Choose the best answer. -5gt? + vot + s0 for the displacement of an object in vertical motion with Referring to the solution s (t) no drag and constant gravity, assume so = 0 in considering the following statements. O Changing the time units is equivalent to a horizontal scaling of the graph of s (t) versus t. O Changing the length units is equivalent to a vertical scaling of the graph of s (t). O If you double vo, the object goes 4 times as high, but takes twice as long to get there. O If you double g, the object goes half as high in half the time. O All of the above
Choose the best answer. -5gt? + vot + s0 for the displacement of an object in vertical motion with Referring to the solution s (t) no drag and constant gravity, assume so = 0 in considering the following statements. O Changing the time units is equivalent to a horizontal scaling of the graph of s (t) versus t. O Changing the length units is equivalent to a vertical scaling of the graph of s (t). O If you double vo, the object goes 4 times as high, but takes twice as long to get there. O If you double g, the object goes half as high in half the time. O All of the above
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![Choose the best answer.
Referring to the solution s (t) = -gt? + vot + so for the displacement of an object in vertical motion with
no drag and constant gravity, assume so
O in considering the following statements.
Changing the time units is equivalent to a horizontal scaling of the graph of s (t) versus t.
Changing the length units is equivalent to a vertical scaling of the graph of s (t).
If you double vo , the object goes 4 times as high, but takes twice as long to get there.
If
you double
9,
the object goes half as high in half the time.
All of the above](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F60ac7268-52d6-466f-850c-9576cf62e38d%2F53228fdd-cacc-4658-abbb-54f78367f6f0%2Fhbvm6ye_processed.png&w=3840&q=75)
Transcribed Image Text:Choose the best answer.
Referring to the solution s (t) = -gt? + vot + so for the displacement of an object in vertical motion with
no drag and constant gravity, assume so
O in considering the following statements.
Changing the time units is equivalent to a horizontal scaling of the graph of s (t) versus t.
Changing the length units is equivalent to a vertical scaling of the graph of s (t).
If you double vo , the object goes 4 times as high, but takes twice as long to get there.
If
you double
9,
the object goes half as high in half the time.
All of the above
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