S. Shaik Et Al. , "Glazing systems utilizing phase change materials: Solar-optical characteristics, potential for energy conservation, role in reducing carbon emissions, and impact on natural illumination," ENERGY AND BUILDINGS , vol.311, 2024
Shaik, S. Et Al. 2024. Glazing systems utilizing phase change materials: Solar-optical characteristics, potential for energy conservation, role in reducing carbon emissions, and impact on natural illumination. ENERGY AND BUILDINGS , vol.311 .
Shaik, S., Vishnu Priya, A., Maduru, V. R., Rahaman, A., ARICI, M., Kontoleon, K. J., ... Li, D.(2024). Glazing systems utilizing phase change materials: Solar-optical characteristics, potential for energy conservation, role in reducing carbon emissions, and impact on natural illumination. ENERGY AND BUILDINGS , vol.311.
Shaik, Saboor Et Al. "Glazing systems utilizing phase change materials: Solar-optical characteristics, potential for energy conservation, role in reducing carbon emissions, and impact on natural illumination," ENERGY AND BUILDINGS , vol.311, 2024
Shaik, Saboor Et Al. "Glazing systems utilizing phase change materials: Solar-optical characteristics, potential for energy conservation, role in reducing carbon emissions, and impact on natural illumination." ENERGY AND BUILDINGS , vol.311, 2024
Shaik, S. Et Al. (2024) . "Glazing systems utilizing phase change materials: Solar-optical characteristics, potential for energy conservation, role in reducing carbon emissions, and impact on natural illumination." ENERGY AND BUILDINGS , vol.311.
@article{article, author={Saboor Shaik Et Al. }, title={Glazing systems utilizing phase change materials: Solar-optical characteristics, potential for energy conservation, role in reducing carbon emissions, and impact on natural illumination}, journal={ENERGY AND BUILDINGS}, year=2024}