Calculating Friction Forces in a System of Blocks Connected by Cords

AI Thread Summary
The discussion centers on calculating the friction forces acting on two blocks connected by cords over frictionless pulleys, with coefficients of friction of 0.30 and 0.40 at points A and B, respectively. The user attempts to derive equations for tension and friction forces but expresses confusion about whether the blocks remain static or are in motion. Calculations for maximum friction forces and tensions are presented, leading to different acceleration values for each block. The user seeks confirmation on the correctness of their approach and calculations, indicating a need for clarification on the dynamics involved. Overall, the thread highlights the complexities of analyzing friction in a system of connected blocks.
apprentice213
Messages
21
Reaction score
0

Homework Statement



Homework Statement
the blocks shown in the figure are connected by flexible, inextensible cords passing over frictionless pulleys. at A, the coefficient fiction is 0.30 while at B, it is 0.40. compute the magnitude and direction of the friction forces and each block.

2.jpg


Homework Equations


for block A=
T-mgsin53.13-Fmax=0
Fmax=0.3(300cos53.13)

for block B=
T-mgsin36.87-Fmax=0
Fmax=0.40(200cos36.87)

m(1)g-T=m(2)

The Attempt at a Solution



for A:
Fmax=(o.30)(300cos53.13)
Fmax=54

T= 300(9.81)sin53.13
T=2354.4

for B :
Fmax=0.4(200cos36.87)
Fmax=54
T=200(9.81)sin36.87
T=1177.20

m1g-T=m2a
a=(2943-T)/200
a=244.3

AM i RiGHT ? please help thnx .. I am too confuse
 
Physics news on Phys.org
Hello!
Are the blocks to remain static? Does this question keep them stationary?
Daniel
 
Then this
m1g-T=m2a
is impossible, since a = 0.
So try again, on that point alone.
 
sorry it is kenetic..
 
Last edited:
for A:

Fmax=μk(m1)gcos53.13
54=μk(m1)gcos53.13
μk=0.03

T-300(9.81)sin53.13-μk(300)9.81cos53.13=(300)a eq(1)
200g-T=200a eq(2)

subtitute (1) and (2) to find a

a=-3.79

for block B:

Fmax=μk(m2)gcos36.87
64=μk(m2)gcos36.87
μk=0.04
T-200(9.81)sin36.87-μk(200)9.81cos36.87=(200)a eq(1)
300g-T=300a eq(2)

subtitute (1) and (2)

to find a

a=0.2AM i DOiNG RiGHT ?? please comment .. I am lack of knowledge ..
 
Last edited:
Thread 'Variable mass system : water sprayed into a moving container'
Starting with the mass considerations #m(t)# is mass of water #M_{c}# mass of container and #M(t)# mass of total system $$M(t) = M_{C} + m(t)$$ $$\Rightarrow \frac{dM(t)}{dt} = \frac{dm(t)}{dt}$$ $$P_i = Mv + u \, dm$$ $$P_f = (M + dm)(v + dv)$$ $$\Delta P = M \, dv + (v - u) \, dm$$ $$F = \frac{dP}{dt} = M \frac{dv}{dt} + (v - u) \frac{dm}{dt}$$ $$F = u \frac{dm}{dt} = \rho A u^2$$ from conservation of momentum , the cannon recoils with the same force which it applies. $$\quad \frac{dm}{dt}...
Back
Top