subject
Engineering, 30.06.2020 18:01 sksksjs

The Apparent Molecular Weight of Air Experiment 1: Study the Relationship Between Volume and Temperature for a Sample of Air Lab Results Record the data you collected for volume and temperature in the table below. Volume of Air in the Syringe (mL) Total Volume of Air (mL) Temperature (ºC) 75 225.0 21.5 58.6 208.6 0 89.1 239.1 40 104.4 254.4 60 119.7 269.7 80 135.0 285.0 Create and a graph of total volume of air (y-axis) versus the temperature (x-axis). What is the relationship between volume and temperature? The volume increases as the temperature increases. Experiment 2: Study the Relationship Between Volume and Pressure for a Sample of Air Lab Results Record the data you collected for volume and temperature in the table below. Volume of Air (mL) Pressure (atm) 1/Pressure (atm–1) Data Analysis Create and save a graph of total 1/pressure (y-axis) versus volume of air (x-axis).
Experiment 3: Measure the Mass of Air Lab Results Record the data you collected for mass and pressure in the table below. Mass of Flask and Air (g) Pressure (atm) Data Analysis Calculate and record the following data in the table below. To calculate the number of moles and molar mass use the equations derived from the ideal gas law. Mass of Air (g) Number of Moles of Air Molar Mass of Air (g/mol)
Conclusions The molar masses discussed here are for dry air, but air often has some water vapor mixed in with it. Would you expect the apparent molar mass of wet air to be less or more than of dry air? Explain. Below is a graph of the mass of air as a function of the pressure. How does the data appear to be related? The relattion is consitenet when the mass increse the prusser increse.

ansver
Answers: 3

Another question on Engineering

question
Engineering, 04.07.2019 19:20
Air enters a horizontal, constant-diameter heating duct operating at steady state at 290 k, 1 bar, with a volumetric flow rate of 0.25 m°/s, and exits at 325 k, 0.95 bar. the flow area is 0.04 m2. assuming the ideal gas model with k = 1.4 for the air, determine (a) the velocity at the inlet and exit, each in m/s, and (c) the rate of heat transfer, in kw flow rate, in kg/s, (b) the mass kg 0.3
Answers: 2
question
Engineering, 06.07.2019 04:30
Mention two examples each of the direct and indirect measurement of force.
Answers: 3
question
Engineering, 06.07.2019 04:30
What is the principle of operation of a mechanical dynamometer?
Answers: 1
question
Engineering, 06.07.2019 04:30
Acylindrical tank is capable of storing 20,000 foot-pounds [ft ibf] of energy for use in your roommate's 2006 subaru wrx. the tank contains nitrous oxide, n20, which you may assume is an ideal gas and has a molecular weight of 44 grams per mole 1g/mol. the tank fits in a space in the trunk that is no wider than 6 inches fin] and no longer than 10 inches [inj, and you may assume the warm clemson weather is keeping the temperature of the tank inside the trunk at a constant 100 degrees fahrenheit [°fl. what is the weight of the nitrous oxide occupying the tank when full, in units of dynes
Answers: 1
You know the right answer?
The Apparent Molecular Weight of Air Experiment 1: Study the Relationship Between Volume and Tempera...
Questions
question
Mathematics, 23.05.2020 21:58
Questions on the website: 13722363