Exam 8: Analytic Geometry in Two and Three Dimensions
Exam 1: Functions and Graphs362 Questions
Exam 2: Polynomial, Power, and Rational Functions494 Questions
Exam 3: Exponential, Logistic, and Logarithmic Functions350 Questions
Exam 4: Trigonometric Functions522 Questions
Exam 5: Analytic Trigonometry313 Questions
Exam 6: Applications of Trigonometry333 Questions
Exam 7: Systems and Matrices354 Questions
Exam 8: Analytic Geometry in Two and Three Dimensions167 Questions
Exam 9: Discrete Mathematics154 Questions
Exam 10: Statistics and Probability147 Questions
Exam 11: An Introduction to Calculus: Limits, Derivatives, and Integrals167 Questions
Exam 12: Prerequisites382 Questions
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Find an equation in standard form for the hyperbola that satisfies the given conditions.
-Vertices at , asymptotes at
(Multiple Choice)
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Find the standard form of the equation of the parabola.
-Vertex at the origin, focus at
(Multiple Choice)
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Find the linear equations that can be used to convert an (x, y) equation to a (u, v) equation using the given angle of
rotation
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(Multiple Choice)
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Find an equation in standard form for the ellipse that satisfies the given conditions.
-Minor axis endpoints , major axis length 22
(Multiple Choice)
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Use the discriminant to decide whether the equation represents a parabola, an ellipse, or a hyperbola.
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(Multiple Choice)
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Use the given substitutions to convert the equation to a (u, v) equation with no cross-product term.
- use and
(Multiple Choice)
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Find the vertices and foci of the conic section without axis rotation by analyzing the graph geometrically in the xy-plane.
-The hyperbola
(Multiple Choice)
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Solve the problem.
-An elliptical riding path is to be built on a rectangular piece of property that measures 8 mi by 4 mi. Find an equation for the ellipse if the path is to touch the center of the property line on all 4 sides

(Multiple Choice)
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Solve the problem.
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A tunnel is in the shape of a parabola. The maximum height is and it is wide at the base. What is the vertical clearance from the edge of the tunnel?

(Multiple Choice)
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