QuestionJuly 29, 2025

Under which conditions are the principles of relativity and uncertainty better suited than Newtonian physics for describing the motion of objects? A. Very small objects moving at close to the speed of light B. Objects that are accelerating C. Objects at rest D. Very large objects moving at slow speeds

Under which conditions are the principles of relativity and uncertainty better suited than Newtonian physics for describing the motion of objects? A. Very small objects moving at close to the speed of light B. Objects that are accelerating C. Objects at rest D. Very large objects moving at slow speeds
Under which conditions are the principles of relativity and uncertainty better
suited than Newtonian physics for describing the motion of objects?
A. Very small objects moving at close to the speed of light
B. Objects that are accelerating
C. Objects at rest
D. Very large objects moving at slow speeds

Solution
4.5(350 votes)

Answer

A. Very small objects moving at close to the speed of light Explanation 1. Identify the principles of relativity and uncertainty The principles of relativity (Einstein's theory) are suited for objects moving at speeds close to the speed of light. The uncertainty principle (quantum mechanics) applies to very small objects. 2. Analyze each option A. Very small objects moving at close to the speed of light - This involves both relativity (due to high speed) and quantum mechanics (due to small size). B. Objects that are accelerating - Newtonian physics can handle acceleration unless at relativistic speeds or quantum scales. C. Objects at rest - Newtonian physics is sufficient. D. Very large objects moving at slow speeds - Newtonian physics is typically adequate.

Explanation

1. Identify the principles of relativity and uncertainty<br /> The principles of relativity (Einstein's theory) are suited for objects moving at speeds close to the speed of light. The uncertainty principle (quantum mechanics) applies to very small objects.<br />2. Analyze each option<br /> A. Very small objects moving at close to the speed of light - This involves both relativity (due to high speed) and quantum mechanics (due to small size).<br /> B. Objects that are accelerating - Newtonian physics can handle acceleration unless at relativistic speeds or quantum scales.<br /> C. Objects at rest - Newtonian physics is sufficient.<br /> D. Very large objects moving at slow speeds - Newtonian physics is typically adequate.
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