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tensa zangetsu [6.8K]
4 years ago
8

If q = r and r = s, then q = s.

Mathematics
1 answer:
leonid [27]4 years ago
4 0

Answer:

this is true :)

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Which multiplicative property is being illustrated below? (Type commutative, associative, or identity)
Delicious77 [7]
Associative property
7 0
4 years ago
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Keisha swims 18 feet from one side of her circular pool to the other swimming straight through the center. She then swims one ti
Ket [755]

Answer:

56.5 ft

Step-by-step explanation:

Here we know that:

- Keisha swims 18 feet from one side of her circular pool to the other swimming straight through the center --> this means that the diameter of the swimming pool is 18 feet, so

d = 18 ft

- Then, she swims one time around the entire edge of her swimming pool. --> this means that she swims along the perimeter of the swimming pool

The perimeter of a circle is given by

p=\pi d

where d is the diameter. Therefore in this case, the length of Keisha's second swim is:

p=\pi \cdot d = 3.14 \cdot 18 =56.5 ft

3 0
3 years ago
Simplify 4+3(7+4*2) - 100​
bazaltina [42]

Answer:

4+3(7+4*2) - 100​ = -51

Step-by-step explanation:

4+3(7+4*2) - 100​

= 4 + 3 (15) - 100

= 4 + 45 - 100

= -51

6 0
4 years ago
How many times does 3 go into 92
ollegr [7]

To find if 3 goes int 92

we need to divide 92 by 3

Figure of the division attached

The first part is 3 goes 3 times into 9 leaving remainder 0

We are left with 2 to divide

but since 3<2, we add 0 to the quotient and leave the 2 as the remainder

Hence 3 goes 30 times in 92 leaving a remainder of 2

3 0
3 years ago
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Graph the image of this figure after a dilation with a scale factor of 13 centered at the point (4, −2) .
Sonja [21]

Answer:

From the given triangle figure;

Labelled the triangle as A , B and C.

The coordinates of this triangle ABC  are;

A = (1, 10) ,

B = (-2, 4)

C = (7, 4).

Given : Scale factor(k) = \frac{1}{3} and centered at point (4, -2).

The rule of dilation with k= \frac{1}{3} and center at point (4,-2) is:

(x, y) \rightarrow (\frac{1}{3}(x-4)+4 , \frac{1}{3}(y+2)-2)

(x, y) \rightarrow (\frac{1}{3}x-\frac{4}{3}+4 , \frac{1}{3}y+\frac{2}{3}-2)

or

(x, y) \rightarrow (\frac{1}{3}x+\frac{8}{3} , \frac{1}{3}y-\frac{4}{3})

then, the dilation of the given figure are;

A(1, 10) \rightarrow (\frac{1}{3}\cdot 1+\frac{8}{3} , \frac{1}{3} \cdot 10-\frac{4}{3}) = (\frac{1}{3}+\frac{8}{3} , \frac{10}{3}-\frac{4}{3}) =(\frac{9}{3} , \frac{6}{3}) = A'(3 , 2)

B(-2, 4) \rightarrow (\frac{1}{3}\cdot -2+\frac{8}{3} , \frac{1}{3} \cdot 4-\frac{4}{3}) =(-\frac{2}{3}+\frac{8}{3} , \frac{4}{3}-\frac{4}{3}) =(\frac{6}{3} , \frac{0}{3}) =B'(2 , 0)

C(7, 4) \rightarrow (\frac{1}{3}\cdot 7+\frac{8}{3} , \frac{1}{3} \cdot 4-\frac{4}{3}) =(\frac{7}{3}+\frac{8}{3} , \frac{4}{3}-\frac{4}{3}) =(\frac{15}{3} , \frac{0}{3}) = C'(5 , 0)

The coordinates of dilation images are:

A' = (3,2) , B' = (2, 0) and C' = (5, 0)

You can see the graph of the dilated image as shown below:

3 0
3 years ago
Read 2 more answers
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