GO In Fig. 13-37 a , particle A is fixed in place at x = −0.20 m on the x axis and particle B. with a mass of 1.0 kg, is fixed in place at the origin. Particle C (not shown) can be moved along the x axis, between particle B and x = ∞. Figure 13-37 b shows the x component F net, x of the net gravitational force on particle B due to particles A and C, as a function of position x of particle C. The plot actually extends to the right, approaching an asymptote of −4.17 × 10 −10 N as x → ∞. What are the masses of (a) particle A and (b) particle C? Figure 13-37 Problem 12.
GO In Fig. 13-37 a , particle A is fixed in place at x = −0.20 m on the x axis and particle B. with a mass of 1.0 kg, is fixed in place at the origin. Particle C (not shown) can be moved along the x axis, between particle B and x = ∞. Figure 13-37 b shows the x component F net, x of the net gravitational force on particle B due to particles A and C, as a function of position x of particle C. The plot actually extends to the right, approaching an asymptote of −4.17 × 10 −10 N as x → ∞. What are the masses of (a) particle A and (b) particle C? Figure 13-37 Problem 12.
GO In Fig. 13-37a, particle A is fixed in place at x = −0.20 m on the x axis and particle B. with a mass of 1.0 kg, is fixed in place at the origin. Particle C (not shown) can be moved along the x axis, between particle B and x = ∞. Figure 13-37b shows the x component Fnet, x of the net gravitational force on particle B due to particles A and C, as a function of position x of particle C. The plot actually extends to the right, approaching an asymptote of −4.17 × 10−10 N as x → ∞. What are the masses of (a) particle A and (b) particle C?
Draw the velocity vectors starting at the black dots and the acceleration vectors including those equal to zero.
You toss a ball straight up by giving it an initial upward velocity of 18 m/s. What is the velocity of the ball 0.50 s after you released it? Define the positive y direction to be upward,
the direction that you toss the ball.
10:44 AM Fri Jan 31
O Better endurance
Limb end points travel less
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Question 2
Take Quiz
1 pt:
Two springs are arranged in series, and the whole arrangement is pulled a vertical distance of 2
cm. If the force in Spring A is 10 N, what is the force in Spring B as a result of the
displacement?
05N
5 N
0.2 N
10 N
O2N
Question 3
1 pts
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