A. the less massive object had gained momentum.
B. the more massive object had gained momentum.
C. both objects had the same momentum.
D. both objects lost momentum.
The more massive object will lose momentum after collision while the less massive object will gain momentum after collision.
Apply theprinciple of conservation of linear momentum for elastic collision;
let the heavier object = m₁
m₁u + m₂(-u) = m₁(-v₁) + m₂v₂
m₁u - m₂u = -m₁v₁ + m₂v₂
where;
m₁u and m₂u are initial momentum of both objects before collision
m₁v₁ and m₂v₂ are final momentum of both objects after collision
Thus, from the equation above we can conclude the following, the more massive object will lose momentum after collision while the less massive object will gain momentum after collision.
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Answer:A
Explanation:
Given
mass of two objects are and
taking
Suppose and are the velocities of and
and
therefore after elastic collision velocity of and and
for and
so velocity of mass is more as compared to
so less massive object gained some momentum
Explanation:
time spent to run from house to school=100/5=20s
time spent to return from school=100/10=10s
average velocity=200m/(10+20)
Answer:
Explanation:
Acceleration =
Where
Acceleration = 3 m/s²
= 23 m/s
= 8 m/s
So,
3 =
t =
Time = t = 5 seconds
Answer:
.81 m second i think
Explanation:
Solve the potential energy at point B
PE = mgh
Where m is the mass
G is the acceleration due to gravity 9.8 m/s2
H is the height
PE = ( 1.5 kg) ( 9.8 m/s2) (0.5 m)
PE = 7.35 J
Solve the velocity using the
KE = 0.5mv^2
Where ke is the kinetic energy
M is the mass
V is the velocity
Since all energy is converted to KE
So KE = PE
7.35 = 0.53(1.5) v^2
V = 3.13 m/s
The velocity of the ball at position A is equal to 3.13 m/s.
Given the following data:
Mathematically, potential energy is given by this formula:
Where:
Substituting the given parameters into the formula, we have;
P.E = 7.35 Joules.
Assuming there’s no air resistance, the potential energy would be equal to kinetic energy.
V = 3.13 m/s.
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