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Q. In the kinetic theory of gases, which of the following quantities is directly proportional to the square of the speed of gas molecules?
  • A. Pressure
  • B. Volume
  • C. Temperature
  • D. Density
Q. In the Langmuir adsorption isotherm, what assumption is made about the adsorption sites?
  • A. They are identical and have the same energy
  • B. They are different and have varying energy
  • C. They can accommodate multiple layers
  • D. They are not limited in number
Q. In the Langmuir adsorption isotherm, what does the term 'b' represent?
  • A. Adsorption energy
  • B. Surface area
  • C. Equilibrium constant
  • D. Adsorption capacity
Q. In the measurement 0.007890, how many significant figures are present?
  • A. 3
  • B. 4
  • C. 5
  • D. 6
Q. In the measurement 0.03040, how many significant figures are present?
  • A. 3
  • B. 4
  • C. 5
  • D. 2
Q. In the measurement 123.45, how many significant figures are present?
  • A. 3
  • B. 4
  • C. 5
  • D. 6
Q. In the measurement 150.0, how many significant figures are present?
  • A. 2
  • B. 3
  • C. 4
  • D. 5
Q. In the measurement 2500 kg, how many significant figures are there?
  • A. 2
  • B. 3
  • C. 4
  • D. 1
Q. In the molecular orbital diagram of diatomic nitrogen (N2), which orbitals are filled first?
  • A. σ2s, σ*2s
  • B. σ2p, π2p
  • C. π2p, σ2p
  • D. σ*2p, π*2p
Q. In the molecular orbital theory, which of the following is true for the π molecular orbitals?
  • A. They are formed by end-to-end overlap.
  • B. They are lower in energy than σ orbitals.
  • C. They can accommodate a maximum of 2 electrons.
  • D. They are always bonding.
Q. In the molecular orbital theory, which of the following orbitals is lower in energy than the 2p orbitals?
  • A. 2s
  • B. 3s
  • C. 2p
  • D. 3p
Q. In the molecular orbital theory, which of the following orbitals is lower in energy for homonuclear diatomic molecules?
  • A. σ2p
  • B. π2p
  • C. σ2s
  • D. π2s
Q. In the molecular orbital theory, which of the following orbitals is the highest energy in O2?
  • A. σ2p
  • B. π2p
  • C. σ*2p
  • D. π*2p
Q. In the molecular orbital theory, which of the following orbitals is the highest occupied molecular orbital (HOMO) in O2?
  • A. σ2p
  • B. π2p
  • C. σ*2p
  • D. π*2p
Q. In the molecular orbital theory, which of the following pairs of orbitals can combine to form a sigma bond?
  • A. s and p
  • B. p and p
  • C. s and s
  • D. d and p
Q. In the molecular orbital theory, which orbitals combine to form sigma bonds?
  • A. s and p orbitals
  • B. p and d orbitals
  • C. s orbitals only
  • D. p orbitals only
Q. In the number 0.0004560, how many significant figures are present?
  • A. 3
  • B. 4
  • C. 5
  • D. 6
Q. In the number 0.007890, how many significant figures are there?
  • A. 3
  • B. 4
  • C. 5
  • D. 6
Q. In the number 2500, how many significant figures are there?
  • A. 2
  • B. 3
  • C. 4
  • D. 0
Q. In the number 4500, how many significant figures are there?
  • A. 2
  • B. 3
  • C. 4
  • D. 5
Q. In the number 5000, how many significant figures are there?
  • A. 1
  • B. 2
  • C. 3
  • D. 4
Q. In the photoelectric effect, if the frequency of incident light is doubled, what happens to the kinetic energy of the emitted electrons?
  • A. It doubles
  • B. It quadruples
  • C. It remains the same
  • D. It becomes zero
Q. In the photoelectric effect, increasing the intensity of light increases the:
  • A. Kinetic energy of emitted electrons
  • B. Number of emitted electrons
  • C. Wavelength of emitted light
  • D. Work function
Q. In the photoelectric effect, the kinetic energy of the emitted electrons depends on which of the following?
  • A. Frequency of the incident light
  • B. Intensity of the incident light
  • C. Wavelength of the incident light
  • D. All of the above
Q. In the photoelectric effect, what does the term 'work function' refer to?
  • A. The energy of the incident photons
  • B. The energy required to remove an electron from the metal
  • C. The maximum kinetic energy of emitted electrons
  • D. The frequency of the incident light
Q. In the photoelectric effect, what does the work function represent?
  • A. The energy of the incident photons
  • B. The maximum kinetic energy of emitted electrons
  • C. The minimum energy required to remove an electron from the metal
  • D. The frequency of the incident light
Q. In the photoelectric effect, what happens to the emitted electrons if the frequency of the incident light is just at the threshold frequency?
  • A. They are emitted with maximum kinetic energy
  • B. They are emitted with zero kinetic energy
  • C. They are not emitted
  • D. They are emitted with negative kinetic energy
Q. In the photoelectric effect, what happens to the energy of the incident photon if it exceeds the work function?
  • A. All energy is used to emit electrons
  • B. Excess energy becomes kinetic energy
  • C. No electrons are emitted
  • D. Energy is lost as heat
Q. In the photoelectric effect, what happens to the kinetic energy of emitted electrons if the frequency of incident light is increased?
  • A. It decreases
  • B. It remains constant
  • C. It increases linearly with frequency
  • D. It increases with the square of frequency
Q. In the photoelectric effect, what happens to the kinetic energy of emitted electrons if the intensity of light is increased while keeping frequency constant?
  • A. Increases
  • B. Decreases
  • C. Remains the same
  • D. Becomes zero
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