The gravitational force, F , on a rocket at a distance, r , from the center of the earth is given by F = k r 2 , where k = 10 13 newton ⋅ km 2 . When the rocket is 104 km from the center of the earth, it is moving away at 0 . 2 km/sec. How fast is the gravitational force changing at that moment? Give units. (A newton is a unit of force.)
The gravitational force, F , on a rocket at a distance, r , from the center of the earth is given by F = k r 2 , where k = 10 13 newton ⋅ km 2 . When the rocket is 104 km from the center of the earth, it is moving away at 0 . 2 km/sec. How fast is the gravitational force changing at that moment? Give units. (A newton is a unit of force.)
Author: Deborah Hughes-Hallett, William G. McCallum, Andrew M. Gleason, Daniel E. Flath, Patti Frazer Lock, Sheldon P. Gordon, David O. Lomen, David Lovelock, Brad G. Osgood, Andrew Pasquale, Douglas Quinney, Jeff Tecosky-Feldman, Joseph Thrash, Karen R. Rhea, Thomas W. Tucker
The gravitational force, F, on a rocket at a distance, r, from the center of the earth is given by
F
=
k
r
2
,
where k = 1013 newton ⋅ km2. When the rocket is 104 km from the center of the earth, it is moving away at 0.2 km/sec. How fast is the gravitational force changing at that moment? Give units. (A newton is a unit of force.)
4. Use method of separation of variable to solve the following wave equation
მłu
J²u
subject to
u(0,t) =0, for t> 0,
u(л,t) = 0, for t> 0,
=
t> 0,
at²
ax²'
u(x, 0) = 0,
0.01 x,
ut(x, 0) =
Π
0.01 (π-x),
0
Solve the following heat equation by method of separation variables:
ди
=
at
subject to
u(0,t) =0, for
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ძx2 •
t>0, 0 0,
ux (4,t) = 0, for
t> 0,
u(x, 0) =
(x-3,
\-1,
0 < x ≤2
2≤ x ≤ 4.
ex
5.
important aspects.
Graph f(x)=lnx. Be sure to make your graph big enough to easily read (use the space given.) Label all
6
33
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