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s344n2d4d5 [400]
3 years ago
12

Choose the irrational number.

Mathematics
1 answer:
Ganezh [65]3 years ago
3 0
B. 1.18181818....

This is because this number has no end, and an irrational number does not have a terminating decimal

hope this helps
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The lengths and the widths of the following three rectangles are labeled. Create a polynomial that describes the sum of the area
mash [69]

The sum of the area of these three rectangles will be 3x² + 20x.

<h3>What is the area of the rectangle?</h3>

Let L be the length and W be the width of the rectangle.

Then the area of the rectangle will be

Area of the rectangle = L×W square units

The lengths and the widths of the following three rectangles are labeled.

The area of the first rectangle will be

A₁ = x · x

A₁ = x² square units

The area of the second rectangle will be

A₂ = 20 · x

A₂ = 20x

The area of the third rectangle will be

A₃ = 2x · x

A₃ = 2x²

Then the sum of the area of these three rectangles will be

A = A₁ + A₂ + A₃

A = x² + 20x + 2x²

A = 3x² + 20x

Thus, the sum of the area of these three rectangles will be 3x² + 20x.

More about the area of the rectangle link is given below.

brainly.com/question/20693059

#SPJ1

3 0
2 years ago
Triangle ABC is shown below. Triangle A B C is shown. The length of side A B is 2 x, the length of side B C is 4 x minus 10, and
Irina-Kira [14]
The answer is 7.
If angels ABC and BCA are congruent, then their opposite sides are congruent (sides AB and AC). Therefore, 3x-7=2x, giving you the answer of 7 when solved.
6 1
3 years ago
Read 2 more answers
Question 3 of 50
pishuonlain [190]

Answer:

True

Step-by-step explanation:

12 x $0.10 = $1.20

16 x $0.25 = $4.00

$1.20 + $4.00 = $5.20

Hope this helped!

3 0
3 years ago
Problem 2.
myrzilka [38]

Answer:

a) "An example proves P" False

b) True

c) False

d) True

e) False

f) False

g) True

Step-by-step explanation:

a) If we want to prove P, we have to verify that for all z, P(z) is true. Then, an example is not enough to prove P, it could happen that P(x) is false for some x that is not an example. To elaborate, denote the set of real numbers of R, and define P(z):="z is positive", for z∈R. An example is z=2. However, P(z) is not true in general, a counterexample is z=-1.

If you take P as a proposition, you have to decide the truth value of P, and it must be the same for all possible values of z. In this case, examples and counterexamples can be used sometimes to determine whether P is true or false. We apply this idea below.

b) This is true. Every integer is either even or odd because when you divide by 2, you always get a remainder of 0 (then the integer is even) or 1 (then the integer is odd).

c) This is false. It is not true that every integer is even, a counterexample is the integer 3. Then the proposition "Every integer is even" is false. Similarly, the proposition "Every integer is odd" is false (2 is a counterexample). Both propositions are false, thus the compound proposition is false.

d) This is true. An example is enough: rake r=2. r is rational, and real. Thus some (just one is enough) rational numbers are real.

e) This is false. A counterexample proves this: take z=1+i. z is not imaginary because its real part (1) is not zero. Also, z is not real (i≠0) so not all complex numbers are real or imaginary.

f) False. This would imply that for all real numbers y, y<x. In particular with y=x+1, x+1<x hence 1<0, which is a contradiction.

g) True. Given y∈R, take x=y+1. Then y<x=y+1 as required.

8 0
3 years ago
A company makes a standard model flashlight (s) and a delux flashlight (d) the company makes 3$ profit on each standard model an
garri49 [273]

Answer:

your answer should be B

Step-by-step explanation:

4 0
3 years ago
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