Answer: From the ratio test, r = 0.4. The series converges.
The given term is:
So the next term is =
The ratio test is :
Since 0.4 < 1 so the series converges.
Learn more: brainly.com/question/1214333
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Explanation:
Check out the attached image below to see the steps on how I computed r.
The value you should get is r = 0.4
Since r is less than 1, the series converges.
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Extra info:
If r > 1, then the series would diverge.
If r = 1, then the series may diverge, conditionally converge, or absolutely converge. Another test would be needed if you get r = 1.
Answer:
144 π cubic meters
Step-by-step explanation:
Formula for surface area of sphere is :
S = 4*π* r^2
We know the volume V = 288*π cubic meters.
V = (4/3)*π*r^3
288*π = (4/3)π*r^3
Solve for r.
(3/4)*288 = r^3
r = 6 meters
S = 4 *π*6^2 = 4*36 * π = 144 π cubic meters
From the Great MysticChaCha :-) ...:-)
Answer:
diagram?
Step-by-step explanation:
x^3- 5x^2+2x+8
Answer:
(x − 4)(x − 2)(x + 1)
Step-by-step explanation:
The focal length of a parabola is the distance from its focus to the directrix. In this case, the focal length is calculated to be 2.4 units.
In Mathematics, particularly in the study of conic sections, the focal length of a parabola is the distance from the focus to the directrix of the parabola. Given the focus as (-3, 2.6) and the directrix as (-0.6), we can calculate the focal length by using the formula for the distance between a point and a line in a plane, which is |x-x1|. |x-x1| is the absolute value of the difference between the x-coordinate of the focus and the equation of the directrix. Here, x1 is -3 (from the focus) and x is -0.6 (from the directrix). So, the focal length of the parabola is |-0.6 - (-3)| = |-0.6 + 3| = 2.4 units.
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