The function z = f ( x, y ) gives the elevation z (in hundreds of feet) of a hillside above the point ( x , y ) . Use the level curves of f to answer the following questions (see figure). 9. Katie and Zeke are standing on the surface above the point A (2, 2). a. At what elevation are Katie and Zeke standing? b. Katie hikes south to the point on the surface above B (2, 1) and Zeke hikes east to the point on the surface above C (3, 2). Who experienced the greater elevation change and what is the difference in their elevations?
The function z = f ( x, y ) gives the elevation z (in hundreds of feet) of a hillside above the point ( x , y ) . Use the level curves of f to answer the following questions (see figure). 9. Katie and Zeke are standing on the surface above the point A (2, 2). a. At what elevation are Katie and Zeke standing? b. Katie hikes south to the point on the surface above B (2, 1) and Zeke hikes east to the point on the surface above C (3, 2). Who experienced the greater elevation change and what is the difference in their elevations?
The function z = f(x, y) gives the elevation z (in hundreds of feet) of a hillside above the point (x, y).Use the level curves of f to answer the following questions (see figure).
9. Katie and Zeke are standing on the surface above the point A(2, 2).
a. At what elevation are Katie and Zeke standing?
b. Katie hikes south to the point on the surface above B(2, 1) and Zeke hikes east to the point on the surface above C(3, 2). Who experienced the greater elevation change and what is the difference in their elevations?
Determine whether the lines
L₁ (t) = (-2,3, −1)t + (0,2,-3) and
L2 p(s) = (2, −3, 1)s + (-10, 17, -8)
intersect. If they do, find the point of intersection.
Convert the line given by the parametric equations y(t)
Enter the symmetric equations in alphabetic order.
(x(t)
= -4+6t
= 3-t
(z(t)
=
5-7t
to symmetric equations.
Find the point at which the line (t) = (4, -5,-4)+t(-2, -1,5) intersects the xy plane.
Chapter 15 Solutions
MyLab Math with Pearson eText -- Standalone Access Card -- for Calculus: Early Transcendentals (3rd Edition)
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