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hjlf
3 years ago
9

Compare and Contrast: Two equations are listed below. Solve each equation and compare the solutions. Choose the statement that i

s true about both solutions.
Equation 1 Equation 2
|5x + 6| = 41 |2x + 13| = 28
Equation 1 has more solutions than equation 2.
Equation 1 and Equation 2 have the same number of solutions.
Equation 2 has more solutions than Equation 1.
The number of solutions cannot be determined.
Mathematics
2 answers:
Rzqust [24]3 years ago
5 0
The solutions for eq 1 can be solved with these 2 equations (5x + 6 = 41) and  -(5x + 6 = 41)....so there are 2 solutions

the solutions for eq 2 can be found with these 2 equations (2x + 13 = 28) and -(2x + 13 = 28)...so there are 2 solutions

so both absolute value equations have 2 solutions
Gnoma [55]3 years ago
3 0

both absolute value equations have 2 solutions

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Could someone please help on this question? I’m giving 20 points and brainliest but I need it quickly so please help!
AnnZ [28]
<h3>Answer:  HF = 5</h3>

=============================================

Explanation:

Refer to the diagram below. I'm adding in points A and B, which are marked in blue. I'm also adding in variables x, y, and z.

The goal is to find HF, so let's make that equal to x. This is also equal to HB because they are radii of the same circle.

Let y be the length of segments JA and JB.

Let z be the length of segments CF and CA.

So in short we have

  • x = HF = HB
  • y = JA = JB
  • z = CF = CA

We know that

  • CH = 13
  • HJ = 19
  • CJ = 22

This must mean

  • CH = CF+HF = z+x = 13
  • HJ = HB+JB = x+y = 19
  • CJ = CA+JA = z+y = 22

Or in short,

  • z+x = 13
  • x+y = 19
  • z+y = 22

Let's solve the first equation for z to get z = -x+13. I subtracted x from both sides.

Now plug this into the third equation to get

z+y = 22

(z) + y = 22

(-x+13) + y = 22 ... replace z with -x+13

-x+13+y = 22

-x+y+13 = 22

-x+y = 22-13 .... subtract 13 from both sides

-x+y = 9

------------------------------------

So we have this reduced system of equations of two variables and two equations

  • x+y = 19 ... found earlier
  • -x+y = 9 .... what we just found above

Add the equations straight down. This is the elimination property.

Doing so leads to the x terms canceling out since x + (-x) = 0x = 0

The y terms add to y+y = 2y

The terms on the right hand side add to 19+9 = 28

We are left with 2y = 28 which solves to y = 28/2 = 14.

If y = 14, then,

x+y = 19

x+14 = 19

x = 19-14

x  = 5

In which we can then say

z = -x+13

z = -5+13

z = 8

Though we don't need to find z (unless you're curious about it).

Since x = 5, and we set HF equal to x, this means that HF = 5.

6 0
3 years ago
Draw a point T and a ray PT so that they divide angle OPQ into two smaller parts.
STALIN [3.7K]
Put T in the interior of <OPQ. P is the vertex of the angle. Join PT
5 0
4 years ago
Read 2 more answers
I need help with twelve basic functions on edg
xxMikexx [17]

Answer:

<h2>hope it helps you see the attachment for further information ✌✌✌✌✌✌</h2>

3 0
3 years ago
Read 2 more answers
NEED HELP ASAP 1 HOUR LEFT
katen-ka-za [31]

Using the vertex of a quadratic function, it is found that:

a) The revenue is maximized with 336 units.

b) The maximum revenue is of $56,448.

<h3>What is the vertex of a quadratic equation?</h3>

A quadratic equation is modeled by:

y = ax^2 + bx + c

The vertex is given by:

(x_v, y_v)

In which:

  • x_v = -\frac{b}{2a}
  • y_v = -\frac{b^2 - 4ac}{4a}

Considering the coefficient a, we have that:

  • If a < 0, the vertex is a maximum point.
  • If a > 0, the vertex is a minimum point.

The demand function is given by:

p(x) = 336 - 0.5x.

Hence, the revenue function is:

R(x) = xp(x)

R(x) = -0.5x² + 336x.

Which has coefficients a = -0.5, b = 336.

Hence, the value of x that maximizes the revenue, and the maximum revenue, are given, respectively, as follows:

  • x_v = -\frac{336}{2(-0.5)} = 336
  • y_v = -\frac{336^2 - 4(-0.5)(0)}{4(-0.5)} = 56448

More can be learned about the vertex of a quadratic function at brainly.com/question/24737967

#SPJ1

6 0
2 years ago
Use the given degree of confidence and sample data to construct a confidence interval
ValentinkaMS [17]

Answer:

0.726 < p < 0.874

Step-by-step explanation:

p = 64/83 = about 0.8

confidence interval = p +- z \sqrt{\frac{p (1-p)}{n} }

= 0.8 +- (1.64 x 0.04472)

= 0.8 +- 0.073343

= (0.726656 and 0.873343)

0.726 < p < 0.874

8 0
3 years ago
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