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A new approach for assessing the macroeconomic growth energy rebound effect. (2019). Jin, Taeyoung ; Kim, Jinsoo.
In: Applied Energy.
RePEc:eee:appene:v:239:y:2019:i:c:p:192-200.

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  2. Spatiotemporal Dynamic Evolution of Energy Rebound Effect and Sustainable Path for Energy Conservation–Emission Reduction in Resource-Based Cities of China. (2025). Zhu, Zhigang ; Zhang, Zhongjia.
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  9. Will energy efficiency improvements reduce energy consumption? Perspective of rebound effect and evidence from beijing. (2023). Mu, Xianzhong ; Kong, LI ; Hu, Guangwen ; Tu, Chuang.
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  10. The energy rebound effect in households: Evidence from urban and rural areas in Beijing. (2023). Zhang, Zheng ; Mu, Xianzhong ; Kong, LI ; Li, Guohao ; Hu, Guangwen.
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  11. Macroeconomic Effects of Energy Price: New Insight from Korea?. (2022). He, Yugang ; Lee, Moongi.
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  14. Is the rebound effect useless? A case study on the technological progress of the power industry. (2022). Lin, Boqiang ; Jia, Zhijie.
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  15. Limits of technological progress in controlling energy consumption: Evidence from the energy rebound effects across Chinas industrial sector. (2022). Yuan, Zhen ; Yao, Tingting ; Xu, Jie ; Li, Bing.
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  16. Evaluating the direct rebound effect of electricity consumption: An empirical analysis of the provincial level in China. (2022). Li, Xinxin ; Meng, Ming.
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  17. How large is the economy-wide rebound effect in middle income countries? Evidence from Iran. (2022). Stern, David ; jafari, MAHBOUBEH ; Bruns, Stephan B.
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  19. Decomposition and measurement of the rebound effect: The case of energy efficiency improvements in Spain. (2022). Ordoez, Manuel ; Prieto, Manuela ; Cansino, Jose M.
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  21. An improved decomposition approach toward energy rebound effects in China: Review since 1992. (2021). Shahbaz, Muhammad ; Cheng, Shulei ; Gao, Ming ; Song, Malin.
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  22. Urban and rural differences with regional assessment of household energy consumption in China. (2021). Wang, Shubin ; Sun, Shaolong ; Zhao, Erlong.
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  23. Measurement of the direct rebound effect of residential electricity consumption: An empirical study based on the China family panel studies. (2021). Lin, Boqiang ; Zhu, Penghu.
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  24. Energy efficiency promotion backfires under cap-and-trade. (2020). Perino, Grischa ; Jarke-Neuert, Johannes.
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  25. Tracking the sources of rebound effect resulting from the efficiency improvement in petrol, diesel, natural gas and electricity consumption; A CGE analysis for Iran. (2020). Sayadi, Mohammad ; Khosroshahi, Musa Khoshkalam.
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  26. A modified and improved method to measure economy-wide carbon rebound effects based on the PDA-MMI approach. (2020). Hou, Wenxuan ; Gao, Ming ; Song, Malin ; Chen, Jiandong ; Li, Ding.
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  27. A game theoretic approach for car pricing and its energy efficiency level versus governmental sustainability goals by considering rebound effect: A case study of South Korea. (2020). Rasti-Barzoki, Morteza ; Moon, Ilkyeong.
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  29. Different effects of technological progress on Chinas carbon emissions based on sustainable development. (2020). Gao, Ming ; Song, Malin ; Ma, KE ; Chen, Jiandong.
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  19. Rebound effect with energy efficiency determinants: a two-stage analysis of residential electricity consumption in Indonesia. (2021). Adha, Rishan ; Firmansyah, M ; Hong, Cheng-Yih ; Paranata, Ade.
    In: MPRA Paper.
    RePEc:pra:mprapa:110444.

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  20. Towards energy conservation by improving energy efficiency? Evidence from China’s metallurgical industry. (2021). Lin, Boqiang ; Wang, Siquan ; Xu, Mengmeng.
    In: Energy.
    RePEc:eee:energy:v:216:y:2021:i:c:s0360544220323628.

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  21. Measurement of the direct rebound effect of residential electricity consumption: An empirical study based on the China family panel studies. (2021). Lin, Boqiang ; Zhu, Penghu.
    In: Applied Energy.
    RePEc:eee:appene:v:301:y:2021:i:c:s0306261921008060.

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  22. Essays on Energy Efficiency, Environmental Regulation and Labor Demand in Swedish Industry. (2020). Amjadi, Golnaz.
    In: Umeå Economic Studies.
    RePEc:hhs:umnees:0982.

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  23. Evaluating the coal rebound effect in energy intensive industries of China. (2020). Mushtaq, Zulqarnain ; Wan-Li, Zhang ; Zeng, Xiaowu ; Wei, Wei ; Qaisrani, Mumtaz A ; Sharif, Maimoona.
    In: Energy.
    RePEc:eee:energy:v:207:y:2020:i:c:s0360544220313542.

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  24. Tracking the sources of rebound effect resulting from the efficiency improvement in petrol, diesel, natural gas and electricity consumption; A CGE analysis for Iran. (2020). Sayadi, Mohammad ; Khosroshahi, Musa Khoshkalam.
    In: Energy.
    RePEc:eee:energy:v:197:y:2020:i:c:s0360544220302413.

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  25. A review of optimal energy policy instruments on industrial energy efficiency programs, rebound effects, and government policies. (2020). Safarzadeh, Soroush ; Hejazi, Seyed Reza ; Rasti-Barzoki, Morteza.
    In: Energy Policy.
    RePEc:eee:enepol:v:139:y:2020:i:c:s0301421520300999.

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  26. A game theoretic approach for pricing policies in a duopolistic supply chain considering energy productivity, industrial rebound effect, and government policies. (2019). Safarzadeh, Soroush ; Rasti-Barzoki, Morteza.
    In: Energy.
    RePEc:eee:energy:v:167:y:2019:i:c:p:92-105.

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  27. Does the rebound effect matter in energy import-dependent mega-cities? Evidence from Shanghai (China). (2019). Shao, Shuai ; Guan, Dabo ; Yu, Mingliang ; Guo, Longfei ; Yang, Lili.
    In: Applied Energy.
    RePEc:eee:appene:v:241:y:2019:i:c:p:212-228.

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  28. A new approach for assessing the macroeconomic growth energy rebound effect. (2019). Jin, Taeyoung ; Kim, Jinsoo.
    In: Applied Energy.
    RePEc:eee:appene:v:239:y:2019:i:c:p:192-200.

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  29. A game theoretic approach for assessing residential energy-efficiency program considering rebound, consumer behavior, and government policies. (2019). Safarzadeh, Soroush ; Rasti-Barzoki, Morteza.
    In: Applied Energy.
    RePEc:eee:appene:v:233-234:y:2019:i::p:44-61.

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  30. Industrial Energy Use, Management Practices and Price Signals: The Case of Swedish Process Industry. (2019). Söderholm, Patrik ; Soderholm, Patrik ; Dahlqvist, Anna.
    In: International Journal of Energy Economics and Policy.
    RePEc:eco:journ2:2019-03-4.

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