What is the magnitude of the force of static friction between the top and bottom blocks? (a) zero newtons 2x5 ((b) 10 N 20 N 25 N 30 N What is the minimum coefficient of static friction necessary to keep the top block from slipping on the bottom block? Mos

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I need solution for 4.2 and 4.3
4
4.1
4.2
4.3
Newton's Laws of Motion
Two blocks rest on a horizontal
frictionless surface as shown. The
surface between the top and bottom
blocks is roughened so that there is no
slipping between the two blocks. A 30
N force is applied to the bottom block
as suggested in the figure.
(b)
(c)
(d)
What is the magnitude of the acceleration of the "two block" system?
30
2m/s²
5+10
(b)
(d)
(e)
(a)
(b)
(d)
(e)
a = F
1 m/s²
2 m/s²
3 m/s²
6 m/s²
15 m/s²
What is the magnitude of the force of static friction between the top and bottom blocks?
zero newtons
2x5
10 N
20 N
25 N
30 N
0.05
0.10
0.20
0.30
0.40
Frehend
=
mqa
5 kg
10 kg
↓
1819.8
What is the minimum coefficient of static friction necessary to keep the top block from
slipping on the bottom block?
Fr= MN
30 N
NOVOTE
Transcribed Image Text:4 4.1 4.2 4.3 Newton's Laws of Motion Two blocks rest on a horizontal frictionless surface as shown. The surface between the top and bottom blocks is roughened so that there is no slipping between the two blocks. A 30 N force is applied to the bottom block as suggested in the figure. (b) (c) (d) What is the magnitude of the acceleration of the "two block" system? 30 2m/s² 5+10 (b) (d) (e) (a) (b) (d) (e) a = F 1 m/s² 2 m/s² 3 m/s² 6 m/s² 15 m/s² What is the magnitude of the force of static friction between the top and bottom blocks? zero newtons 2x5 10 N 20 N 25 N 30 N 0.05 0.10 0.20 0.30 0.40 Frehend = mqa 5 kg 10 kg ↓ 1819.8 What is the minimum coefficient of static friction necessary to keep the top block from slipping on the bottom block? Fr= MN 30 N NOVOTE
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