iven parametric equations and parameter intervals for the motion of a particle in the xy-plane below: Identify the particle's path by finding a Cartesian equation for it. Graph the Cartesian equation. Indicate the portion of the graph traced by the particle and the direction of motion. x = -7 sec (t), y = 7 tan (t), - ½ π < t > ½ π Choose the correct answer for the Cartesian equation representing the same path defined by the given parametric equations. x2 – y2 = 98 (x-y)2 = 49 x2/49 – y2/49 = 1 (x-y)2 = 98
iven parametric equations and parameter intervals for the motion of a particle in the xy-plane below: Identify the particle's path by finding a Cartesian equation for it. Graph the Cartesian equation. Indicate the portion of the graph traced by the particle and the direction of motion. x = -7 sec (t), y = 7 tan (t), - ½ π < t > ½ π Choose the correct answer for the Cartesian equation representing the same path defined by the given parametric equations. x2 – y2 = 98 (x-y)2 = 49 x2/49 – y2/49 = 1 (x-y)2 = 98
Trigonometry (MindTap Course List)
10th Edition
ISBN:9781337278461
Author:Ron Larson
Publisher:Ron Larson
Chapter6: Topics In Analytic Geometry
Section: Chapter Questions
Problem 11T
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Given parametric equations and parameter intervals for the motion of a particle in the xy-plane below:
- Identify the particle's path by finding a Cartesian equation for it.
- Graph the Cartesian equation.
- Indicate the portion of the graph traced by the particle and the direction of motion.
x = -7 sec (t), y = 7 tan (t), - ½ π < t > ½ π
Choose the correct answer for the Cartesian equation representing the same path defined by the given parametric equations.
- x2 – y2 = 98
- (x-y)2 = 49
- x2/49 – y2/49 = 1
- (x-y)2 = 98
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