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Energy Demand and Energy Efficiency in the OECD Countries: A Stochastic Demand Frontier Approach. (2011). Hunt, Lester ; Filippini, Massimo.
In: The Energy Journal.
RePEc:aen:journl:2011v32-02-a03.

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  78. Essays on Energy Efficiency, Environmental Regulation and Labor Demand in Swedish Industry. (2020). Amjadi, Golnaz.
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  79. Estimating Persistent and Transient Energy Efficiency in Belt and Road Countries: A Stochastic Frontier Analysis. (2020). TAGHIZADEH-HESARY, Farhad ; Song, Xiaoqian ; Sun, Huaping ; Edziah, Bless Kofi ; Kporsu, Anthony Kwaku.
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  80. Renewable electricity and sustainable development goals in the EU. (2020). Bali Swain, Ranjula ; Karimu, Amin.
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  81. How much do asymmetric changes in income and energy prices affect energy demand?. (2020). liddle, brantley ; Sadorsky, Perry.
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    RePEc:eee:joecas:v:21:y:2020:i:c:s1703494919300805.

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  82. Assessment of the potential for electricity savings in households in Cameroon: A stochastic frontier approach. (2020). Nzotcha, Urbain ; Tamo, Thomas Tatietse ; Kenfack, Joseph ; Nsangou, Jean Calvin.
    In: Energy.
    RePEc:eee:energy:v:211:y:2020:i:c:s0360544220316844.

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  83. 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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  84. Effects of urbanization on energy efficiency in China: New evidence from short run and long run efficiency models. (2020). Lv, Yulan ; Chen, Wei ; Cheng, Jianquan.
    In: Energy Policy.
    RePEc:eee:enepol:v:147:y:2020:i:c:s0301421520305759.

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  85. Four reasons why there is so much confusion about energy efficiency. (2020). Ang, B.W. ; Goh, Tian ; Wang, B.
    In: Energy Policy.
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  86. Efficiency of household electricity consumption in Ghana. (2020). Twerefou, Daniel ; Abeney, Jacob Opantu.
    In: Energy Policy.
    RePEc:eee:enepol:v:144:y:2020:i:c:s0301421520303918.

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  87. Shrinking ageing population and other drivers of energy consumption and CO2 emission in the residential sector: A case from Eastern Europe. (2020). Baležentis, Tomas ; Balezentis, Tomas.
    In: Energy Policy.
    RePEc:eee:enepol:v:140:y:2020:i:c:s0301421520301865.

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  88. A developmental state: How to allocate electricity efficiently in a developing country. (2020). Jian, ZE ; Fu, Tong.
    In: Energy Policy.
    RePEc:eee:enepol:v:138:y:2020:i:c:s0301421519308122.

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  89. Chinese electricity demand and electricity consumption efficiency: Do the structural changes matter?. (2020). Lin, Boqiang ; Zhu, Junpeng.
    In: Applied Energy.
    RePEc:eee:appene:v:262:y:2020:i:c:s0306261920300179.

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  90. The Energy Efficiency Gap and Energy Price Responsiveness in Food Processing. (2020). Doolin, Matt ; Boyd, Gale.
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  91. Long-run dynamics of sulphur dioxide emissions, economic growth and energy efficiency in China. (2019). Zhang, Lin ; hu, bin.
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  92. Revenue decoupling and energy consumption: Empirical evidence from the U.S. electric utilities sector. (2019). Wetzel, Heike ; von Loessl, Victor.
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  93. Institutional quality, green innovation and energy efficiency. (2019). Sun, Chuanwang ; Edziah, Bless Kofi ; Kporsu, Anthony Kwaku.
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  94. Measuring plant level energy efficiency and technical change in the U.S. metal-based durable manufacturing sector using stochastic frontier analysis. (2019). Lee, Jonathan ; Boyd, Gale A.
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  95. Energy demand elasticities and weather worldwide. (2018). Bollino, Carlo Andrea ; Bigerna, Simona ; Atalla, Tarek.
    In: Economia Politica: Journal of Analytical and Institutional Economics.
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  96. Energy Efficiency Transitions in China: How Persistent are the Movements to/from the Frontier?. (2018). Zhang, Lin ; Adom, Philip Kofi.
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  97. Cost Efficiency Analysis of Electricity Distribution Sector under Model Uncertainty. (2018). Makieia, Kamil ; Osiewalski, Jacek.
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  98. Energy Efficiency Transitions in China: How persistent are the movements to/from the frontier?. (2018). Zhang, Lin ; ADOM, PHILIP.
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  99. The Impact of Socio-Economic Indicators on Sustainable Consumption of Domestic Electricity in Lithuania. (2018). Vojtovic, Sergej ; Kontautiene, Rima ; Stundziene, Alina.
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  100. Regional Determinants of Energy Efficiency: Residential Energy Demand in Japan. (2018). Otsuka, Akihiro.
    In: Energies.
    RePEc:gam:jeners:v:11:y:2018:i:6:p:1557-:d:152445.

