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![a) Refractive index, n and (b) extinction coefficient, k of VO 2 thin... | Download Scientific Diagram a) Refractive index, n and (b) extinction coefficient, k of VO 2 thin... | Download Scientific Diagram](https://www.researchgate.net/publication/335577946/figure/fig1/AS:799053969383426@1567520720515/a-Refractive-index-n-and-b-extinction-coefficient-k-of-VO-2-thin-films-e-82-nm.jpg)
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![SOLVED: 1. Under constant pressure condition, a sample of hydrogen gas initially at 85°C and 7.2 L is cooled until its final volume 4.1 L. What is final temperature? 2.The volume of SOLVED: 1. Under constant pressure condition, a sample of hydrogen gas initially at 85°C and 7.2 L is cooled until its final volume 4.1 L. What is final temperature? 2.The volume of](https://cdn.numerade.com/ask_previews/04ab4e12-1790-435d-9d6d-29e051fd40a9_large.jpg)
SOLVED: 1. Under constant pressure condition, a sample of hydrogen gas initially at 85°C and 7.2 L is cooled until its final volume 4.1 L. What is final temperature? 2.The volume of
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![A pure substance Cv=0.733 kJ/kg.K undergoes a reversible process in which its temperature increases linearity from 40oC to 85oC and its specific entropy increases by 600 J/kg.K. The work done by the A pure substance Cv=0.733 kJ/kg.K undergoes a reversible process in which its temperature increases linearity from 40oC to 85oC and its specific entropy increases by 600 J/kg.K. The work done by the](https://df0b18phdhzpx.cloudfront.net/ckeditor_assets/pictures/1434717/original_thermodynamics_1_Q_14_sol.png)
A pure substance Cv=0.733 kJ/kg.K undergoes a reversible process in which its temperature increases linearity from 40oC to 85oC and its specific entropy increases by 600 J/kg.K. The work done by the
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