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lakkis [162]
3 years ago
11

Brainliest! Please help me with this

Mathematics
2 answers:
Pepsi [2]3 years ago
7 0

Answer:

I think it is D

Step-by-step explanation:

Alex17521 [72]3 years ago
3 0

Answer:

i actually think its c or b

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Pradeep is planning locations for her area members to vote. There are 44,832 people in the area and each location can hold 380 p
likoan [24]

Answer:

118 locations.

Step-by-step explanation:

44,832 / 380

= 117.98

3 0
4 years ago
Read 2 more answers
Find the integral using substitution or a formula.
Nadusha1986 [10]
\rm \int \dfrac{x^2+7}{x^2+2x+5}~dx

Derivative of the denominator:
\rm (x^2+2x+5)'=2x+2

Hmm our numerator is 2x+7. Ok this let's us know that a simple u-substitution is NOT going to work. But let's apply some clever Algebra to the numerator splitting it up into two separate fractions. Split the +7 into +2 and +5.

\rm \int \dfrac{x^2+2+5}{x^2+2x+5}~dx

and then split the fraction,

\rm \int \dfrac{x^2+2}{x^2+2x+5}~dx+\int\dfrac{5}{x^2+2x+5}~dx

Based on our previous test, we know that a simple substitution will work for the first integral: \rm \quad u=x^2+2x+5\qquad\to\qquad du=2x+2~dx

So the first integral changes,

\rm \int \dfrac{1}{u}~du+\int\dfrac{5}{x^2+2x+5}~dx

integrating to a log,

\rm ln|x^2+2x+5|+\int\dfrac{5}{x^2+2x+5}~dx

Other one is a little tricky. We'll need to complete the square on the denominator. After that it will look very similar to our arctangent integral so perhaps we can just match it up to the identity.

\rm x^2+2x+5=(x^2+2x+1)+4=(x+1)^2+2^2

So we have this going on,

\rm ln|x^2+2x+5|+\int\dfrac{5}{(x+1)^2+2^2}~dx

Let's factor the 5 out of the intergral,
and the 4 from the denominator,

\rm ln|x^2+2x+5|+\frac54\int\dfrac{1}{\frac{(x+1)^2}{2^2}+1}~dx

Bringing all that stuff together as a single square,

\rm ln|x^2+2x+5|+\frac54\int\dfrac{1}{\left(\dfrac{x+1}{2}\right)^2+1}~dx

Making the substitution: \rm \quad u=\dfrac{x+1}{2}\qquad\to\qquad 2du=dx

giving us,

\rm ln|x^2+2x+5|+\frac54\int\dfrac{1}{\left(u\right)^2+1}~2du

simplying a lil bit,

\rm ln|x^2+2x+5|+\frac52\int\dfrac{1}{u^2+1}~du

and hopefully from this point you recognize your arctangent integral,

\rm ln|x^2+2x+5|+\frac52arctan(u)

undo your substitution as a final step,
and include a constant of integration,

\rm ln|x^2+2x+5|+\frac52arctan\left(\frac{x+1}{2}\right)+c

Hope that helps!
Lemme know if any steps were too confusing.

8 0
3 years ago
I need help in this one please
zhenek [66]
I need more information
8 0
3 years ago
Can someone please answer it correctly if it’s correct I will mark you brainliest
faltersainse [42]

Answer: they are all less than or equal to 1.75

Step-by-step explanation:

1.6 < 1.75

1 4/11 < 1.75

7/4 = 1.75

8 0
3 years ago
Read 2 more answers
What is the difference between(8,−3) (4, -7)
professor190 [17]

Answer:

1

Step-by-step explanation:

I will assume you want to find the slope [ y2-y1/x2-x1 ]

-7-(-3)/4-8

-4/-4

1

Best of Luck!

4 0
4 years ago
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