I need help finding number 16!!! Quick I don’t know how to find.

I Need Help Finding Number 16!!! Quick I Dont Know How To Find.

Answers

Answer 1

Answer:

17°

Step-by-step explanation:

m∠1 = m∠2.

Set the expressions for 1 and 2 equal to each other.

6x + 5 = 9x - 46

Separate x's on one side.

3x = 51

x = 17

Answer 2
m Angle 1 = m Angle 2
6x + 5 = 9x - 46
6x - 9x = -46 - 5
-3x = -51
x = 17°

Answer: m Angle 1 and m Angle 2 = 17°

Related Questions

A phone case is 10 times cheaper than the phone. Herman paid 660 for his phone and case. What was the cost of the phone and what was the cost of the phone case

Answers

Answer:

Let x be the cost of the phone.

we know that the cost of the phone case is 10 times cheaper than the phone so the cost of the case is x/10

We also know that the total cost of the phone and the case is 660.

so we can write an equation:

x + (x/10) = 660

We can solve this equation for x by multiplying both sides by 10:

10x + x = 6600

11x = 6600

x = 600

So the cost of the phone is 600 and the cost of the phone case is 600/10 = 60

Find the coordinates of the vertices for the figure after the given transformation Dilation of 0.25. I(-2,1), J(2,2), K(2,-1)

Answers

Answer:

I'(-0.5, 0.25), J'(0.5,0.5), K'(0.5, -0.25)[/tex]

Step-by-step explanation:

Assuming the dilation is centered at the origin, it is known that for a dilation of scale factor [tex]k[/tex] centered at the origin, [tex](x,y) \to (kx,ky)[/tex].

The coordinates of the vertices for the figure after the given transformation Dilation of 0.25. is solved to be

I' (-0.5, 0.25)

J' (-1, 1)

K' (1, -0.25)

What is dilation?

Dilation is a method of transformation that magnify or shrink the preimage depending on the scale factor

The transformation rule for dilation is as follows

(x, y) for a scale factor of r → (rx, ry)

In the given problem the coordinates of the image is solved when r = 0.25

preimage                                       image

I (-2, 1)   → (0.25 * -2, 0.25 * 1) →   I' (-0.5, 0.25)

J (2, 2)   → (0.25 * 2, 0.25 * 2) →   J' (-1, 1)

K (2, -1)   → (0.25 * 2, 0.25 * -1) →   K' (1, -0.25)

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Smith and Frank thought of the same number. They multiplied the number by 5 and then increased the product by 5 for a final result of -80. Of what number were they thinking?

Answers

Answer

-17

Step-by-step explanation:

5 times -17= -85 and then add 5 = -80

What is the median age of the presidents at their death? a. 69 c. 68 b. 67. 5 d. 70.

Answers

The median age of the presidents at their death is 69.

What is median?

The median is the value that is exactly in the middle of a dataset when it is arranged in order. It is a measure of central tendency which separates the lowest 50% from the highest 50% of values.

The median formula is {(n + 1) / 2}th, where “n” is the number of items in the set and “th” means the (n)th number. To find the median, first arrange the data points from smallest to largest.

The steps for finding the median differ depending on whether we have an odd or an even number of data points. If the number of data points is odd, the median is the middle data point in the list. If the number of data points is even, the median is the average of the two middle data points in the list.

In this case, the number of data points is even, that is 38. So, the median is:

= {(n + 1) / 2}th

= {(38 + 1) / 2}th

= 19,5th

Thus, it means the median is the average of the 19th and 20th in the data points. So, it will be:

Median = (68 + 70) / 2

Median = 138 / 2

Median = 69

Hence, the median age of the presidents at their death is 69.

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Although part of your question is missing, you might be referring to this full question: This list shows the age at which 38 U.S. Presidents died.

46 58 64 68 73 80 90

49 60 65 70 74 81 93

53 60 66 71 77 83

56 63 67 71 78 85

56 63 67 71 78 88

57 64 67 72 79 90

What is the median age of the presidents at their death?

A. 69

C. 68

b. 67.5

d. 70

Karmyn is using vinegar for a salad dressing recipe. She has 3 1/2 cups of vinegar. She knows there are 16 tablespoons in one cup. How many tablespoons are in her 3 1/2 cups of vinegar?

Answers

Karmyn has 56 tablespoons of vinegar for a salad dressing recipe.

What is the Multiplication operation?

In mathematics, Multiplication operations perform Multiplying values on either side of the operator.

For example 4×2 = 8

Karmyn is making a salad dressing using vinegar. She has three and a half glasses of vinegar. She understands that one cup contains 16 tablespoons.

First, we need to convert the 3 1/2 cups of vinegar to tablespoons.

We know that there are 16 tablespoons in 1 cup, so we can multiply the number of cups by the number of tablespoons per cup to convert the measurement.

