A flat, triangular-shaped window for the cockpit of an airplane is to have the corner coordinates shown. Specify the angles eA. OB. and ec and dimensions dAB, dBC and dAc for the window. The coordinates of A are (20, 25, 90) cm, the coordinates of B are (-25, 30, 95) cm, and the coordinates of Care (15, 100, 80) cm. dBC dAC ec OAA B. dAB x. BA = 126.29 OB = 57.2 8c= 102.46 dAB= 62.04 cm dвс3 55.901 cm dẠC = 41.533 cm
A flat, triangular-shaped window for the cockpit of an airplane is to have the corner coordinates shown. Specify the angles eA. OB. and ec and dimensions dAB, dBC and dAc for the window. The coordinates of A are (20, 25, 90) cm, the coordinates of B are (-25, 30, 95) cm, and the coordinates of Care (15, 100, 80) cm. dBC dAC ec OAA B. dAB x. BA = 126.29 OB = 57.2 8c= 102.46 dAB= 62.04 cm dвс3 55.901 cm dẠC = 41.533 cm
Calculus: Early Transcendentals
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ISBN:9781285741550
Author:James Stewart
Publisher:James Stewart
Chapter1: Functions And Models
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A flat, triangular-shaped window for the cockpit of an airplane is to have the corner coordinates shown. Specify the angles e4. 0B, and
ecand dimensions dAB, dBC and dAc for the window. The coordinates of A are (20, 25, 90) cm, the coordinates of B are (-25, 30,
95) cm, and the coordinates of Care (15, 10O, 80) cm.
dBC
dAC
ec OA A
dAB
BA = 126.29
OB =
57.2 *
ec= 102.46
dAB= 62.04
cm
dBC=55.901 8 cm
dAC= 41.533 * cm
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A flat, triangular-shaped window for the cockpit of an airplane is to have the corner coordinates shown. Specify the angles e4. 0B, and
ecand dimensions dAB, dBC and dAc for the window. The coordinates of A are (20, 25, 90) cm, the coordinates of B are (-25, 30,
95) cm, and the coordinates of Care (15, 10O, 80) cm.
dBC
dAC
ec OA A
dAB
BA = 126.29
OB =
57.2 *
ec= 102.46
dAB= 62.04
cm
dBC=55.901 8 cm
dAC= 41.533 * cm
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A sports car at point A drives down a straight stretch of road CD. A police car at point B uses radar to measure the speed of the car
and obtains a reading of 80 km/h. For the position of the car given below, determine the speed of the car. Note that the 80 km/h
speed measured by the radar gun is the rate of change of the distance between the car and the radar gun. The car is 30% of the
distance from point C to point D.
B (100,600,40) m
C(-150,–50,30) m
z D(200,400,–10) m
The speed of the car is 115.24 km/h.
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A sports car at point A drives down a straight stretch of road CD. A police car at point B uses radar to measure the speed of the car
and obtains a reading of 80 km/h. For the position of the car given below, determine the speed of the car. Note that the 80 km/h
speed measured by the radar gun is the rate of change of the distance between the car and the radar gun. The car is 30% of the
distance from point C to point D.
B (100,600,40) m
C(-150,–50,30) m
z D(200,400,–10) m
The speed of the car is 115.24 km/h.
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