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Experimental and numerical investigation of a novel energy-efficient vacuum glazing technology for low-carbon buildings
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E. Cuce, "Experimental and numerical investigation of a novel energy-efficient vacuum glazing technology for low-carbon buildings," INDOOR AND BUILT ENVIRONMENT , vol.26, no.1, pp.44-59, 2017

Cuce, E. 2017. Experimental and numerical investigation of a novel energy-efficient vacuum glazing technology for low-carbon buildings. INDOOR AND BUILT ENVIRONMENT , vol.26, no.1 , 44-59.

Cuce, E., (2017). Experimental and numerical investigation of a novel energy-efficient vacuum glazing technology for low-carbon buildings. INDOOR AND BUILT ENVIRONMENT , vol.26, no.1, 44-59.

Cuce, ERDEM. "Experimental and numerical investigation of a novel energy-efficient vacuum glazing technology for low-carbon buildings," INDOOR AND BUILT ENVIRONMENT , vol.26, no.1, 44-59, 2017

Cuce, ERDEM. "Experimental and numerical investigation of a novel energy-efficient vacuum glazing technology for low-carbon buildings." INDOOR AND BUILT ENVIRONMENT , vol.26, no.1, pp.44-59, 2017

Cuce, E. (2017) . "Experimental and numerical investigation of a novel energy-efficient vacuum glazing technology for low-carbon buildings." INDOOR AND BUILT ENVIRONMENT , vol.26, no.1, pp.44-59.

@article{article, author={ERDEM CÜCE}, title={Experimental and numerical investigation of a novel energy-efficient vacuum glazing technology for low-carbon buildings}, journal={INDOOR AND BUILT ENVIRONMENT}, year=2017, pages={44-59} }