3 1/2 cups × 16 tablespoons/cup = 56 tablespoons.

Therefore, she has 56 tablespoons of vinegar.

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How do you find the exponential formula?

Answers

The Exponential formula for the given expression "5 × 5 × 5" can be represented as 5³ , and the value is 125 .

What is an Exponential Form ?

An Exponential Form is a way of writing large or very small numbers succinctly .

The given expression is : ⇒ [tex]5 \times 5 \times5[/tex] ;

here we can observe that the number 5 is multiplied by itself 3 times ,

So , the base of the exponential form is 5 ; and

the exponent/power of exponential form is 3 .

So ,the exponential form is written as [tex]5^{3}[/tex] ,and the value of this form is 125 .

Therefore , the exponential formula of [tex]5 \times 5 \times5[/tex] is [tex]5^{3}[/tex] .

The given question is incomplete , the complete question is

How do you find the exponential formula of the the expression 5 × 5 × 5 ?

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(a) Find the intercept(s)
▪️If there are more then one, separate them with commas
▪️If there are none select “none”

(b) Find the axis of symmetry

(c) Find the coordinates of the vertex

Please help tomorrow is the last day of the semester and I need to pass.

Answers

The conventional equation y = ax2 + bx + c yields the vertex (h, k) as h(x-coordinate of the vertex) = -b/2a.

what is coordinates ?

When it comes to geometry, a coordinate system is a technique that uses one or more integers or coordinates to specify the exact location of points or other geometrical objects on a manifold, such as Euclidean space. Locating a point or item on a two-dimensional plane requires the usage of pairs of integer coordinates. Two numbers known as the x and y coordinates serve as a description of a point's location on a 2D plane. a collection of figures that signify exact locations. Most often, the figure contains two numerals. The first number denotes the distance from front to rear, and the second number denotes the distance from top to bottom. In (12.5), for example, there are 12 units below and 5 above.

given

a) the intercepts are (4,0) , (1,9) and (-2 , 0 ) of the given figure

b) The equation for the parabola's axis of symmetry can be found in the vertex's x-coordinate.

(1,9) is the axis of symmetry

c) The conventional equation y = ax2 + bx + c yields the vertex (h, k) as h(x-coordinate of the vertex) = -b/2a.

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A= (a, b}
B = {1,2,3}
Select the expression that is an element of AxBxB.
a. (1,2,3)
b. (a, a,1)
c. (b,2^2)
d. (2.1.1)

Answers

The expression that is an element of AxBxB is (1,2,3)

The given data is A= (a, b}, B = {1,2,3}

The product of two matrices A and B is defined if the number of columns of A is equal to the number of rows of B. If both A and B are square matrices of the same order, then both AB and BA are defined.

[tex]& \ A \times B=\left\{\begin{array}{c}(a, 1),(a, 2),(a, 3),(b, 1) \\(b, 2),(b, 3)\end{array}\right. \\[/tex]

[tex]& A \times B \times B=\left\{\begin{array}{l}(a, 1,1),(a, 1,2),(a, 1,3), \\(a, 2,1),(a, 2,2),(a, 2,3),\end{array}\right. \\& (a, 3,1),(a, 3,2),(a, 3,3) \\ & (b, 1,1),(b, 1,2),(b, 1,3) \\& \left.\begin{array}{l}(b, 2,1),(b, 2,2),(b, 2,3) \\(b, 3,1),(b, 2),(b, 3,3)\end{array}\right\} \\[/tex]

[tex]& \therefore(b, 2,3) \in D \times B \times B \\\\& (a, a, 1) \notin A \times B \times B \\\\& \left(b, 2^2\right) \quad \forall A \times B \times B \\\\& (2,1,1) \notin A \times B \times B \\\\&=(b, 2,3) \in \cap \times B \times B \\&\end{aligned}[/tex]

The union of two sets X and Y is equal to the set of elements that are present in set X, in set Y, or in both the sets X and Y.

The intersection of sets can be denoted using the symbol ‘∩’. As defined above, the intersection of two sets A and B is the set of all those elements which are common to both A and B. Symbolically, we can represent the intersection of A and B as A ∩ B.

Therefore, the expression that is an element of AxBxB is (1,2,3).

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If the scale on a map is 1 inch to 20 miles; what is the actual distance between two towns that are 3 inches apart on the map?

Answers

The two towns are distance 60 miles apart in the real world if they are 3 inches apart on a map with a scale of 1 inch to 20 miles.

60 miles

1 inch = 20 miles

3 inches = 20 miles x 3 = 60 miles

The scale of a map is a way of expressing the relationship between the distances on the map and the actual distances in the world. If the scale on a map is 1 inch to 20 miles then it means that 1 inch on the map represents 20 miles in the real world. If two towns are 3 inches apart on the map, then this means that the actual distance between them is 3 times the scale, or 3 x 20 miles = 60 miles.

