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Aneli [31]
4 years ago
9

Write the equation of the line that passes through the point (−2, −1) and has a slope of 5

Mathematics
1 answer:
Alex787 [66]4 years ago
5 0

Answer:

A) y=5x+9 B) -5x+y=9

Step-by-step explanation:

y-y1=m(x-x1)

y-(-1)=5(x-(-2))

y+1=5(x+2)

y=5x+10-1

y=5x+9

y-5x=9

-5x+y=9

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PLZZ Help FAST!!!
nalin [4]

Consider triangles ADC and BEC.

1. BE⊥AC (statement a_0) and AD⊥BC;

CB≅CA (statement a_1)

Reason: Given.

2. ∠ADC (statement a_2) and ∠BEC are right angles.

Reason: Perpendicular lines form right (statement a_3) angles.

3.  ∠BCE (statement a_4) = ∠ACD  (statement a_5)

Reason: Reflexive Property of Congruence (statement a_6).

4. ΔADC≅ΔBEC (statement a_7).

Reason: HA Postulate (statement a_8).


4 0
3 years ago
Find the gradient of the straight line 2y+3x=0
MArishka [77]
  3x + 2y = 0
- 3x        - 3x
          2y = -3x
           2       2
            y = -1.5x

The gradient of the straight line of the function is -1.5.
6 0
3 years ago
A 125-mL container of amoxicillin contains 600 mg/5 mL. How many milliliters would be used to administer 400 mg of amoxicillin?
Dovator [93]

Answer:

3.33 milliliters.

Step-by-step explanation:

We have been given that a 125-mL container of amoxicillin contains 600 mg/5 mL.

First of all, we will find amount of mg's of amoxicillin per ml as:

\text{Concentration of amoxicillin per ml}=\frac{\text{600 mg}}{\text{5 ml}}

\text{Concentration of amoxicillin per ml}=\frac{\text{120 mg}}{\text{ml}}

Now, we will use proportions as:

\frac{\text{1 ml}}{\text{120 mg}}=\frac{x}{\text{400 mg}}

\frac{\text{1 ml}}{\text{120 mg}}\times \text{400 mg}=\frac{x}{\text{400 mg}}\times \text{400 mg}

\frac{\text{400 ml}}{120 }=x

\text{3.33 ml}=x

Therefore, 3.33 milliliters would be used to administer 400 mg of amoxicillin.

5 0
4 years ago
Given cos A = .23 find angle A in radians.
pochemuha
Hi what the answer choiches
8 0
4 years ago
What is the area of the parallelogram?
IgorC [24]

Complete Question

What is the area of the parallelogram?

Slant Height = 21 cm

Height = 15 cm

Base = 20 cm

Answer:

300cm²

Step-by-step explanation:

The formula for the area of the parallelogram = Base × Height

Base = 20cm

Height = 15cm

Area = Base × Height

= 20cm × 15cm

= 300 cm²

Therefore, the area of the parallelogram is 300 cm²

3 0
3 years ago
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