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Mathematics, 04.07.2020 19:01 1963038660

Given n moles of gas, the relationship between pressure P, temperature T, and volume V can be approximated by the formula PV = n RT where P is in atmospheres, V is m Liters, T is in degrees Kelvin (degrees Kelvin = degrees Celsius +273.15), and R is the ideal gas constant [0.08206 L . atm/(mol . K)].Assume we have 10 moles of gas in a balloon-type bladder. Initially we have a volume of 1 liter at "STP" (T = 273.15, P = 1). As time goes on, the gas is heated. The following expresses the temperature T of the gas as a function of the time elapsed t since the beginning of the experiment: T = 323.15 - 50/t + 1 The bladder begins to expand over time as a function also of the strength s of its material, with the following formula describing how the volume V of the gas which can occupy the bladder changes as a function of the number of minutes t and the material strength s (where s is measured in millikents). V = 2(2 - e^-3ts) 1. Describe how the pressure of the gas in the bladder changes as a function of time. 2. Describe how the pressure of the gas in the bladder changes as a function of the strength of the bladder. 3. If the experiment takes place in a one-millikent bladder, what is the pressure of the gas in the box after 4 minutes? 4. If the experiment is allowed to run for a very long time, what value will P approach? What value will dP/dt approach?

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Given n moles of gas, the relationship between pressure P, temperature T, and volume V can be approx...
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