Answer : The correct option is (3) 500 K and 0.1 atm.
Explanation :
A real gas behaves ideally at high temperature and low pressure.
The ideal gas equation is,
where,
P = pressure of gas
V = Volume of gas
R = Gas constant
T = temperature of gas
n = number of moles of gas
The ideal gas works properly when the inter-molecular interactions between the gas molecules and volume of gas molecule will be negligible. This is possible when pressure is low and temperature is high.
Therefore, the correct option is (3) 500 K and 0.1 atm.
Answer:
The correct answer is (3).
Explanation:
A real gas can behave ideally at high temperatures and low pressures. The ideal gas is correctly characterized when the intermolecular interactions between the gas molecules and the volume of the gas molecule are negligible. This is only possible when system conditions are at low pressures and high temperatures.
Have a nice day!
Answer:
The given blank can be filled with separation.
Explanation:
A technique, which is used for distinguishing particles from a solution on the basis of shape, size, the viscosity of the medium, density, and rotor speed is known as centrifugation. The machine used for this purpose is known as a centrifuge. The centrifuges majorly have an application in science, and for this centrifugal force is used that distinguishes liquids, which exhibits distinct weights.
This is actually D. separation by density
1.State, in words, what is happening in the equation. (Example for a different equation: In the equation C + O2→ CO2 carbon and oxygen combine to make carbon dioxide.)
2.Is this equation balanced? Explain why or why not.
3.State which compounds are the reactants and which are the products. Use both the common name and the chemical formula. (Example for a different equation: C + O2 → CO2, carbon–C and Oxygen–O are the reactants and CO2 is the product. )