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You are creating fuel from a gas by increasing temperature and the pressure initially increases at the rate of 66.516 kPa/min This is a gas

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You are creating fuel from a gas by increasing temperature and the pressure initially increases at the rate of 66.516 kPa/min

This is a gas that follows the Ideal Gas Law (PV=nRT), and that the units for these calculationsare already accounted for. This means that no conversionsare necessary in your calculations.Some initial values (at time t=0) are provided below:

Pressure (P) =101 kPa Volume (V) =19L nR(a constant) =8.3145kPaL/K Temperature (T) =307K

What value do you provide to your computer for the initial rate of change of temperature in kelvin/minute?

Rate of Change of Temperature = ?

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You now have the bacteria needed to create the fuel. "Computer, what is the next step in this process?" Your computer responds that the bacteria have given off enough gas (collected in a 19 L closed container) to create the fuel, and that the fuel is developed by increasing the temperature of the gas at a rate such that the pressure will initially rise at a rate of 66.516 kPafmin (kilopascals per minute}. You control the initial rate of change of temperature, and must set this value so that the initial rate of change of pressure is 66.516 kPafmin. Once you have made this initial adjustment, the system will adjust dynamically until the fuel is created. Your computer informs you that this gas follows the Ideal Gas Law (W : nRT), and that the units for these calculations are already accounted for. This means that no conversions are necessary in your calculations. Some initial values (at time t = 0) are provided below: Pressure (P) = 101 kPa Volume (V) = 19 L RR (a constant) = 8.3145 kPaLlK Temperature (T) = 307 K What value do you provide to your computer for the initial rate of change of temperature in kelvinr'minute? Rate of Change of Temperature Number Klmin

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