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uranmaximum [27]
2 years ago
14

determine if the geometric series converges or diverges. if it​ converges, find its sum 1 (9/10) (9/10)^2

Mathematics
1 answer:
tekilochka [14]2 years ago
8 0

The geometric series converges or diverges in [10].

If human beings or vehicles converge on an area, they pass closer to it from distinct guidelines. masses of tractors will converge on the capital. If roads or lines converge, they meet or join at a specific location.

"Converged" way that any small exchange in parameter values creates a curve that suits worse (better sum-of-squares). but in a few instances, it in reality can not converge on a high-quality match, and offers up the message 'no longer converged'. This takes place in two situations: • The model certainly doesn't fit the data thoroughly.

You could take delivery of credit and debit playing cards, digital exams, and present playing cards. Converge supports fundamental credit playing cards, which includes credit card, Visa, American explicit, Discover, JCB, and Diners club. Converge gives a completely-hosted solution, allowing the convenience and protection of price records going directly to Converge.

The common ratio is to=9/10

As, n<l, it converges

Sum= 1/1-n  =1-3/10

= 10/1 = [10]

Learn more about converges  here brainly.com/question/1521191

#SPJ4

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which typing is faster? A( 320 words in 8 minutes B( 600 words in 12 minutes C( 350 words in 10 minutes D( 225 words in 5 minute
Slav-nsk [51]
Let's look at each answer choice's words per minute:
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8 0
3 years ago
Find the particular solution of the differential equation that satisfies the initial condition(s). f ''(x) = x−3/2, f '(4) = 1,
sweet [91]

Answer:

Hence, the particular solution of the differential equation is y = \frac{1}{6} \cdot x^{3} - \frac{3}{4}\cdot x^{2} - x.

Step-by-step explanation:

This differential equation has separable variable and can be solved by integration. First derivative is now obtained:

f'' = x - \frac{3}{2}

f' = \int {\left(x-\frac{3}{2}\right) } \, dx

f' = \int {x} \, dx -\frac{3}{2}\int \, dx

f' = \frac{1}{2}\cdot x^{2} - \frac{3}{2}\cdot x + C, where C is the integration constant.

The integration constant can be found by using the initial condition for the first derivative (f'(4) = 1):

1 = \frac{1}{2}\cdot 4^{2} - \frac{3}{2}\cdot (4) + C

C = 1 - \frac{1}{2}\cdot 4^{2} + \frac{3}{2}\cdot (4)

C = -1

The first derivative is y' = \frac{1}{2}\cdot x^{2}- \frac{3}{2}\cdot x - 1, and the particular solution is found by integrating one more time and using the initial condition (f(0) = 0):

y = \int {\left(\frac{1}{2}\cdot x^{2}-\frac{3}{2}\cdot x -1  \right)} \, dx

y = \frac{1}{2}\int {x^{2}} \, dx - \frac{3}{2}\int {x} \, dx - \int \, dx

y = \frac{1}{6} \cdot x^{3} - \frac{3}{4}\cdot x^{2} - x + C

C = 0 - \frac{1}{6}\cdot 0^{3} + \frac{3}{4}\cdot 0^{2} + 0

C = 0

Hence, the particular solution of the differential equation is y = \frac{1}{6} \cdot x^{3} - \frac{3}{4}\cdot x^{2} - x.

5 0
3 years ago
Find the ranges of these numbers 35 45 30 45 70
serg [7]

Answer:

The range is 40.

Step-by-step explanation:

Range is just the largest number minus the smallest.

70 - 30 = 40

5 0
3 years ago
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