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  101. National research funding and energy efficiency: Evidence from the National Science Foundation of China. (2018). Zhang, Ning ; Du, Minzhe ; Wang, Bing.
    In: Energy Policy.
    RePEc:eee:enepol:v:120:y:2018:i:c:p:335-346.

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  102. Dynamic multilevel modelling of industrial energy demand in Europe. (2018). Saal, David ; Kenjegalieva, Karligash ; Glass, Karligash ; Sharimakin, Akinsehinwa.
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  103. The Rebound Effect in Swedish Heavy Industry. (2018). Lundgren, Tommy ; Persson, Lars ; Amjadi, Golnaz.
    In: Energy Economics.
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  104. Relative Effectiveness of Energy Efficiency Programs versus Market Based Climate Policies in the Chemical Industry. (2018). Lee, Jonathan ; Boyd, Gale.
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  105. Energy efficiency in transition economies : A stochastic frontier approach. (2018). Carvalho, Antnio.
    In: The Economics of Transition.
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  106. Drivers of energy efficiency in German manufacturing: A firm-level stochastic frontier analysis. (2017). Sommerfeld, Katrin ; Massier, Philipp ; Löschel, Andreas ; Lutz, Benjamin Johannes ; Loschel, Andreas.
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  107. Drivers of energy efficiency in German manufacturing: A firm-level stochastic frontier analysis. (2017). Sommerfeld, Katrin ; Massier, Philipp ; Löschel, Andreas ; Lutz, Benjamin Johannes ; Loschel, Andreas.
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  108. Energy efficiency in the Chinese provinces: a fixed effects stochastic frontier spatial Durbin error panel analysis. (2017). Tang, Jianjun ; Folmer, Henk ; Ji, Minhe ; Jiang, Lei.
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  109. A Stochastic Frontier Analysis Approach for Estimating Energy Demand and Efficiency in the Transport Sector of Latin America and the Caribbean. (2017). Llorca, Manuel ; Jose, Somoza ; Arbues, Pelayo ; Banos, Jose.
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  110. A Note on Medium- and Long-Term Global Energy Prospects and Scenarios. (2017). Polinori, Paolo ; Bollino, Carlo Andrea ; Bigerna, Simona ; Micheli, Silvia ; Asdrubali, Francesco ; Guattari, Claudia ; Rotili, Antonella.
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  111. Energy efficiency and rebound effect in European road freight transport. (2017). Llorca, Manuel ; Jamasb, Tooraj.
    In: Transportation Research Part A: Policy and Practice.
    RePEc:eee:transa:v:101:y:2017:i:c:p:98-110.

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  112. International comparison of total-factor energy productivity growth: A parametric Malmquist index approach. (2017). Lin, Boqiang ; Du, Kerui.
    In: Energy.
    RePEc:eee:energy:v:118:y:2017:i:c:p:481-488.

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  113. Explaining electricity demand and the role of energy and investment literacy on end-use efficiency of Swiss households. (2017). Kumar, Nilkanth ; Filippini, Massimo ; Boogen, Nina ; Blasch, Julia.
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  114. Correcting the uneven burden sharing of emission reduction across provinces in China. (2017). Zhang, Lin.
    In: Energy Economics.
    RePEc:eee:eneeco:v:64:y:2017:i:c:p:335-345.

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  115. Estimating the potential for electricity savings in households. (2017). Boogen, Nina.
    In: Energy Economics.
    RePEc:eee:eneeco:v:63:y:2017:i:c:p:288-300.

