Imagine an alternate universe where the value of the Planck constant is 6.62607×10 J-s. In that universe, which of the following objects would require quantum mechanics to describe, that is, would show both particle and wave properties? Which objects would act like everyday objects, and be adequately described by classical mechanics? object A mosquito with a mass of 2.0 mg, 6.5 mm long, moving at 1.5 m/s. A ball with a mass of 100. g. 10.9 cm wide, moving at 32.4 m/s. A virus with a mass of 1.7 x 10'17 g. 300. nm wide, moving at 0.70 μm/s. A human with a mass of 86. kg, 2.5 m high, moving at 3.9 m/s. quantum or classical? O classical quantum O classical quantum O classical quantum O classical quantum X
Imagine an alternate universe where the value of the Planck constant is 6.62607×10 J-s. In that universe, which of the following objects would require quantum mechanics to describe, that is, would show both particle and wave properties? Which objects would act like everyday objects, and be adequately described by classical mechanics? object A mosquito with a mass of 2.0 mg, 6.5 mm long, moving at 1.5 m/s. A ball with a mass of 100. g. 10.9 cm wide, moving at 32.4 m/s. A virus with a mass of 1.7 x 10'17 g. 300. nm wide, moving at 0.70 μm/s. A human with a mass of 86. kg, 2.5 m high, moving at 3.9 m/s. quantum or classical? O classical quantum O classical quantum O classical quantum O classical quantum X
Chemistry
10th Edition
ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Publisher:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Chapter1: Chemical Foundations
Section: Chapter Questions
Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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Transcribed Image Text:Imagine an alternate universe where the value of the Planck constant is 6.62607 × 10 J-s.
In that universe, which of the following objects would require quantum mechanics to describe, that is, would show both particle and wave properties? Which
objects would act like everyday objects, and be adequately described by classical mechanics?
object
A mosquito with a mass of 2.0 mg, 6.5 mm long, moving
at 1.5 m/s.
A ball with a mass of 100. g. 10.9 cm wide, moving at
32.4 m/s.
A virus with a mass of 1.7 x 10'17 g, 300. nm wide,
moving at 0.70 um/s.
A human with a mass of 86. kg, 2.5 m high, moving at
3.9 m/s
quantum or classical?
classical
quantum
O classical
quantum
O classical
quantum
classical
quantum
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