*67. ssm Two joggers, Jim and Tom, are both running at a speed of 4.00 m/s (see the figure). Jim has a mass of 90.0 kg, and Tom has a N +4.00 m/s +4.00 m/s +4.00 m/s Tom Jim Tom Jim -4.00 m/s (a) (b) Problem 67 mass of 55.0 kg. Concepts: (i) Does the total kinetic energy of the two- jogger system have a smaller value in part a or b of the figure, or is it the same in both cases? (ii) Does their total momentum have a smaller magnitude in part a or b of the figure, or is it the same for each? Calcula- tions: Find the kinetic energy and momentum of the two-jogger system when (a) Jim and Tom are both running due north as in part a of the figure, and (b) Jim is running due north and Tom is running due south, as in part b of the figure.

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*67. ssm Two joggers, Jim and Tom, are both running at a speed
of 4.00 m/s (see the figure). Jim has a mass of 90.0 kg, and Tom has a
N
+4.00 m/s
+4.00 m/s
+4.00 m/s
Tom
Jim
Tom
Jim
-4.00 m/s
(a)
(b)
Problem 67
mass of 55.0 kg. Concepts: (i) Does the total kinetic energy of the two-
jogger system have a smaller value in part a or b of the figure, or is it
the same in both cases? (ii) Does their total momentum have a smaller
magnitude in part a or b of the figure, or is it the same for each? Calcula-
tions: Find the kinetic energy and momentum of the two-jogger system
when (a) Jim and Tom are both running due north as in part a of the
figure, and (b) Jim is running due north and Tom is running due south,
as in part b of the figure.
Transcribed Image Text:*67. ssm Two joggers, Jim and Tom, are both running at a speed of 4.00 m/s (see the figure). Jim has a mass of 90.0 kg, and Tom has a N +4.00 m/s +4.00 m/s +4.00 m/s Tom Jim Tom Jim -4.00 m/s (a) (b) Problem 67 mass of 55.0 kg. Concepts: (i) Does the total kinetic energy of the two- jogger system have a smaller value in part a or b of the figure, or is it the same in both cases? (ii) Does their total momentum have a smaller magnitude in part a or b of the figure, or is it the same for each? Calcula- tions: Find the kinetic energy and momentum of the two-jogger system when (a) Jim and Tom are both running due north as in part a of the figure, and (b) Jim is running due north and Tom is running due south, as in part b of the figure.
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