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| report [2017/04/29 17:23] – [7.4 Thermodynamics] team5 | report [2017/04/29 17:25] (current) – [7.4 Thermodynamics] team5 |
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| * Humidity inside the pyramid (Figure {{ref>flabel7314}}) | * Humidity inside the pyramid (Figure {{ref>flabel7314}}) |
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| This test was made to ensure the big difference between the temperature of the inside of the pyramid, the outside of the pyramid and the brine itself. In Figure 46 a graph is shown which make clear that the Temperature from the inside of the pyramid is approximately 10 °C higher than the Brine temperature and approximately 18 °C higher is than the outside temperature. By this, the team can conclude that the process can work. Namely, the evaporation of the Brine will occur and the vapor can condense at the PMMA because the outside of the pyramid is colder than the inside of the pyramid. | This test was made to ensure the big difference between the temperature of the inside of the pyramid, the outside of the pyramid and the brine itself. In Figure {{ref>flabel7313}} a graph is shown which make clear that the Temperature from the inside of the pyramid is approximately 10 °C higher than the Brine temperature and approximately 18 °C higher is than the outside temperature. By this, the team can conclude that the process can work. Namely, the evaporation of the Brine will occur and the vapor can condense at the PMMA because the outside of the pyramid is colder than the inside of the pyramid. |
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| <WRAP centeralign> | <WRAP centeralign> |