. A fish swimming in a horizontal plane has v = (4.00 i + 1.00 j) m/s S at a velocity point in the ocean where the position relative to a r = (10.00 i – 4.00 j) m | certain rock is . After the fish swims with constant acceleration for 20.0 s, its velocity is v = (20.0 i – 5.00 j) m/s. (a) What are the components of the acceleration of the fish? (b) What is the direction of its acceleration with respect to the vector ? ? (c) If the fish maintains constant acceleration, where is it at t=25.0 s and in what direction is it moving?

icon
Related questions
Question
. A fish swimming in a horizontal plane has
v = (4.00 i + 1.00 j) m/s
S
at a
velocity
point in the ocean where the position relative to a
certain rock is " = (10.00 i – 4.00 j) m
After the fish swims with constant acceleration
for 20.0 s, its velocity is
(20.0 i – 5.00 j) m/s (a) what are
V =
-
the components of the acceleration of the fish? (b)
What is the direction of its acceleration with
respect to the vector ? ? (c) If the fish maintains
constant acceleration, where is it at t=25.0 s and in
what direction is it moving?
Transcribed Image Text:. A fish swimming in a horizontal plane has v = (4.00 i + 1.00 j) m/s S at a velocity point in the ocean where the position relative to a certain rock is " = (10.00 i – 4.00 j) m After the fish swims with constant acceleration for 20.0 s, its velocity is (20.0 i – 5.00 j) m/s (a) what are V = - the components of the acceleration of the fish? (b) What is the direction of its acceleration with respect to the vector ? ? (c) If the fish maintains constant acceleration, where is it at t=25.0 s and in what direction is it moving?
Expert Solution
steps

Step by step

Solved in 5 steps

Blurred answer