The flight path of the helicopter as it takes off from A is defined by the parametric equations x = 3.5t2meters and y = 0.11t3meters where t is time in seconds. Determine the distance the helicopter is from the origin, and the magnitudes of its velocity and acceleration when t = 12s. Find the equation y = f(x) and determine the distance of the helicopter from the origin when x = 350m
The flight path of the helicopter as it takes off from A is defined by the parametric equations x = 3.5t2meters and y = 0.11t3meters where t is time in seconds. Determine the distance the helicopter is from the origin, and the magnitudes of its velocity and acceleration when t = 12s. Find the equation y = f(x) and determine the distance of the helicopter from the origin when x = 350m
College Physics
1st Edition
ISBN:9781938168000
Author:Paul Peter Urone, Roger Hinrichs
Publisher:Paul Peter Urone, Roger Hinrichs
Chapter3: Two-dimensional Kinematics
Section: Chapter Questions
Problem 1PE: Find the following for path A in Figure 3.54: (a) the total distance traveled, and (b) the magnitude...
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The flight path of the helicopter as it takes off from A is defined by the parametric equations x = 3.5t2meters and y = 0.11t3meters where t is time in seconds. Determine the distance the helicopter is from the origin, and the magnitudes of its velocity and acceleration when t = 12s. Find the equation y = f(x) and determine the distance of the helicopter from the origin when x = 350m
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