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svp [43]
3 years ago
6

Quick question, Can Complimentary angles be adjacent?

Mathematics
1 answer:
klemol [59]3 years ago
5 0

Complimentary angles do not need to be adjacent however they CAN be adjacent because its complimentary if the sum is 90 degrees

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Which inverse operation would be used to verify the following equation? 102 ÷ 3 = 34
IRISSAK [1]
The answer would be  102/34 = 3
7 0
3 years ago
Read 2 more answers
PLEASE HELP DUE SOON
shutvik [7]

Answer:

y < x + 5

Step-by-step explanation:

Determine the equation of the broken line in slope- intercept form

y = mx + c ( m is the slope and c the y- intercept )

Calculate m using the slope formula

m = \frac{y_{2}-y_{1}  }{x_{2}-x_{1}  }

with (x₁, y₁ ) = (- 5, 0) and (x₂, y₂ ) = (0, 5)

m = \frac{5-0}{0+5} = \frac{5}{5} = 1

note the line crosses the y- axis at (0, 5) ⇒ c = 5

y = x + 5 ← equation of broken line

Thus y < x + 5 is the inequality for the graph

5 0
4 years ago
(16x24)x(280/?)=6144
Oxana [17]
I believe it’s 17.5
3 0
3 years ago
Read 2 more answers
Let a, b, c, and d be nonzero real numbers. If the quadratic equation ax (cx + d) = –b (cx + d) is solved for x, which of the fo
gayaneshka [121]

Answer:

x_1=-\frac{b}a,x_2=-\frac{d}c

Step-by-step explanation:

Solving for x:

ax(cx + d) =-b(cx +d)\\ax(cx + d)+b(cx+d)=0\\(ax+b)(cx+d)=0

In this form is easy to identify the factors of the quadratic function: (ax+b)(cx+d). The two solutions are the values ​​that make each of the factors equals to zero.

ax_1+b=0\\ax_1=-b\\x_1=-\frac{b}a\\cx_2+d=0\\cx_2=-d\\x_2=-\frac{d}c

7 0
4 years ago
You must show all work. No decimal answers leave in fraction form and reduce.<br> 3[75÷(3^3-2•6)+7]
ololo11 [35]

Answer:

36

Step-by-step explanation:

The bolded letters are the differences in each step.

Your biggest friend in this problem is P.E.M.D.A.S (or synonyms to it)

It stands for Parenthesis, Exponents, Multiplication/Division, Addition/subtraction.

3[75÷(3^3-2•6)+7]

3[75÷(27-2•6)+7]

3[75÷(27-12)+7]

3[75÷15+7]

3(5+7)

3•12

36

I hope this helps!

7 0
3 years ago
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