A lithotriper is used to disentegrate kidney stones. The patient is placed within anelliptical device with the kidney centered at one focus, while ultrasound waves from the other focus hit the walls and are reflected to the kidney stone, shattering the stone. Suppose that the length of the major axis of the ellipse is 40 centimeters and the length of the minor axisis 20 centimeters. How far from the kidney stone should the electrode that sends the ultrasound waves be placed in order to shatter the stone?
A lithotriper is used to disentegrate kidney stones. The patient is placed within anelliptical device with the kidney centered at one focus, while ultrasound waves from the other focus hit the walls and are reflected to the kidney stone, shattering the stone. Suppose that the length of the major axis of the ellipse is 40 centimeters and the length of the minor axisis 20 centimeters. How far from the kidney stone should the electrode that sends the ultrasound waves be placed in order to shatter the stone?
Solution Summary: The author calculates the distance of the electrode from the kidney stone to disintegrate the stone using an elliptical device.
A lithotriper is used to disentegrate kidney stones. The patient is placed within anelliptical device with the kidney centered at one focus, while ultrasound waves from the other focus hit the walls and are reflected to the kidney stone, shattering the stone. Suppose that the length of the major axis of the ellipse is 40 centimeters and the length of the minor axisis 20 centimeters. How far from the kidney stone should the electrode that sends the ultrasound waves be placed in order to shatter the stone?
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Blitzer Algebra And Trigonometry, 6th Edition, 9780134585291, 0134585291, 2018
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