Zorch, an archenemy of Superman, decides to slow Earth's rotation to once per 28.0 h by exerting an opposing force at and parallel to the equator. Superman is not immediately concerned, because he knows Zorch can only exert a force of 4.00 × 10 7 N (a little greater than a Saturn V rocket's thrust). How long must Zorch push with this force to accomplish his goal? (This period gives Superman time to devote to other villains.) Explicitly show how you follow the steps found in Problem-Solving Strategy for Rotational Dynamics.
Zorch, an archenemy of Superman, decides to slow Earth's rotation to once per 28.0 h by exerting an opposing force at and parallel to the equator. Superman is not immediately concerned, because he knows Zorch can only exert a force of 4.00 × 10 7 N (a little greater than a Saturn V rocket's thrust). How long must Zorch push with this force to accomplish his goal? (This period gives Superman time to devote to other villains.) Explicitly show how you follow the steps found in Problem-Solving Strategy for Rotational Dynamics.
Zorch, an archenemy of Superman, decides to slow Earth's rotation to once per 28.0 h by exerting an opposing force at and parallel to the equator. Superman is not immediately concerned, because he knows Zorch can only exert a force of
4.00
×
10
7
N (a little greater than a Saturn V rocket's thrust). How long must Zorch push with this force to accomplish his goal? (This period gives Superman time to devote to other villains.) Explicitly show how you follow the steps found in Problem-Solving Strategy for Rotational Dynamics.
An electron has an initial speed of 5.26 x 100 m/s in a uniform 5.73 x 105 N/C strength electric field. The field accelerates the electron in the direction opposite to its initial velocity.
(a) What is the direction of the electric field?
opposite direction to the electron's initial velocity
same direction as the electron's initial velocity
not enough information to decide
×
What is the direction of the force on the electron? How does it compare to the direction of the electric field, considering the sign of the electron's charge?
(b) How far does the electron travel before coming to rest?
0.0781
×
What kinematic equation is relevant here? How do you calculate the force due to the electric field? m
(c) How long does it take the electron to come to rest?
5.27e8
What is the final velocity of the electron? s
(d) What is the electron's speed when it returns to its starting point?
5.26e6
m/s
(a) What magnitude point charge creates a 90,000 N/C electric field at a distance of 0.235 m?
5.53e-7
C
(b) How large is the field at 22.2 m?
9e4
Using the equation for the electric field due to a point charge, and knowing the charge from part (a), can you solve for the field? N/C
No chatgpt pls will upvote Already got wrong chatgpt answer
Physics for Scientists and Engineers: A Strategic Approach, Vol. 1 (Chs 1-21) (4th Edition)
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