1)T2 = T1
since the pulley are frictionless and have negligible mass.
2)T4 = M3g
the acceleration of the system is zero so,
T4 = M3g and T1 = M1g
3)T3 < T2
T2 = T3 + friction
4)False
No acceleration in the system
5)T1 = m1g
6)false
Also how do you figure it out? In the figure, M2 has more mass than M1...
In the figure, M2 has more mass than M1 and M1 has more mass than M3. The questions refer to the magnitudes of tensions and weights. M2 T2 T3 T1 T4 MI M3 There is friction between the horizontal plane and M2 (Hk + 0). M2 is observed to travel at a constant speed. Assume that the pulleys are frictionless and have negligible mass. Select the appropriate statements to complete the following sentences. T1 is ... Mig. T2 is ......
options are TRUE, FALSE, GREATER THAN, LESS
THAN, EQUAL TO
In the figure, M2 has more mass than My and M1 has more mass than M3. The questions refer to the magnitudes of tensions and weights. M2 T3 MI M3 There is friction between the horizontal plane and M2 (uk # 0). M2 is observed to travel at a constant speed. Assume that the pulleys are frictionless and have negligible mass. Select the appropriate statements to complete the following sentences....
I need the correct answer in order to give full rating.
Thanks
In the figure to the right, M2 has more mass than M1 and M1 has
more mass than M3. The questions refer to the magnitudes of
tensions and weights. There
is friction between the horizontal plane and M2 (mu_k not equal to
0). M2 is observed to travel at a constant speed. Assume that the
pulleys are frictionless and have negligible mass. Select the
appropriate symbol for each...
In the figure to the right, M2 has more mass than
M1 and M1 has more mass than M3.
The questions refer to the magnitudes of tensions and weights.
There is friction between the horizontal plane and M2
().
M2 is observed to travel at a constant speed. Assume
that the pulleys are frictionless and have negligible
mass. SEE THE PHOTO BELLOW!!!
options are True, False, Greater, Than Less, Than, or Equal
to
The figure below shows two masses m1=4.6 kg and m2=2.9 kg
connected to separate ropes which attach to the perimeter of a
uniform disk of mass M=6.5 kg and radius R (not required in
answer). If the system is released from rest what is the tension
T1? (use picture, but answer typed question)
The figure below shows two masses m1=4.2 kg and m2=2.0 kg connected to separate ropes which attach to the perimeter of a uniform disk of mass M=6.1...
The figure below shows two masses m1=4.6 kg and m2=2.9 kg
connected to separate ropes which attach to the perimeter of a
uniform disk of mass M=6.5 kg and radius R (not required in
answer). If the system is released from rest what is the tension
T1? (use picture, but answer question above not in pic)
The figure below shows two masses m1=4.2 kg and m2=2.0 kg connected to separate ropes which attach to the perimeter of a uniform disk...
2. Atwood's Table with Two Hanging Masses You have table of width L, masses m1, m2, and m3, two frictionless pulleys, and ideal string. Placing m2 on the table, you attach a bit of string to mass m1 the left pulley, to the left side of m2. Similarly, you hang mass m3 from the right side of m2 using the pulley on the right side of the table. The coefficient of friction of the table is mu. The acceleration of...
Three blocks on wheels are connected by cords of negligable
mass, as shown in the figure, and pulled to the right. The masses
of the three blocks are: m1=45 kg,
m2=7 kg, m3=18
kg. The pulling force is equal to T3=24
N. Assume the motion of the wheels is negligable (i.e. the
wheels are of negligable mass).
What is the acceleration of the system?
What is T1?
What is T2?
The figure below shows two masses m1=4.3 kg and
m2=3.0 kg connected to separate ropes which attach to
the perimeter of a uniform disk of mass M=6.9 kg and radius R (not
required in answer). If the system is released from rest what is
the tension T1?
R T T2 mi m2
The figure below shows two masses m1=4.3 kg and
m2=3.0 kg connected to separate ropes which attach to
the perimeter of a uniform disk of mass M=6.9 kg and radius R (not
required in answer). If the system is released from rest what is
the tension T1?
R T T2 mi m2