Three objects A , B , and C are moving as shown in the figure below (Figure 1) .
ID: 1263134 • Letter: T
Question
Three objects A, B, and C are moving as shown in the figure below (Figure 1) . Assume that vA = 10.2m/s , vB = 9.40m/s , and vC = 2.20m/s .
A. Find the x component of the net momentum of the particles if we define the system to consist of A and C.
B.Find the y component of the net momentum of the particles if we define the system to consist of A and C.
C.Find the x component of the net momentum of the particles if we define the system to consist of B and C.
D.Find the y component of the net momentum of the particles if we define the system to consist of B and C.
E.Find the x component of the net momentum of the particles if we define the system to consist of all three objects.
F.Find the y component of the net momentum of the particles if we define the system to consist of all three objects.
Show answers as well as equation please thanks
Three objects A, B, and C are moving as shown in the figure below (Figure 1) . Assume that vA = 10.2m/s , vB = 9.40m/s , and vC = 2.20m/s . A. Find the x component of the net momentum of the particles if we define the system to consist of A and B.Find the y component of the net momentum of the particles if we define the system to consist of A and C. C.Find the x component of the net momentum of the particles if we define the system to consist of B and C. D.Find the y component of the net momentum of the particles if we define the system to consist of B and C. E.Find the x component of the net momentum of the particles if we define the system to consist of all three objects. F.Find the y component of the net momentum of the particles if we define the system to consist of all three objects. Show answers as well as equation please thanksExplanation / Answer
momentum = m x v
a) 1 x -2.20 =- 22 kgm/s
b) 5 x -10.2 = -51 kgm/s
c) -22 + 6 x 9.cos 60 = 5 kgm/s
d) 6 x 9.4 sin 60 = 48.84 kgm/s
e)5 kgm/s
f ) 48.84 - 51 = -2.15 kgm/s
Related Questions
drjack9650@gmail.com
Navigate
Integrity-first tutoring: explanations and feedback only — we do not complete graded work. Learn more.