1. At very low temperatures, what forces keep a gas from behaving like an ideal
ID: 2253400 • Letter: 1
Question
1. At very low temperatures, what forces keep a gas from behaving like an ideal gas? a. weak forces b. strong forces c. electrostatic forces d. van der Walls forces e. gravitational forces f. magnetic forces2.Which of the following will NOT increase the pressure if it is increased? temperature number of molecules volume average kinetic energy of the molecules All of the above None of the above 1. At very low temperatures, what forces keep a gas from behaving like an ideal gas? a. weak forces b. strong forces c. electrostatic forces d. van der Walls forces e. gravitational forces f. magnetic forces
2.Which of the following will NOT increase the pressure if it is increased? temperature number of molecules volume average kinetic energy of the molecules All of the above None of the above 1. At very low temperatures, what forces keep a gas from behaving like an ideal gas? a. weak forces b. strong forces c. electrostatic forces d. van der Walls forces e. gravitational forces f. magnetic forces
2.Which of the following will NOT increase the pressure if it is increased? temperature number of molecules volume average kinetic energy of the molecules All of the above None of the above 1. At very low temperatures, what forces keep a gas from behaving like an ideal gas? a. weak forces b. strong forces c. electrostatic forces d. van der Walls forces e. gravitational forces f. magnetic forces
2.Which of the following will NOT increase the pressure if it is increased? temperature number of molecules volume average kinetic energy of the molecules All of the above None of the above 1. At very low temperatures, what forces keep a gas from behaving like an ideal gas? a. weak forces b. strong forces c. electrostatic forces d. van der Walls forces e. gravitational forces f. magnetic forces
2.Which of the following will NOT increase the pressure if it is increased? temperature number of molecules volume average kinetic energy of the molecules All of the above None of the above temperature number of molecules volume average kinetic energy of the molecules All of the above None of the above temperature number of molecules volume average kinetic energy of the molecules All of the above None of the above temperature number of molecules volume average kinetic energy of the molecules All of the above None of the above
Explanation / Answer
1)d. van der Walls forces
2)db. number of molecules
Related Questions
Navigate
Integrity-first tutoring: explanations and feedback only — we do not complete graded work. Learn more.