in China: An Environmentally Extended Semi-Closed Ghosh Input–Output Model. (2022). Gao, Yunhuan ; Nie, Yongyou ; He, HE. In: Energies. RePEc:gam:jeners:v:15:y:2022:i:17:p:6104-:d:895161.

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2023Energy Demand and Energy Efficiency in Developing Countries. (2023). Kipouros, Paraskevas ; Hunt, Lester C. In: Energies. RePEc:gam:jeners:v:16:y:2023:i:3:p:1056-:d:1039495.

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2023Energy Intensity, Energy Efficiency and Economic Growth among OECD Nations from 2000 to 2019. (2023). Goto, Mika ; Sueyoshi, Toshiyuki. In: Energies. RePEc:gam:jeners:v:16:y:2023:i:4:p:1927-:d:1069172.

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2023Analysis of the Level of Efficiency of Control Methods in the Context of Energy Intensity. (2023). Ostasz, Grzegorz ; Czerwiska, Karolina ; Pacana, Andrzej. In: Energies. RePEc:gam:jeners:v:16:y:2023:i:8:p:3507-:d:1126288.

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2022The Impact of Industrial Intelligence on Energy Intensity: Evidence from China. (2022). Zhu, Hongfei ; Liu, Peiyao ; Zhang, Xiekui. In: Sustainability. RePEc:gam:jsusta:v:14:y:2022:i:12:p:7219-:d:837522.

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2022Assessment and Forecast of Green Total Factor Energy Efficiency in the Yellow River Basin—A Perspective Distinguishing the Upper, Middle and Lower Stream. (2022). Wang, Qiang ; Ma, Minglu. In: Sustainability. RePEc:gam:jsusta:v:14:y:2022:i:5:p:2506-:d:755443.

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2023Has the Development of the Digital Economy Reduced the Regional Energy Intensity—From the Perspective of Factor Market Distortion, Industrial Structure Upgrading and Technological Progress?. (2023). Yuan, Xinxin ; Wu, Peiying ; Zeng, Guohua. In: Sustainability. RePEc:gam:jsusta:v:15:y:2023:i:7:p:5927-:d:1110512.

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2023The Impact of Energy Intensity, Energy Productivity and Natural Resource Rents on Carbon Emissions in Morocco. (2023). Rahman, Tahir ; Wu, Chenchen ; Hassan, Taimoor ; Naz, Saba ; Khan, Majid ; Shi, Xudong ; Zhang, Xiuqin. In: Sustainability. RePEc:gam:jsusta:v:15:y:2023:i:8:p:6720-:d:1124805.

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2021Energy footprints and the international trade network: A new dataset. Is the European Union doing it better?. (2021). Fernández-Amador, Octavio ; Tomberger, Patrick ; Oberdabernig, Doris A ; Francois, Joseph F ; Fernandez-Amador, Octavio. In: Working Papers. RePEc:inn:wpaper:2021-22.

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2022The nexus between variable renewable energy, economy and climate: Evidence from European countries by means of exploratory graphical analysis.. (2022). Claveria, Oscar ; Carty, Christina. In: IREA Working Papers. RePEc:ira:wpaper:202207.

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2022The Effects of International Trade on Structural Convergence and CO2 Emissions. (2022). Bukin, Eduard ; Ting, YU ; Hubler, Michael. In: Environmental & Resource Economics. RePEc:kap:enreec:v:83:y:2022:i:3:d:10.1007_s10640-022-00698-7.

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2022Energy intensity improvement and energy productivity changes: an analysis of BRICS and G7 countries. (2022). Hu, Jin-Li ; Chang, Ming-Chung ; Chiu, Ching-Ren. In: Journal of Productivity Analysis. RePEc:kap:jproda:v:57:y:2022:i:3:d:10.1007_s11123-022-00630-7.

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2021Artificial Intelligence and Energy Intensity in China’s Industrial Sector: Effect and Transmission Channel. (2021). Fujii, Hidemichi ; Liu, Jun ; Yang, Kun. In: MPRA Paper. RePEc:pra:mprapa:106333.

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2021Impact of Agricultural Factors on Carbon Footprints for GHG Emission Policies in Asia. (2021). Jayasooriya, Sujith. In: MPRA Paper. RePEc:pra:mprapa:109790.

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2021Cross-Economy Dynamics in Energy Productivity: Evidence from 47 Economies over the Period 2000–2015. (2021). Zhong, Sheng ; Liu, Yang. In: ADBI Working Papers. RePEc:ris:adbiwp:1215.

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2022Globalization–Emissions Nexus: Testing the EKC Hypothesis in Next-11 Countries. (2022). Shahbaz, Muhammad. In: Global Business Review. RePEc:sae:globus:v:23:y:2022:i:1:p:75-100.

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2022Has Korean growth become greener? Spatial econometric evidence for energy use and renewable energy. (2022). Hille, Erik ; Lambernd, Bernhard. In: Annals of Operations Research. RePEc:spr:annopr:v:313:y:2022:i:1:d:10.1007_s10479-021-04197-8.

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2021Do countries adjust the carbon intensity of energy towards targets? The role of financial development on the adjustment. (2021). Wong, Andrew ; Hui, Cho-Hoi. In: SN Business & Economics. RePEc:spr:snbeco:v:1:y:2021:i:10:d:10.1007_s43546-021-00132-y.

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2023The effects of market integration on pollution: an analysis of EU enlargements. (2023). Klaassen, Franc ; Sommer, Konstantin. In: Tinbergen Institute Discussion Papers. RePEc:tin:wpaper:20220039.

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2022Decomposing scale and technique effects of economic growth on energy consumption: Fresh evidence from developing economies. (2022). Shahbaz, Muhammad ; Kontoleon, Andreas ; Sinha, Avik. In: International Journal of Finance & Economics. RePEc:wly:ijfiec:v:27:y:2022:i:2:p:1848-1869.

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2021Energy footprints and the international trade network: A new dataset. Is the European Union doing it better?. (2021). Fernández-Amador, Octavio ; Fernandez-Amador, Octavio ; Tomberger, Patrick ; Oberdabernig, Doris ; Francois, Joseph. In: Papers. RePEc:wti:papers:1324.

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2022Energy footprints and the international trade network: A new dataset. Is the European Union doing it better?. (2022). Oberdabernig, Doris ; Fernández-Amador, Octavio ; Tomberger, Patrick ; Francois, Joseph ; Fernandez-Amador, Octavio. In: Papers. RePEc:wti:papers:1374.

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Works by Michael Schymura:


YearTitleTypeCited
2012Expected utility theory and the tyranny of catastrophic risks In: Ecological Economics.
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article17
2010Expected Utility theory and the tyranny of catastrophic risks.(2010) In: ZEW Discussion Papers.
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This paper has another version. Agregated cites: 17
paper
2013Energy Intensity Developments in 40 Major Economies: Structural Change or Technology Improvement? In: Working Papers.
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paper221
2011Intertemporal evaluation criteria for climate change policy: the basic ethical issues In: ZEW Discussion Papers.
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paper2
2012Substitution elasticities in a CES production framework: An empirical analysis on the basis of non-linear least squares estimations In: ZEW Discussion Papers.
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paper26
2012Investigating JEEM empirically: A story of co-authorship and collaboration In: ZEW Discussion Papers.
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paper1
2013Trade and the environment: An application of the WIOD database In: ZEW Discussion Papers.
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paper10
2013Modeling technological change in economic models of climate change: A survey In: ZEW Discussion Papers.
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paper8
2013How can pure social discounting be ethically justified? In: ZEW Discussion Papers.
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paper0

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