Using L'H o ^ pital's rule (Section 3.6) one can verify that lim x → + ∞ e x x = + ∞ , lim x → + ∞ x e x = 0 , lim x → − ∞ x e x = 0 In these exercises: (a) Use these results, as necessary, to find the limits of f x as x → + ∞ and as x → − ∞ . (b) Sketch a graph of f x and identify all relative extrema, inflection points, and asymptotes (as appropriate). Check your work with a graphing utility. f x = x 2 / 3 e x
Using L'H o ^ pital's rule (Section 3.6) one can verify that lim x → + ∞ e x x = + ∞ , lim x → + ∞ x e x = 0 , lim x → − ∞ x e x = 0 In these exercises: (a) Use these results, as necessary, to find the limits of f x as x → + ∞ and as x → − ∞ . (b) Sketch a graph of f x and identify all relative extrema, inflection points, and asymptotes (as appropriate). Check your work with a graphing utility. f x = x 2 / 3 e x
Using
L'H
o
^
pital's
rule (Section 3.6) one can verify that
lim
x
→
+
∞
e
x
x
=
+
∞
,
lim
x
→
+
∞
x
e
x
=
0
,
lim
x
→
−
∞
x
e
x
=
0
In these exercises: (a) Use these results, as necessary, to find the limits of
f
x
as
x
→
+
∞
and as
x
→
−
∞
. (b) Sketch a graph of
f
x
and identify all relative extrema, inflection points, and asymptotes (as appropriate). Check your work with a graphing utility.
Car A starts from rest at t = 0 and travels along a straight road with a constant acceleration of 6 ft/s^2 until it reaches a speed of 60ft/s. Afterwards it maintains the speed. Also, when t = 0, car B located 6000 ft down the road is traveling towards A at a constant speed of 80 ft/s. Determine the distance traveled by Car A when they pass each other.Write the solution using pen and draw the graph if needed.
The velocity of a particle moves along the x-axis and is given by the equation ds/dt = 40 - 3t^2 m/s. Calculate the acceleration at time t=2 s and t=4 s. Calculate also the total displacement at the given interval. Assume at t=0 s=5m.Write the solution using pen and draw the graph if needed.
The velocity of a particle moves along the x-axis and is given by the equation ds/dt = 40 - 3t^2 m/s. Calculate the acceleration at time t=2 s and t=4 s. Calculate also the total displacement at the given interval. Assume at t=0 s=5m.Write the solution using pen and draw the graph if needed.
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Differential Equation | MIT 18.01SC Single Variable Calculus, Fall 2010; Author: MIT OpenCourseWare;https://www.youtube.com/watch?v=HaOHUfymsuk;License: Standard YouTube License, CC-BY