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  116. Is the cold the only reason why we heat our homes? Empirical evidence from spatial series data. (2017). Copiello, Sergio ; Grillenzoni, Carlo.
    In: Applied Energy.
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  117. A Stochastic Frontier Analysis Approach for Estimating Energy Demand and Efficiency in the Transport Sector of Latin America and the Caribbean. (2017). Llorca, Manuel ; Baños, José ; Arbues, Pelayo ; Somoza, Jose ; Baos, Jose.
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  118. Economy-wide Estimates of Rebound Effects: Evidence from Panel Data. (2016). Weyman-Jones, Thomas G ; Adetutu, Morakinyo O ; Glass, Anthony J.
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  119. Club Convergence in the Energy Intensity of China. (2016). Zhang, Dayong ; Broadstock, David.
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  120. Energy efficiency and rebound effect in European road freight transport. (2016). Llorca, Manuel ; Jamasb, Tooraj.
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  121. Energy Efficiency in Transition Economies: A Stochastic Frontier Approach. (2016). Carvalho, Antonio.
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  122. Industrial energy demand and energy efficiency – Evidence from Sweden. (2016). Lundgren, Tommy ; Zhang, Shanshan ; Marklund, Per-Olov.
    In: Resource and Energy Economics.
    RePEc:eee:resene:v:43:y:2016:i:c:p:130-152.

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  123. Efficiency snakes and energy ladders: A (meta-)frontier demand analysis of electricity consumption efficiency in Chinese households. (2016). Zhang, Dayong ; Broadstock, David ; Li, Jiajia.
    In: Energy Policy.
    RePEc:eee:enepol:v:91:y:2016:i:c:p:383-396.

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  124. Energy efficiency in Swedish industry. (2016). Zhou, Wenchao ; Lundgren, Tommy ; Zhang, Shanshan.
    In: Energy Economics.
    RePEc:eee:eneeco:v:55:y:2016:i:c:p:42-51.

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  125. Output-specific energy efficiency assessment: A data envelopment analysis approach. (2016). Zhou, Xun ; Wu, F.
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    RePEc:eee:appene:v:177:y:2016:i:c:p:117-126.

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  126. A hybrid model for explaining the short-term dynamics of energy efficiency of China’s thermal power plants. (2016). Tao, Wen-Quan ; Li, Ming-Jia ; Song, Chen-Xi .
    In: Applied Energy.
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  127. Measuring Plant Level Energy Efficiency and Technical Change in the U.S. Metal-Based Durable Manufacturing Sector Using Stochastic Frontier Analysis. (2016). Lee, Jonathan ; Boyd, Gale.
    In: Working Papers.
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  128. Energy efficiency and rebound effect in European road freight transport. (2016). Llorca, Manuel ; Jamasb, Tooraj.
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  129. Club Convergence in the Energy Intensity of China. (2016). Broadstock, David ; Zhang, Dayong.
    In: The Energy Journal.
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  130. Economy-wide Estimates of Rebound Effects: Evidence from Panel Data. (2016). Adetutu, Morakinyo ; Weyman-Jones, Thomas G ; Glass, Anthony J.
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  131. Efficiency Snakes and Energy Ladders: A (meta-)frontier demand analysis of electricity consumption efficiency in Chinese households. (2015). Zhang, Dayong ; Broadstock, David ; Li, Jiajia.
    In: Surrey Energy Economics Centre (SEEC), School of Economics Discussion Papers (SEEDS).
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  132. Underlying Energy Efficiency in the US. (2015). Hunt, Lester ; Filippini, Massimo.
    In: Surrey Energy Economics Centre (SEEC), School of Economics Discussion Papers (SEEDS).
    RePEc:sur:seedps:150.

