km/h by the time it reaches position E, Plane B has the speed VB = 365 km/h in the position shown. Plane B experiences a steady deceleration of 1.3 m/s². Relative to the pilot in plane B, what are the velocities and accelerations which plane A appears to have when it is at positions C and E? B 38 B Part 1 E UB 330 m 66° 24⁰ D O 385 m. 800 m

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Plane A has speed VÀ = 295 km/h at the position shown. Plane A increases its speed at a constant rate and acquires a speed of 425
km/h by the time it reaches position E, Plane B has the speed vg = 365 km/h in the position shown. Plane B experiences a steady
deceleration of 1.3 m/s². Relative to the pilot in plane B, what are the velocities and accelerations which plane A appears to have when
it is at positions C and E?
B
B
32
Part 1
Answers:
At
Ε΄
=
VAC=
UB
330 m
i
66°
24°
Calculate the tangentail component at of acceleration of plane A and the velocity VAC of plane A when it reaches point C.
D
385 m
m/s²
%A
m/s
800 m
Transcribed Image Text:Plane A has speed VÀ = 295 km/h at the position shown. Plane A increases its speed at a constant rate and acquires a speed of 425 km/h by the time it reaches position E, Plane B has the speed vg = 365 km/h in the position shown. Plane B experiences a steady deceleration of 1.3 m/s². Relative to the pilot in plane B, what are the velocities and accelerations which plane A appears to have when it is at positions C and E? B B 32 Part 1 Answers: At Ε΄ = VAC= UB 330 m i 66° 24° Calculate the tangentail component at of acceleration of plane A and the velocity VAC of plane A when it reaches point C. D 385 m m/s² %A m/s 800 m
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can you answer part 3 onwards

Plane A has speed VÀ = 295 km/h at the position shown. Plane A increases its speed at a constant rate and acquires a speed of 425
km/h by the time it reaches position E, Plane B has the speed v₂ = 365 km/h in the position shown. Plane B experiences a steady
deceleration of 1.3 m/s². Relative to the pilot in plane B, what are the velocities and accelerations which plane A appears to have when
it is at positions C and E?
B4
B
Part 1
B
Your Answer
At=
UB
Answers:
VAC=
330 m
Correct
2.12
66°
100.53
24⁰
Calculate the tangentail component of acceleration of plane A and the velocity VAC of plane A when it reaches point C.
Correct Answer
D
385 m
m/s2
800 m
m/s
Transcribed Image Text:Plane A has speed VÀ = 295 km/h at the position shown. Plane A increases its speed at a constant rate and acquires a speed of 425 km/h by the time it reaches position E, Plane B has the speed v₂ = 365 km/h in the position shown. Plane B experiences a steady deceleration of 1.3 m/s². Relative to the pilot in plane B, what are the velocities and accelerations which plane A appears to have when it is at positions C and E? B4 B Part 1 B Your Answer At= UB Answers: VAC= 330 m Correct 2.12 66° 100.53 24⁰ Calculate the tangentail component of acceleration of plane A and the velocity VAC of plane A when it reaches point C. Correct Answer D 385 m m/s2 800 m m/s
Part 3
Calculate the speeds Vec and Vee of plane B when plane A reaches points C and E.
Answers:
Vac=
VBE
i
i
m/s
m/s
Transcribed Image Text:Part 3 Calculate the speeds Vec and Vee of plane B when plane A reaches points C and E. Answers: Vac= VBE i i m/s m/s
Solution
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Follow-up Question
Part 2
Set t=0 when the plane is in the position shown. Find the times to and te at which plane A reaches points C and E.
B
B
Answers:
tc=
te=
Ε΄
i
i
UB
330 m
66°
24°
D
O
385 m.
S
S
%4
800 m
Transcribed Image Text:Part 2 Set t=0 when the plane is in the position shown. Find the times to and te at which plane A reaches points C and E. B B Answers: tc= te= Ε΄ i i UB 330 m 66° 24° D O 385 m. S S %4 800 m
Solution
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