Consider a system of two particles in the xy plane: m 1 = 2.00 kg is at the location r → 1 = ( 1.00 i ^ + 2.00 j ^ ) m and has a velocity of ( 3.00 i ^ + 0.500 j ^ ) m / s ; m 2 = 3.00 kg is at r → 2 = ( − 4.00 i ^ + 3.00 j ^ ) m and has velocity ( 3.00 i ^ + 2.00 j ^ ) m / s . (a) Plot these particles on a grid or graph paper. Draw their position vectors and show their velocities. (b) Find the position of the center of mass of the system and mark it on the grid. (c) Determine the velocity of the center of mass and also show it on the diagram. (d) What is the total linear momentum of the system?
Consider a system of two particles in the xy plane: m 1 = 2.00 kg is at the location r → 1 = ( 1.00 i ^ + 2.00 j ^ ) m and has a velocity of ( 3.00 i ^ + 0.500 j ^ ) m / s ; m 2 = 3.00 kg is at r → 2 = ( − 4.00 i ^ + 3.00 j ^ ) m and has velocity ( 3.00 i ^ + 2.00 j ^ ) m / s . (a) Plot these particles on a grid or graph paper. Draw their position vectors and show their velocities. (b) Find the position of the center of mass of the system and mark it on the grid. (c) Determine the velocity of the center of mass and also show it on the diagram. (d) What is the total linear momentum of the system?
Solution Summary: The author illustrates the position and velocity vectors of the two particles in x-y plane.
Consider a system of two particles in the xy plane: m1 = 2.00 kg is at the location
r
→
1
=
(
1.00
i
^
+
2.00
j
^
)
m
and has a velocity of
(
3.00
i
^
+
0.500
j
^
)
m
/
s
; m2 = 3.00 kg is at
r
→
2
=
(
−
4.00
i
^
+
3.00
j
^
)
m
and has velocity
(
3.00
i
^
+
2.00
j
^
)
m
/
s
. (a) Plot these particles on a grid or graph paper. Draw their position vectors and show their velocities. (b) Find the position of the center of mass of the system and mark it on the grid. (c) Determine the velocity of the center of mass and also show it on the diagram. (d) What is the total linear momentum of the system?
Three moles of an ideal gas undergo a reversible isothermal compression at 20.0° C. During this compression,
1900 J of work is done on the gas.
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Entropy change in a free expansion.
Part A
What is the change of entropy of the gas?
ΤΕ ΑΣΦ
AS =
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J/K
5.97 Block A, with weight
3w, slides down an inclined plane
S of slope angle 36.9° at a constant
speed while plank B, with weight
w, rests on top of A. The plank
is attached by a cord to the wall
(Fig. P5.97). (a) Draw a diagram
of all the forces acting on block
A. (b) If the coefficient of kinetic
friction is the same between A and
B and between S and A, determine
its value.
Figure P5.97
B
A
S
36.9°
Please take your time and solve each part correctly please. Thank you!!
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