Exam 7: The Quantum-Mechanical Model of the Atom
Exam 1: Matter, measurement, and Problem Solving170 Questions
Exam 2: Atoms and Elements157 Questions
Exam 3: Molecules,compounds,and Chemical Equations175 Questions
Exam 4: Chemical Quantities and Aqueous Reactions239 Questions
Exam 5: Gases182 Questions
Exam 6: Thermochemistry143 Questions
Exam 7: The Quantum-Mechanical Model of the Atom134 Questions
Exam 8: Periodic Properties of the Elements147 Questions
Exam 9: Chemical Bonding I: Lewis Theory166 Questions
Exam 10: Chemical Bonding Ii: Molecular Shapes,valence Bond Theory,144 Questions
Exam 11: Liquids,solids,and Intermolecular Forces128 Questions
Exam 12: Solids and Modern Materials81 Questions
Exam 13: Solutions157 Questions
Exam 14: Chemical Kinetics154 Questions
Exam 15: Chemical Equilibrium141 Questions
Exam 16: Acids and Bases160 Questions
Exam 17: Aqueous Ionic Equilibrium187 Questions
Exam 18: Free Energy and Thermodynamics130 Questions
Exam 19: Electrochemistry151 Questions
Exam 20: Radioactivity and Nuclear Chemistry135 Questions
Exam 21: Organic Chemistry104 Questions
Exam 22: Biochemistry68 Questions
Exam 23: Chemistry of the Nonmetals66 Questions
Exam 24: Metals and Metallurgy60 Questions
Exam 25: Transition Metals and Coordination Compounds73 Questions
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Electromagnetic radiation with a wavelength of 745 nm appears as red light to the human eye.The energy of one photon of this light is ________ J.
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How much energy (in kJ)do 3.0 moles of photons,all with a wavelength of 670 nm,contain?
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Sketch one of the 3p orbitals below.How are they different from the 2p orbitals?
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If two electrons in the same atom have the same value of l,they are
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Calculate the frequency of light associated with the transition from n = 2 to n = 3 in the hydrogen atom.
(Multiple Choice)
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Which of the following colors of electromagnetic radiation has the shortest wavelength?
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Which of the following transitions (in a hydrogen atom)represent absorption of the smallest frequency photon?
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It is possible to determine the ionization energy for hydrogen using the Bohr equation.Calculate the ionization energy (in kJ)for a mole of hydrogen atoms,making the assumption that ionization is the transition from n = 1 to n = ∞.
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Determine the mass of a ball with a velocity of 45.0 m/s and a wavelength of 8.92 × 10-34 m.
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Determine the mass of a ball with a wavelength of 3.45 × 10-34 m and a velocity of 6.55 m/s.
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What is the maximum number of p orbitals that are possible?
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