The figure here shows two right circular cones, one upside down inside the other. The two bases are parallel, and the vertex of the smaller cone lies at the center of the larger cone's base. What values of r and h will give the smaller cone the largest possible volume? 12' 6' Particle motion The positions of two particles on the s-axis are S1 = cos t and s, = cos (t + T/4). a. What is the farthest apart the particles ever get? b. When do the particles collide?

College Algebra (MindTap Course List)
12th Edition
ISBN:9781305652231
Author:R. David Gustafson, Jeff Hughes
Publisher:R. David Gustafson, Jeff Hughes
Chapter7: Conic Sections And Quadratic Systems
Section7.3: The Hyperbola
Problem 59E
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The figure here shows two right circular cones, one upside down
inside the other. The two bases are parallel, and the vertex of the
smaller cone lies at the center of the larger cone's base. What
values of r and h will give the smaller cone the largest possible
volume?
12'
6'
Transcribed Image Text:The figure here shows two right circular cones, one upside down inside the other. The two bases are parallel, and the vertex of the smaller cone lies at the center of the larger cone's base. What values of r and h will give the smaller cone the largest possible volume? 12' 6'
Particle motion The positions of two particles on the s-axis are
S1 = cos t and s, = cos (t + T/4).
a. What is the farthest apart the particles ever get?
b. When do the particles collide?
Transcribed Image Text:Particle motion The positions of two particles on the s-axis are S1 = cos t and s, = cos (t + T/4). a. What is the farthest apart the particles ever get? b. When do the particles collide?
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