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A 20-Kg Block Starts from Rest on the Positive X Axis

Question 39

Multiple Choice

A 2.0-kg block starts from rest on the positive x axis 3.0 m from the origin and thereafter has an acceleration given by A 2.0-kg block starts from rest on the positive x axis 3.0 m from the origin and thereafter has an acceleration given by   in m/s<sup>2</sup>. At the end of 2.0 s its angular momentum about the origin is: A)  0 B)  (-36 kg. m<sup>2</sup>/s)    C)  (+48 kg . m<sup>2</sup>/s)    D)  (-96 kg .m<sup>2</sup>/s)    E)  (+96 kg . m<sup>2</sup>/s)   in m/s2. At the end of 2.0 s its angular momentum about the origin is:


A) 0
B) (-36 kg. m2/s) A 2.0-kg block starts from rest on the positive x axis 3.0 m from the origin and thereafter has an acceleration given by   in m/s<sup>2</sup>. At the end of 2.0 s its angular momentum about the origin is: A)  0 B)  (-36 kg. m<sup>2</sup>/s)    C)  (+48 kg . m<sup>2</sup>/s)    D)  (-96 kg .m<sup>2</sup>/s)    E)  (+96 kg . m<sup>2</sup>/s)
C) (+48 kg . m2/s) A 2.0-kg block starts from rest on the positive x axis 3.0 m from the origin and thereafter has an acceleration given by   in m/s<sup>2</sup>. At the end of 2.0 s its angular momentum about the origin is: A)  0 B)  (-36 kg. m<sup>2</sup>/s)    C)  (+48 kg . m<sup>2</sup>/s)    D)  (-96 kg .m<sup>2</sup>/s)    E)  (+96 kg . m<sup>2</sup>/s)
D) (-96 kg .m2/s) A 2.0-kg block starts from rest on the positive x axis 3.0 m from the origin and thereafter has an acceleration given by   in m/s<sup>2</sup>. At the end of 2.0 s its angular momentum about the origin is: A)  0 B)  (-36 kg. m<sup>2</sup>/s)    C)  (+48 kg . m<sup>2</sup>/s)    D)  (-96 kg .m<sup>2</sup>/s)    E)  (+96 kg . m<sup>2</sup>/s)
E) (+96 kg . m2/s) A 2.0-kg block starts from rest on the positive x axis 3.0 m from the origin and thereafter has an acceleration given by   in m/s<sup>2</sup>. At the end of 2.0 s its angular momentum about the origin is: A)  0 B)  (-36 kg. m<sup>2</sup>/s)    C)  (+48 kg . m<sup>2</sup>/s)    D)  (-96 kg .m<sup>2</sup>/s)    E)  (+96 kg . m<sup>2</sup>/s)

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