The two towns are 60 miles apart in the real world if they are 3 inches apart on a map with a scale of 1 inch to 20 miles.

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An ice cream factory makes 140 quarts of ice cream in 2 hours. How many quarts could be made in 12 hours? What was that rate per day?​

Answers

Answer:

840 quarts could be made in 12 hours. The rate per day is 1680 quarts could be made per day.

Step-by-step explanation:

140/2=x/12

reduce/simplify 140/2 to 70

so 70/1=x/12.

cross product

70*12=1*x

840=x

One day has 24 hours,

so we multiply 2 by 12 to get 24,

thus 840*2=1680.

What are the 8 quadratic formulas?

Answers

The 8 quadratic formulas are essential for solving quadratic equations. They are derived from the quadratic equation, which is expressed as ax² + bx + c = 0. The 8 quadratic formulas are:

1. Standard Quadratic Formula: x = [-b ± √(b² - 4ac)]/2a

2. Quadratic Formula for Negative Discriminant: x = [-b/2a] ± i√(-b² - 4ac)/2a

3. Quadratic Formula for Zero Discriminant: x = -b/2a

4. Quadratic Formula for One Real Root: x = -2c/b

5. Quadratic Formula for Two Real Roots: x = [-b ± √(b² + 4ac)]/2a

6. Quadratic Formula for Two Identical Real Roots: x = -b/a

7. Quadratic Formula for Two Imaginary Roots: x = [-b/2a] ± √(-b² + 4ac)/2a

8. Quadratic Formula for One Imaginary Root: x = [-b/2a] ± i√(b² + 4ac)/2a

By understanding these formulas, it's possible to solve for any unknowns in a quadratic equation.

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More potential energy can be stored by moving against the magnetic force closer to a magnet.
Which variable will you test and which variables will you keep the same?

Answers

The response to claim A and Claim B on potential energy being stored in  a magnet in terms of the given options is that;

Claim A; I think So

Claim B; Definitely Not

How to illustrate the claim?

Claim A; This claim is true because If we move a magnet against the magnetic force of a stronger magnet, the motion will make the magnetic field lines to be compressed and this would lead to an increase in potential energy since the magnetic force lines will now be compressed.

Thus, the claim is correct that there is more potential energy that can be stored by moving against the magnetic force of a stronger magnet.

Claim B; Unlike claim A where the magnets were being moved from each other, in this case they are moved closer to each other and therefore this causes a greater compression of space which will lead to a loss in potential energy. Therefore this claim is not true.

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Complete question

Claim A: More potential energy can be stored by moving against the magnetic force of a stronger magnet.

definitely

I think so

I don't know

I don't think so

definitely not

Explain why, using evidence from the activities you have done.

Do you agree with Claim B, More potential energy can be stored by moving against the magnetic force closer to a magnet?

definitely

I think so

I don't know

I don't think so

definitely not

Explain why, using evidence from the activities you have done.

Which statements are true about rhombus MNPQ?

Answers

The statements that are true about rhombus MNPQ include A. and B.

How to explain the rhombus?

A quadrilateral with a diamond shape is a rhombus. It has four equal sides with the opposite sides running parallel to one another. It resembles a square that is skewed.

A rhombus is a quadrilateral with four equal-length sides in plane Euclidean geometry. The term "equilateral quadrilateral" refers to a quadrilateral whose sides all have equal lengths.

Based on the diagram, it should be noted that NR equals QR as they are the same.

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Bob has 22 missing assignments in his history class. He completes 19 of them What percent of missing assignments does Bob still need to complete?​

Answers

Answer:

he has 86.36% percent out of 100

Fill in the blank quetion. If three of the interior angle of a convex hexagon each meaure 140°, a fourth angle meaure 84°, and the meaure of the fifth angle i 3 time the meaure of the ixth angle, find the meaure of the ixth angle

Answers

The measure of the sixth angle of the given convex hexagon is 54 degrees.

We know that the sum of all the interior angles of a convex hexagon is:

720 degrees

Given that three interior angles of the given hexagon measure 140 degrees each.

The fourth angle is 84 degrees.

Let us consider the sixth angle to be x degrees.

Then as per the question, the fifth angle is 3 x (sixth angle) = 3x

Hence, sum of all the angles of the given convex hexagon is:

(3 x 140) + 84 + 3x + x = 720

504 + 4x = 720

4x = 720 - 504 = 216

x = 54 degrees.

Therefore the measure of the sixth angle of the given convex hexagon is 54 degrees.

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What are the 3 problem solving steps?

Answers

The three various steps of problem-solving methods are.

Clarifying.Ideating.Developing.What does it mean, exactly, to "solve problems"?

A problem must be defined, its root cause must be found, then there must be a search for, ranking, and selection of potential solutions, followed by their implementation. the actions taken to fix issues.

