Q3) The Fundamental Principle of Dynamics (Newton's 2nd Law) yields F = ma for magnitudes for a mass m that is constant during motion. Then show that the expression F = mv where v is the speed and z is the magnitude of position, is nothing but the 2nd Law of Newton again for magnitudes for m = that expression in the manner of the unit analysis. (Hint: Differential 1-forms such as dt and dr can be considered as multiplication/division) [const.] after checking explicitly

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Chapter1: Units, Trigonometry. And Vectors
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Problem 1CQ: Estimate the order of magnitude of the length, in meters, of each of the following; (a) a mouse, (b)...
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Q3) The Fundamental Principle of Dynamics (Newton's 2nd Law) yields F = ma for magnitudes for a mass m that
is constant during motion. Then show that the expression F = mv where v is the speed and z is the magnitude
of position, is nothing but the 2nd Law of Newton again for magnitudes for m =
that expression in the manner of the unit analysis. (Hint: Differential 1-forms such as dt and dr can be considered
as multiplication/division)
[const.] after checking explicitly
Transcribed Image Text:Q3) The Fundamental Principle of Dynamics (Newton's 2nd Law) yields F = ma for magnitudes for a mass m that is constant during motion. Then show that the expression F = mv where v is the speed and z is the magnitude of position, is nothing but the 2nd Law of Newton again for magnitudes for m = that expression in the manner of the unit analysis. (Hint: Differential 1-forms such as dt and dr can be considered as multiplication/division) [const.] after checking explicitly
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