2.1 Convert the following Cartesian points to cylindrical and spherical coordinates: (a) P(2,5, 1) (b) Q(-3, 4, 0) (c) R(6, 2, –4)

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Chapter1: Functions And Models
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2.1 and 2.3 please.

2.1 Convert the following Cartesian points to cylindrical and spherical coordinates:
(a) P(2,5, 1)
(b) Q(-3, 4, 0)
(c) R(6, 2, –4)
-
Transcribed Image Text:2.1 Convert the following Cartesian points to cylindrical and spherical coordinates: (a) P(2,5, 1) (b) Q(-3, 4, 0) (c) R(6, 2, –4) -
2.3 The rectangular coordinates at point P are (x = 2, y = 6, z = -4). (a) What are its
cylindrical coordinates? (b) What are its spherical coordinates?
2.4 The cylindrical coordinates of point Q are p = 5, = 120°, z = 1. Express Q as rectangular
and spherical coordinates.
2.5 Given point T(10, 60°, 30°) in spherical coordinates, express Tin Cartesian and cylindrical
coordinates.
Transcribed Image Text:2.3 The rectangular coordinates at point P are (x = 2, y = 6, z = -4). (a) What are its cylindrical coordinates? (b) What are its spherical coordinates? 2.4 The cylindrical coordinates of point Q are p = 5, = 120°, z = 1. Express Q as rectangular and spherical coordinates. 2.5 Given point T(10, 60°, 30°) in spherical coordinates, express Tin Cartesian and cylindrical coordinates.
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