Suppose the position vector for a particle is given as a function of time by r(t) = x(t)i + y(t)i, with x(t) = at + b and y(t) = ct + d, where a = 1.10 m/s, b = 1.40 m, c = 0.123 m/s, and d = 1.14 m.

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Chapter13: Temperature, Kinetic Theory, And The Gas Laws
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MYUW
A Phy201 HW 3
A Phy201 HW 3 - Physics 201 X
C Home | Chegg.com
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SERPSE10 4.1.P.001.
MY NOTES
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PRACTICE ANOTHER
Suppose the position vector for a particle is given as a function of time by r(t) = x(t)i + y(t)i, with x(t) = at + b and y(t) = ct + d, where a = 1.10 m/s, b = 1.40 m,
c = 0.123 m/s?, and d = 1.14 m.
(a) Calculate the average velocity during the time interval from t = 1.90 s to t = 3.95 s.
v =
m/s
(b) Determine the velocity at t = 1.90 s.
v =
m/s
Determine the speed att = 1.90 s.
m/s
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PRACTICE ANOTHER
MY NOTES
ASK YOUR TEACHER
3. [-/6 Points]
DETAILS
SERPSE10 4.2.OP.005.MI.
A fish swimming in a horizontal plane has velocity v, = (4.00 i + 1.00 j) m/s at a point in the ocean where the position relative to a certain rock is ř = (16.0 i - 3.00 J) m.
After the fish swims with constant acceleration for 17.0 s, its velocity is v = (21.0 î - 3.00 j) m/s.
fich?
Transcribed Image Text:MYUW A Phy201 HW 3 A Phy201 HW 3 - Physics 201 X C Home | Chegg.com My Questions | bartleby A webassign.net/web/Student/Assignment-Responses/submit?dep=26280453&tags=autosavet#question3955715_10 Need Help? Read It Submit Answer 2. [-/3 Points] DETAILS SERPSE10 4.1.P.001. MY NOTES ASK YOUR TEACHER PRACTICE ANOTHER Suppose the position vector for a particle is given as a function of time by r(t) = x(t)i + y(t)i, with x(t) = at + b and y(t) = ct + d, where a = 1.10 m/s, b = 1.40 m, c = 0.123 m/s?, and d = 1.14 m. (a) Calculate the average velocity during the time interval from t = 1.90 s to t = 3.95 s. v = m/s (b) Determine the velocity at t = 1.90 s. v = m/s Determine the speed att = 1.90 s. m/s Need Help? Read It PRACTICE ANOTHER MY NOTES ASK YOUR TEACHER 3. [-/6 Points] DETAILS SERPSE10 4.2.OP.005.MI. A fish swimming in a horizontal plane has velocity v, = (4.00 i + 1.00 j) m/s at a point in the ocean where the position relative to a certain rock is ř = (16.0 i - 3.00 J) m. After the fish swims with constant acceleration for 17.0 s, its velocity is v = (21.0 î - 3.00 j) m/s. fich?
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