Question: this is do today please help Guy-Lussacis Law Measured Values Data sheet: Complete the data sheet (Table 2 below) based on your assigned set of

this is do today please help
this is do today please help Guy-Lussacis Law Measured Values Data sheet:

Guy-Lussacis Law Measured Values Data sheet: Complete the data sheet (Table 2 below) based on your assigned set of measurements (14). Apply Significant Figure rules to all the calculations. 1- Copy the assigned measurements and calculate the missing temperature values to the correct SF. Note that the temperature values are in Kelvins. 2. Using MS Excel, draw a graph of P (mmHg) vs. T(K) to graphically analyze these data between the gas temperature and its pressure, and to verify Guy-Lussac's law. 3. Based on this graph, select and include on the sheet the proper trend line to maximize the R2 value, along with the equation relating the temperature and pressure. 4- On the graph of P vs. T, extrapolate the line to the point where the pressure is zero and the temperature is zero Kelvin. You have just located the absolute zero, the temperature in outer space, and the temperature at which all molecular motion stops. Guy-Lussacis Law Measured Values Data sheet: Complete the data sheet (Table 2 below) based on your assigned set of measurements (14). Apply Significant Figure rules to all the calculations. 1- Copy the assigned measurements and calculate the missing temperature values to the correct SF. Note that the temperature values are in Kelvins. 2. Using MS Excel, draw a graph of P (mmHg) vs. T(K) to graphically analyze these data between the gas temperature and its pressure, and to verify Guy-Lussac's law. 3. Based on this graph, select and include on the sheet the proper trend line to maximize the R2 value, along with the equation relating the temperature and pressure. 4- On the graph of P vs. T, extrapolate the line to the point where the pressure is zero and the temperature is zero Kelvin. You have just located the absolute zero, the temperature in outer space, and the temperature at which all molecular motion stops

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