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Vsevolod [243]
2 years ago
5

Which of the following are remote interior angles of 1? Check all that apply. ASAP please

Mathematics
2 answers:
inysia [295]2 years ago
6 0

Answer:

The correct options are C and D.

Step-by-step explanation:

The remote interior angles are same as opposite interior angle.

In a triangle the remote angles of an exterior angle are the opposite interior angles of the exterior angle. For each exterior angle we have two remote angles.

Angle 1 is the exterior angle so its has two opposite interior angles.

Angle 3 and 4 are opposite interior angles of angle 1, therefore we can say that the angle 3 and 4 are remote interior angles of 1.

Options C and D are correct.

Slav-nsk [51]2 years ago
3 0

3 and 4 everyone

i did it myself

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Cameron buys 2.45 pounds of apples and 1.65 pounds of pears. Apples and pears each cost c dollars per pound. If the total cost a
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Answer:

2.45c + 1.65c = 4.12 + 0.75

Step-by-step explanation:

To write an equation to find the value for c, we need to declare what c is first.

c = price of fruit

2.45c + 1.65c = 4.12 + 0.75

Now we multiplied c to 2.45 and 1.65 and added them together, because whatever the value of c is will give us the equivalence of the sum of 4.12 + 0.75.

Now to check if the equation is right, let's solve for c.

2.45c + 1.65c = 4.12 + 0.75

4.1c = 4.87

Now to get the value of c, we divide both sides of the equation by 4.1.

\dfrac{4.1c}{4.1}=\dfrac{4.87}{4.1}

c = 1.19

Now let's substitute the value of c in the equation to see if we got it right.

2.45(1.19) + 1.65(1.19) = 4.12 + 0.75

2.92 + 1.96 = 4.87

4.87 = 4.87

Therefore concluding that the value of c is 1.19.

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2 years ago
On Friday, there were x students at the baseball game. On Monday, there were half as many students at the game as there were on
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strojnjashka [21]

Answer:

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Step-by-step explanation:

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f(x) = 0.5\lambda e^{-\lambda |x|} for −∞ < x < ∞.

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Now we need to calculate the value of parameter λ.

The general formula for the probability density function of the double exponential distribution is: f(x)=\frac{e^{-|\frac{x-\mu}{\beta}|}}{2\beta}

Where μ is the location parameter and β is the scale parameter.

Compare the provided equation with the above formula we get.

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