The magnitude of her velocity with respect to the shore will be 5.70 Km/h. The change of displacement with respect to time is defined as velocity.
Velocity is defined as the change in displacement with respect to time. The quantity of velocity is a vector quantity. It is a component that is time-based. It is measured in meters per second.
The given data in the problem is;
Q is the magnitude of Velocity of the boat = 4.5 km/hr
P is the magnitude of Velocity of the river flowing = 3.5 km/hr
R is the resultant of velocity P and Q=?
θ is the angle between the two velocities = 90°
From the law of vector addition;
Hence the magnitude of her velocity with respect to the shore will be 5.70 Km/h.
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Answer: The magnitude of her velocity ( v ) with respect to the shore is 5.70 km/h.
Explanation:
Magnitude of Velocity of the boat = Q
Magnitude of Velocity of the river flowing = P
R = Resultant velocity due to velocity of boat and velocity of river.
Applying Law of triangles of vector addition :
From the figure attached:
P = 3.5 k/h, Q = 4.5 km/h
The magnitude of her velocity ( v ) with respect to the shore is 5.70 km/h.
Answer: W = 3500 J
Explanation: Work is the product of the amount of force and the perpendicular distance or W = Fd.
W = Fd
= 1400 N ( 2.5 m )
= 3500 J
Answer:
Force = 1400N
Displacement = 2.5 m
work done = F×D
=1400×2.5
= 3500 joule
Explanation:
here is your answer
here you go ,
B.when it first leaves your hand
C.when it approaches the top of its flight
D.when it begins to fall back to your hand.
Please Help
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Answer:
A.when it reaches the top of its flight
Explanation:
The potential energy of an object is given by:
where
m is the mass of the object
g is the acceleration of gravity
h is the heigth at which the object is located above the ground
Therefore, we see that the higher the object, the larger its potential energy: this means that the ball will have the greatest potential energy at the top of its trajectory.
Given data
mass (m) = 13 kg
F₁ = 13 × 9.8 = 127.4 N
air resistance (F₂ ) = 9 N, acts in opposite direction
Net force is defined as sum of all forces
Fnet = F₁ - F₂
= 127.4 - 9
= 118.4 N
Net force acting on the object is 118.4 N