To predict the mixed gas adsorption isotherms based on single-component adsorption isotherms using IAST.
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oai:utpedia.utp.edu.my:284792024-08-08T03:02:40Z http://utpedia.utp.edu.my/id/eprint/28479/ To predict the mixed gas adsorption isotherms based on single-component adsorption isotherms using IAST. Nik Salehuddin, Nik Abdul Azeem TP Chemical technology 2024-01 Final Year Project NonPeerReviewed Nik Salehuddin, Nik Abdul Azeem (2024) To predict the mixed gas adsorption isotherms based on single-component adsorption isotherms using IAST. [Final Year Project] (Submitted) |
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TP Chemical technology Nik Salehuddin, Nik Abdul Azeem To predict the mixed gas adsorption isotherms based on single-component adsorption isotherms using IAST. |
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Final Year Project |
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Nik Salehuddin, Nik Abdul Azeem |
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Nik Salehuddin, Nik Abdul Azeem |
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Nik Salehuddin, Nik Abdul Azeem |
title |
To predict the mixed gas adsorption isotherms based on single-component adsorption isotherms using IAST. |
title_short |
To predict the mixed gas adsorption isotherms based on single-component adsorption isotherms using IAST. |
title_full |
To predict the mixed gas adsorption isotherms based on single-component adsorption isotherms using IAST. |
title_fullStr |
To predict the mixed gas adsorption isotherms based on single-component adsorption isotherms using IAST. |
title_full_unstemmed |
To predict the mixed gas adsorption isotherms based on single-component adsorption isotherms using IAST. |
title_sort |
to predict the mixed gas adsorption isotherms based on single-component adsorption isotherms using iast. |
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2024 |
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http://utpedia.utp.edu.my/id/eprint/28479/ |
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1807051947316871168 |
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13.214268 |