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Zanzabum
3 years ago
15

HELP! The slope of Similar Triangles. Explain your answer!! Will mark brainliest!

Mathematics
1 answer:
lutik1710 [3]3 years ago
3 0

Answer:

A

Step-by-step explanation:

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Determine whether the equation is exact. If it​ is, then solve it. e Superscript t Baseline (7 y minus 3 t )dt plus (2 plus 7 e
umka21 [38]

Answer:

F(t,y)=(2+7e^t)y+3(1-t)e^t +C

Step-by-step explanation:

You have the following differential equation:

e^t(7y-3t)dt+(2+7e^t)dy=0

This equation can be written as:

Mdt+Ndy=0

where

M=e^t(7y-3t)\\\\N=(2+7e^t)

If the differential equation is exact, it is necessary the following:

\frac{\partial M}{\partial y}=\frac{\partial N}{\partial t}

Then, you evaluate the partial derivatives:

\frac{\partial M}{\partial y}=\frac{\partial}{\partial t}e^t(7y-3t)\\\\\frac{\partial M}{\partial t}=7e^t\\\\\frac{\partial N}{\partial t}=\frac{\partial}{\partial t}(2+7e^t)\\\\\frac{\partial N}{\partial t}=7e^t\\\\\frac{\partial M}{\partial t} = \frac{\partial N}{\partial t}

The partial derivatives are equal, then, the differential equation is exact.

In order to obtain the solution of the equation you first integrate M or N:

F(t,y)=\int N \partial y = (2 +7e^t)y+g(t)        (1)

Next, you derive the last equation respect to t:

\frac{\partial F(t,y)}{\partial t}=7ye^t+g'(t)

however, the last derivative must be equal to M. From there you can calculate g(t):

\frac{\partial F(t,y)}{\partial t}=M=(7y-3t)e^t=7ye^t+g'(t)\\\\g'(t)=-3te^t\\\\g(t)=-3\int te^tdt=-3[te^t-\int e^tdt]=-3[te^t-e^t]

Hence, by replacing g(t) in the expression (1) for F(t,y) you obtain:

F(t,y)=(2+7e^t)y+3(1-t)e^t +C

where C is the constant of integration

8 0
4 years ago
What is the value of the underlined digit mark all that apply 0.283 the underlined digit is eight
yawa3891 [41]

Answer:

The underlined digit is 0.08 which is eight hundredths

Step-by-step explanation:

8 hundredths as a decimal is 0.08

.0 is tenths

.00 is hundredths

.000 is thousandths

5 0
3 years ago
Read 2 more answers
The thickness of a protective coating applied to a conductor designed to work in corrosive conditions follows a uniform distribu
pochemuha

Answer:

P(24< X

And replacing we got:

P(24< X

Step-by-step explanation:

We can define the random variable X as the thickness of a protective coating applied to a conductor designed to work in corrosive conditions. And the distribution for X is given by:

X \sim Unif (a = 20, b=40)

And we want to find this probability:

P(24< X

And in order to find this probability we can use the cumulative distribution function given by:

F(x) = \frac{x-a}{b-a} , a\leq X \leq b

And if we use this formula for the probability desired we have:

P(24< X

And replacing we got:

P(24< X

5 0
3 years ago
What is the formula for sugar?​
Darina [25.2K]

Answer:

Almost all sugars have the formula CnH2nOn (n is between 3 and 7).

Step-by-step explanation:

5 0
3 years ago
What is the area of the kite
qwelly [4]
Formula is 1/2 *d1*d2
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3 years ago
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