1. Spectrometry involves measurement of a) interactions between light and matter b) wave behavior of light c) particle behavior of light d) chemical changes induced by light absorption e) none of these 2. The wave model of electromagnetic radiation is based on propagation of energy via a) oscillating electrical fields b) oscillating magnetic fields c) coupled oscillating electric and magnetic fields d) quantum particles called photons e) quantum particles called phonons 3. The process of "emission" involves a transfer of energy a) between identical atoms or molecules b) between conjugate redox partners c) from light to matter d) from matter to light e) between different phases or states of matter 4. The relation between the energy of a light wave and its wavelength is described by a) Beer's law b) the Planck equation c) the Boltzmann equation d) the Nernst equation e) Avogadro's law 5. What property of a molecule changes when it absorbs a light wave in the visible region of the electromagnetic spectrum? a) the configuration of its valence electrons b) the configuration of its core electrons c) its mass d) the lengths and/or angles of its bonds e) the configuration of its atoms' nucleons 6. The rotational energy of a certain molecule may be increased by absorption of a 110 GHz microwave. What is the wavelength of such a microwave? a) 3.28 m b) 91.5 nm c) 270 μm d) 3300 cm e) 2.72 mm

Principles of Modern Chemistry
8th Edition
ISBN:9781305079113
Author:David W. Oxtoby, H. Pat Gillis, Laurie J. Butler
Publisher:David W. Oxtoby, H. Pat Gillis, Laurie J. Butler
Chapter5: Quantum Mechanics And Atomic Structure
Section: Chapter Questions
Problem 28P: Quantum mechanics predicts that the energy of the ground state of the H atom is 13.6eV . Insight...
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1. Spectrometry involves measurement of
a) interactions between light and matter
b) wave behavior of light
c) particle behavior of light
d) chemical changes induced by light absorption
e) none of these
2. The wave model of electromagnetic radiation is based
on propagation of energy via
a) oscillating electrical fields
b) oscillating magnetic fields
c) coupled oscillating electric and magnetic fields
d) quantum particles called photons
e) quantum particles called phonons
3. The process of "emission" involves a transfer of
energy
a) between identical atoms or molecules
b) between conjugate redox partners
c) from light to matter
d) from matter to light
e) between different phases or states of matter
4. The relation between the energy of a light wave and
its wavelength is described by
a) Beer's law
b) the Planck equation
c) the Boltzmann equation
d) the Nernst equation
e) Avogadro's law
5. What property of a molecule changes when it absorbs
a light wave in the visible region of the
electromagnetic spectrum?
a) the configuration of its valence electrons
b) the configuration of its core electrons
c) its mass
d) the lengths and/or angles of its bonds
e) the configuration of its atoms' nucleons
6. The rotational energy of a certain molecule may be
increased by absorption of a 110 GHz microwave.
What is the wavelength of such a microwave?
a) 3.28 m
b) 91.5 nm
c) 270 μm
d) 3300 cm
e) 2.72 mm
Transcribed Image Text:1. Spectrometry involves measurement of a) interactions between light and matter b) wave behavior of light c) particle behavior of light d) chemical changes induced by light absorption e) none of these 2. The wave model of electromagnetic radiation is based on propagation of energy via a) oscillating electrical fields b) oscillating magnetic fields c) coupled oscillating electric and magnetic fields d) quantum particles called photons e) quantum particles called phonons 3. The process of "emission" involves a transfer of energy a) between identical atoms or molecules b) between conjugate redox partners c) from light to matter d) from matter to light e) between different phases or states of matter 4. The relation between the energy of a light wave and its wavelength is described by a) Beer's law b) the Planck equation c) the Boltzmann equation d) the Nernst equation e) Avogadro's law 5. What property of a molecule changes when it absorbs a light wave in the visible region of the electromagnetic spectrum? a) the configuration of its valence electrons b) the configuration of its core electrons c) its mass d) the lengths and/or angles of its bonds e) the configuration of its atoms' nucleons 6. The rotational energy of a certain molecule may be increased by absorption of a 110 GHz microwave. What is the wavelength of such a microwave? a) 3.28 m b) 91.5 nm c) 270 μm d) 3300 cm e) 2.72 mm
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