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  133. A Two-stage Approach for Energy Efficiency Analysis in European Union Countries. (2015). Doumpos, Michael ; Andriosopoulos, Kostas ; Makridou, Georgia ; Zopounidis, Constantin.
    In: The Energy Journal.
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  134. Economy-wide Estimates of Rebound Effects: Evidence from Panel Data. (2015). Adetutu, Morakinyo ; Weyman-Jones, Thomas ; Glass, Anthony.
    In: MPRA Paper.
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  135. Transient and Persistent Energy Efficiency in the US Residential Sector: Evidence from Household-level Data. (2015). Filippini, Massimo ; Alberini, Massimo Anna .
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  136. Measurement of Energy Efficiency Based on Economic Foundations. (2015). Hunt, Lester ; Filippini, Massimo.
    In: CER-ETH Economics working paper series.
    RePEc:eth:wpswif:15-216.

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  137. The driving forces of change in energy-related CO2 emissions in Eastern, Western, Northern and Southern Europe: The LMDI approach to decomposition analysis. (2015). Moutinho, Victor ; Silva, Pedro Miguel ; Moreira, Antonio Carrizo.
    In: Renewable and Sustainable Energy Reviews.
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  138. Measurement of energy efficiency based on economic foundations. (2015). Hunt, Lester ; Filippini, Massimo.
    In: Energy Economics.
    RePEc:eee:eneeco:v:52:y:2015:i:s1:p:s5-s16.

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  139. A harmonized calculation model for transforming EU bottom-up energy efficiency indicators into empirical estimates of policy impacts. (2015). Bertoldi, Paolo ; Horowitz, Marvin J.
    In: Energy Economics.
    RePEc:eee:eneeco:v:51:y:2015:i:c:p:135-148.

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  140. Economic modelling of energy services: Rectifying misspecified energy demand functions. (2015). Ryan, David ; Hunt, Lester.
    In: Energy Economics.
    RePEc:eee:eneeco:v:50:y:2015:i:c:p:273-285.

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  141. A new approach to measuring the rebound effect associated to energy efficiency improvements: An application to the US residential energy demand. (2015). Orea, Luis ; Llorca, Manuel ; Filippini, Massimo.
    In: Energy Economics.
    RePEc:eee:eneeco:v:49:y:2015:i:c:p:599-609.

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  142. Estimation and determinants of energy efficiency in Japanese regional economies. (2015). Goto, Mika ; Otsuka, Akihiro.
    In: Regional Science Policy & Practice.
    RePEc:bla:rgscpp:v:7:y:2015:i:2:p:89-101.

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  143. A Two-stage approach for energy efficiency analysis in European Union countries. (2015). Georgia, Kostas Andriosopoulos ; Zopounidis, Constantin.
    In: The Energy Journal.
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  144. Catching on the Rebound: Why Price Elasticities are Generally Inappropriate Measures of Rebound Effects. (2014). Ryan, David ; Hunt, Lester.
    In: Surrey Energy Economics Centre (SEEC), School of Economics Discussion Papers (SEEDS).
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  145. Economic Modelling of Energy Services: Rectifying Misspecified Energy Demand Functions. (2014). Ryan, David ; Hunt, Lester.
    In: Surrey Energy Economics Centre (SEEC), School of Economics Discussion Papers (SEEDS).
    RePEc:sur:seedps:147.

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  146. Panel Data Parametric Frontier Technique for Measuring Total-factor Energy Efficiency: Application to Japanese Regions. (2014). Hu, Jin-Li ; Honma, Satoshi.
    In: MPRA Paper.
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  147. Applications of the stochastic frontier approach in Energy Economics. (2014). Orea, Luis ; Filippini, Massimo.
    In: Economics and Business Letters.
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  148. A latent class approach for estimating energy demands and efficiency in transport: An application to Latin America and the Caribbean. (2014). Llorca, Manuel ; Baños, José ; Arbues, Pelayo ; Somoza, Jose ; Baos, Jose.
    In: Efficiency Series Papers.
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  149. Measuring energy efficiency and rebound effects using a stochastic demand frontier approach: the US residential energy demand. (2014). Orea, Luis ; Llorca, Manuel ; Filippini, Massimo.
    In: Efficiency Series Papers.
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  150. Stochastic Frontier Models for Long Panel Data Sets: Measurement of the Underlying Energy Efficiency for the OECD Countries. (2014). Tosetti, Elisa ; Filippini, Massimo.
    In: CER-ETH Economics working paper series.
    RePEc:eth:wpswif:14-198.

