1. Visible light, radio waves, microwave radiation, infrared, ultraviolet radiation, X-rays, and gamma rays all constitute
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the electromagnetic spectrum. Which of the following characteristics do all of these kinds of radiation share?
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A. They all have the ability to generate heat in objects.
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B. They all have the same frequencies.
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C. They are all the transmission of energy in the form of waves.
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D. They have equal energies.
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E. They have the same electron spin state.
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Medium Gradable: L L
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Subtopic: Electromagnetic Radiation (Wave
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Properties) Topic: Quantum Theory and
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Atomic Structure L
2. Select the arrangement of electromagnetic radiation which starts with the shortest wavelength and increases to
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longest wavelength.
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A. radio, infrared, ultraviolet, gamma rays
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B. radio, ultraviolet, infrared, gamma rays
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C. gamma rays, radio, ultraviolet, infrared
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D. gamma rays, infrared, radio, ultraviolet
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E. gamma rays, ultraviolet, infrared, radio
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Navigation Bloom's L L
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Hard Gradable: L L
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Subtopic: Electromagnetic Radiation (Wave Properties)
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Subtopic: Measurement (SI L L L
Units) Subtopic: Scientific Notation and Significant
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Figures Topic: Quantum Theory and Atomic
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Structure
3. Select the arrangement of electromagnetic radiation which starts with the lowest energy and increases to the greatest
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energy.
A. radio, infrared, ultraviolet, gamma rays
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radio, ultraviolet, infrared, gamma rays
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gamma rays, infrared, radio, ultraviolet
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gamma rays, ultraviolet, infrared, radio
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infrared, ultraviolet, radio, gamma rays
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Accessibility: Keyboard L L
Navigation Bloom's L L
Level: 5. Evaluate L L
Difficulty: L
Hard Gradable: L L
automatic
Subtopic: Electromagnetic Radiation (Wave
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Properties) Topic: Quantum Theory and
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Atomic Structure L
2-1
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4. What is the emission of light at only specific wavelengths?
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A. Emission spectra L
B. Hydrogen spectrum L
C. Wave spectra L
D. Limited spectra L
E. Line spectra L
Accessibility: Keyboard L L
Navigation Bloom's Level: L L L
2. Understand L
Difficulty: L
Easy Gradable: L L
automatic
Subtopic: Atomic Spectra (Bohr Model of the
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Atom) Subtopic: Electromagnetic Radiation (Wave
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Properties)
Subtopic: Measurement (SI L L L
Units) Subtopic: Scientific Notation and Significant
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Figures Topic: Quantum Theory and Atomic
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Structure
5. List the following types of radiation from lowest frequency to highest frequency: microwave, X ray,
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ultraviolet, visible, and infrared L L L
A. microwave < infrared < visible < ultraviolet < X ray L L L L L L L L L
B. X ray < ultraviolet < visible < infrared < microwave
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C.visible < ultraviolet < microwave < X ray < infrared
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D. infrared < X ray < microwave < ultraviolet < visible
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E. infrared < visible < microwave < ultraviolet < X ray
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Navigation Bloom's L L
Level: 5. Evaluate L L
Difficulty: L
Easy Gradable: L L
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Subtopic: Electromagnetic Radiation (Wave
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Properties) Topic: Quantum Theory and
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Atomic Structure L
6. Which of the following electron transitions would be expected to emit any light in the Bohr model of the atom?
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A. n = 1 to n = 3
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B. n = 5 to n = 6
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C. n = 2 to n = 5
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D. n = 4 to n = 3
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Subtopic: Atomic Spectra (Bohr Model of the
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Atom) Topic: Quantum Theory and Atomic
L L L L L L
Structure
2-2
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7. Which of the following electron transitions would be expected to emit any light in the Bohr model of the atom?
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A. n = 1 to n = 4
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B. n = 3 to n = 1
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C. n = 2 to n = 3
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D. n = 5 to n = 7
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Accessibility: Keyboard L L
Navigation Bloom's Level: L L L
2. Understand L
Difficulty: L
Easy Gradable: L L
automatic
Subtopic: Atomic Spectra (Bohr Model of the
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Atom) Topic: Quantum Theory and Atomic
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Structure
8. Which of the following electron transitions would be expected to absorb any light in the Bohr model of the atom?
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A. n = 1 to n = 3
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B. n = 3 to n = 2
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C. n = 4 to n = 2
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D. n = 6 to n = 5
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Accessibility: Keyboard L L
Navigation Bloom's Level: L L L
2. Understand L
Difficulty: L
Easy Gradable: L L
automatic
Subtopic: Atomic Spectra (Bohr Model of the
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Atom) Topic: Quantum Theory and Atomic
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Structure
9. Which of the following electron transitions would be expected to absorb any light in the Bohr model of the atom?
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A. n = 7 to n = 2
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B. n = 5 to n = 6
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C. n = 1 to n = 3
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D. n = 3 to n = 5
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Accessibility: Keyboard L L
Navigation Bloom's Level: L L L
2. Understand L
Difficulty: L
Easy Gradable: L L
automatic
Subtopic: Atomic Spectra (Bohr Model of the
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10. The size of an atomic orbital is associated with
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Atom) Topic: Quantum Theory and Atomic
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Structure
A. the principal quantum number (n).
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B. the angular momentum quantum number (l).
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C. the magnetic quantum number (ml).
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D. the spin quantum number (ms).
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E. the angular momentum and magnetic quantum numbers, together.
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2-3
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