A lithotripter is based on an ellipse with the equation given on the right. Find the distance from the ellipse's center to the kidney stone and to the beam source. Lithotripter: a machine used to crush kidney stones using shock waves. The patient is placed in an elliptical tub with the kidney stone at a focus of the ellipse. A beam is projected from the other focus to the tub, so that it reflects to hit the kidney stone. Use the fact that c² = a² - b². x? y? :1 36 25 The distance is Equation: (Give an exact answer. Simplify radicals, if possible.) 10어 .... 10

College Algebra
7th Edition
ISBN:9781305115545
Author:James Stewart, Lothar Redlin, Saleem Watson
Publisher:James Stewart, Lothar Redlin, Saleem Watson
Chapter7: Conic Sections
Section7.2: Ellipses
Problem 68E: Plywood Ellipse A carpenter wishes to construct an elliptical table top from a 4 ft by 8 ft sheet of...
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A lithotripter is based on an ellipse with the equation given on the right. Find the distance from the
ellipse's center to the kidney stone and to the beam source.
Lithotripter: a machine used to crush kidney stones using shock waves. The patient is placed in an
elliptical tub with the kidney stone at a focus of the ellipse. A beam is projected from the other focus
to the tub, so that it reflects to hit the kidney stone.
Use the fact that c = a? - b?
y2
1
25
The distance is
Equation:
36
(Give an exact answer. Simplify radicals, if possible.)
10- m
10
101 O
Transcribed Image Text:A lithotripter is based on an ellipse with the equation given on the right. Find the distance from the ellipse's center to the kidney stone and to the beam source. Lithotripter: a machine used to crush kidney stones using shock waves. The patient is placed in an elliptical tub with the kidney stone at a focus of the ellipse. A beam is projected from the other focus to the tub, so that it reflects to hit the kidney stone. Use the fact that c = a? - b? y2 1 25 The distance is Equation: 36 (Give an exact answer. Simplify radicals, if possible.) 10- m 10 101 O
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