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  151. A panel data parametric frontier technique for measuring total-factor energy efficiency: An application to Japanese regions. (2014). Hu, Jin-Li ; Honma, Satoshi.
    In: Energy.
    RePEc:eee:energy:v:78:y:2014:i:c:p:732-739.

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  152. Impact of energy policy instruments on the estimated level of underlying energy efficiency in the EU residential sector. (2014). Hunt, Lester ; Filippini, Massimo ; Zori, Jelena.
    In: Energy Policy.
    RePEc:eee:enepol:v:69:y:2014:i:c:p:73-81.

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  153. Measuring plant level energy efficiency in Chinas energy sector in the presence of allocative inefficiency. (2014). Hu, Baiding.
    In: China Economic Review.
    RePEc:eee:chieco:v:31:y:2014:i:c:p:130-144.

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  154. Energy efficiency and capital-energy substitutability: Evidence from four OPEC countries. (2014). Adetutu, Morakinyo O..
    In: Applied Energy.
    RePEc:eee:appene:v:119:y:2014:i:c:p:363-370.

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  155. Impact of energy policy instruments on the estimated level of underlying energy efficiency in the EU residential sector. (2013). Hunt, Lester ; Filippini, Massimo ; Zoric, Jelena.
    In: Surrey Energy Economics Centre (SEEC), School of Economics Discussion Papers (SEEDS).
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  156. Market-Related Reforms and Increased Energy Efficiency in Transition Countries: Empirical Evidence. (2013). Nepal, Rabindra ; Jamasb, Tooraj.
    In: Energy Economics and Management Group Working Papers.
    RePEc:qld:uqeemg:8-2013.

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  157. Measurement of the “Underlying energy efficiency” in Chinese provinces. (2013). Zhang, Lin ; Filippini, Massimo.
    In: CER-ETH Economics working paper series.
    RePEc:eth:wpswif:13-183.

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  158. Underlying Energy Efficiency in the US. (2013). Hunt, Lester ; Filippini, Massimo.
    In: CER-ETH Economics working paper series.
    RePEc:eth:wpswif:13-181.

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  159. The contribution of energy efficiency towards meeting CO2 targets. (2013). Filippini, Massimo ; Hunt, Lester C. ; Evans, Joanne.
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  160. The significance of occupancy steadiness in residential consumer response to Time-of-Use pricing: Evidence from a stochastic adjustment model. (2013). Torriti, Jacopo.
    In: Utilities Policy.
    RePEc:eee:juipol:v:27:y:2013:i:c:p:49-56.

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  161. The causal relationship between energy use and economic growth in Switzerland. (2013). Weber, Sylvain ; Mathys, Nicole ; Baranzini, Andrea ; Bareit, Markus.
    In: Energy Economics.
    RePEc:eee:eneeco:v:36:y:2013:i:c:p:464-470.

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  162. Functional form and aggregate energy demand elasticities: A nonparametric panel approach for 17 OECD countries. (2013). Karimu, Amin ; Brannlund, Runar.
    In: Energy Economics.
    RePEc:eee:eneeco:v:36:y:2013:i:c:p:19-27.

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  163. Government Spending and Air Pollution in the US. (2013). Lopez, Ramon ; Islam, Asif.
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  164. Some Economic Aspects of Energy Security. (2012). .
    In: European Research Studies Journal.
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  165. Some Economic Aspects of Energy Security. (2012). Manzano, Baltasar ; Labandeira, Xavier.
    In: European Research Studies Journal.
    RePEc:ers:journl:v:xv:y:2012:i:4:p:47-64.

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  166. Some Economic Aspects of Energy Security. (2012). Manzano, Baltasar ; Labandeira, Xavier.
    In: Working Papers.
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  167. Modeling international trends in energy efficiency. (2012). Stern, David.
    In: Energy Economics.
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  168. US residential energy demand and energy efficiency: A stochastic demand frontier approach. (2012). Hunt, Lester ; Filippini, Massimo.
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  169. US Residential Energy Demand and Energy Efficiency: A Stochastic Demand Frontier Approach. (2012). Hunt, Lester ; Filippini, Massimo.
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  170. Political Economy of Clean Energy Transition: The Role of Political Risk and Economic Growth. (). Yang, Jie ; Chen, Jianyu ; Wang, Rong ; Fu, Yue.
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