Figure 15.3 (Quick Quiz 15.2) An x-t graph for a particle under- going simple harmonic motion. At a particular time, the particle's position is indicated by @ in the graph. x(t) = A cos (wt + 4) (15.6) where A, w, and o are constants. To show explicitly that this solution satisfies Equa- tion 15.5, notice that

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Consider a graphical representation (as shown) of simple harmonic motion as described mathematically as shown. When the particle is at point Ⓐ on the graph, what can you say about its position and velocity? (a) The position and velocity are both positive. (b) The position and velocity are both negative. (c) The position is positive, and the velocity is zero. (d) The position is negative, and the velocity is zero. (e) The position is positive, and the velocity is negative. (f) The position is negative, and the velocity is positive.

Figure 15.3 (Quick Quiz 15.2)
An x-t graph for a particle under-
going simple harmonic motion.
At a particular time, the particle's
position is indicated by @ in the
graph.
Transcribed Image Text:Figure 15.3 (Quick Quiz 15.2) An x-t graph for a particle under- going simple harmonic motion. At a particular time, the particle's position is indicated by @ in the graph.
x(t) = A cos (wt + 4)
(15.6)
where A, w, and o are constants. To show explicitly that this solution satisfies Equa-
tion 15.5, notice that
Transcribed Image Text:x(t) = A cos (wt + 4) (15.6) where A, w, and o are constants. To show explicitly that this solution satisfies Equa- tion 15.5, notice that
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