pass by. you fnying horizontally at a height of h = 21.95 m. When the swallow is directly overhead, it drops an m = 10.5 kg coconut. Refer to the diagram. From your ornithological studies, you know that the air-speed of this particular species of swallow, while carrying such a load, is vo = 6.93 m/s. Neglect air resistance. Assume that your head is at the origin of the coordinate system. Part (c) Enter an expression, in unit vector notation, for the time-dependent velocity vector, -), of the coconut. ) - vo i -gtj V Correct! Part (d) Calculate the magnitude, in kilogram squared meters per second, of the angular momentum of the coconut as observed by you at = 1.0 s. L= kg - m²/s 8 9 5 6 1 2 3 sin() cos() tan() 7 HOME cotan() asin() acos() E 1A 4 atan() acotan() sinh() cosh() tanh() cotanh() END Degrees Radians DEL CLEAR BACKSPACE Submit Hint I give up! Part (e) Calculate the magnitude, in kilogram squared meters per second, of the coconut as observed by you immediately before it hits the ground.

Principles of Physics: A Calculus-Based Text
5th Edition
ISBN:9781133104261
Author:Raymond A. Serway, John W. Jewett
Publisher:Raymond A. Serway, John W. Jewett
Chapter3: Motion In Two Dimensions
Section: Chapter Questions
Problem 8P: The small archerfish (length 20 to 25 cm) lives in brackish waters of Southeast Asia from India to...
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Problem 10: While watching the clouds pass by, you notice a European swallow flying
horizontally at a height of h = 21.95 m. When the swallow is directly overhead, it drops an
m = 10.5 kg coconut. Refer to the diagram. From your ornithological studies, you know that
the air-speed of this particular species of swallow, while carrying such a load, is vo = 6.93 m/s.
Neglect air resistance. Assume that your head is at the origin of the coordinate system.
Part (c) Enter an expression, in unit vector notation, for the time-dependent velocity vector,
V(1), of the coconut.
V(1) = vo i - g tj Correct!
Part (d) Calculate the magnitude, in kilogram squared meters per second, of the angular momentum of the coconut as observed by you at
t = 1.0 s.
L =
kg · m²/s
sin()
cos()
tan()
8
9
HOME
cotan()
asin()
acos()
E
4
6.
atan()
acotan()
sinh()
1 2
3
tanh()
ODegrees O Radians
cosh()
cotanh()
END
BACKSPACE
CLEAR
DEL
Submit
Hint
Fedback
I ive up!
Part (e) Calculate the magnitude, in kilogram squared meters per second, of the coconut as observed by you immediately before it hits the ground.
L =
Transcribed Image Text:Problem 10: While watching the clouds pass by, you notice a European swallow flying horizontally at a height of h = 21.95 m. When the swallow is directly overhead, it drops an m = 10.5 kg coconut. Refer to the diagram. From your ornithological studies, you know that the air-speed of this particular species of swallow, while carrying such a load, is vo = 6.93 m/s. Neglect air resistance. Assume that your head is at the origin of the coordinate system. Part (c) Enter an expression, in unit vector notation, for the time-dependent velocity vector, V(1), of the coconut. V(1) = vo i - g tj Correct! Part (d) Calculate the magnitude, in kilogram squared meters per second, of the angular momentum of the coconut as observed by you at t = 1.0 s. L = kg · m²/s sin() cos() tan() 8 9 HOME cotan() asin() acos() E 4 6. atan() acotan() sinh() 1 2 3 tanh() ODegrees O Radians cosh() cotanh() END BACKSPACE CLEAR DEL Submit Hint Fedback I ive up! Part (e) Calculate the magnitude, in kilogram squared meters per second, of the coconut as observed by you immediately before it hits the ground. L =
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