Clarifying:

The first step in resolving any problem is to clarify the current circumstance.You can handle it more easily and move forward as a result.Salespeople should probe as much as they can during conversations with clarifyers to learn more.

Ideating:

Any problem must first be understood in order to be resolved.It makes it easier for you to control and gives you the freedom to move forward.Salespeople must ask as many questions about clarifications as they can when working with clarifyers.

Developing:

Developers take great care when choosing the best course of action.These people have an obsession with accuracy.To find out what sets a customer's choice apart from the alternatives, salespeople should present them with a few options.

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Two roads, A and B, run parallel to each other. A third road, C, passes through both A and B. Road C creates an exterior angle of 77 with road A.
What is the measure of the alternate exterior angle made by the intersection of road B and road C?

Answers

The measure of the alternate exterior angle made by the intersection of road B and road C is 77 degrees.

How to calculate the angle?

The pair of angles known as alternate exterior angles are those that are formed on the opposite side of the transversal from the parallel lines' outer side.

According to the alternate exterior angle theorem, alternate exterior angles are regarded as congruent angles or angles of equal measure when two parallel lines are intersected by a transversal.

In this case, two roads, A and B, run parallel to each other. A third road, C, passes through both A and B. Road C creates an exterior angle of 77 with road A. Therefore, the angle will also be equal to 77°.

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Samuel pays $59.99 plus $0.25 for each minute over 450 minutes for his cell phone plan. Monica pays $64.99 plus $0.10 for each minute over 450 minutes for her cell phone plan. Which system of equations represents this situation? Let x represent the number of minutes over 450.

Answers

Using the slope and y - intercept, the linear function that models this problem is y = -33.333x + 68.32

What is System of Linear Equations

A system of linear equation is a set of at least two linear equations containing the same set of variables. Linear equations use only polynomial coefficients and the operations of addition, subtraction, multiplication and division. The solutions to a linear equation system are the values of the variables which make all the equations true.

To solve this problem, we have to define our variables and set our system of linear equations.

Let;

x = number of minutesy = total cost

Using the data given, we can find the slope and y - intercept of a linear function that represents this.

slope (m) = y₂ - y₁ / x₂ - x₁

m = 64.99 - 59.99 / 0.10 - 0.25

m = -33.333

Using the slope in the slope-intercept form of a linear equation

y = mx + c

Taking one point;

59.99 = -33.333(0.25) + c

c = 68.32

The linear equation can be written as;

y = -33.33x + 68.32

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I dont get this one help me

Answers

The solution to the expression when x = 3 is 0

What is an equation?

An equation is an expression that shows the relationship between variables and numbers.

Given the diagram, the small white squares represent 1, while the big shaded rectangle represent -x.

The diagram shown represents the expression:

-x + 1 + 1 + 1  (they is one big shaded rectangle and three white small squares)

= -x + 3

Substituting x = 3 gives:

= -(3) + 3

= 0

The solution is 0

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Solve the perimeter of this shape

Answers

The perimeters of the two composite figures are listed below:

Case C: 50.913π mm

Case D: 20.310 cm

How to determine the perimeter of a composite figure

In this problem we find two composite figures, whose perimeter have to be found. Perimeter is the length of all borders of the figure. The first figure is formed two semicircles and the second figure is formed by two semicircles and two right triangles, whose perimeter formulas are:

Semicircle

s = π · r

Triangle

s = b + h + p

Where:

r - Radius, in length unit.b - Width, in length unit.h - Height, in length unit.p - Hypotenuse, in length unit.

Case c - The perimeter of the shape is:

s = π · (28 mm) + π · (14 mm) + 28 mm

s = 50.913π mm

Case d - The perimeter of the shape is:

s = 2π · (1.8 cm) + 2 · (4.5 cm)

s = 20.310 cm

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What is the domain of the function answer?

Answers

The domain of a function is the set of all possible input values for which the function produces a valid output.

The domain of a function is the set of all possible input values for which the function produces a valid output. To find the domain of a specific function, you will need to look at the equation and determine what values are acceptable for the inputs. For example, if the equation is y = x2 + 5, then the domain of the function would be all real numbers, since any real number can be plugged in for x and the equation will produce a valid output.

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What is the value of the missing angle?

Answers

Answer:  32

Step-by-step explanation: because the line has to add up to 180 degrease

Question Find the distance between the points E(3, 7) and F(6, 5).

Answers

The distance between the points E(3, 7) and F(6, 5) is 3.605 units.

What is Distance Formula?

Algebraic expression that gives the distances between pairs of points in terms of their coordinates.

The distance between two points having coordinates P(a, b) and Q(c, d) is,

D= √(c-a)² + (b-d)².

Given:

Points E(3, 7) and F(6, 5).

Now, using Distance Formula

D= √(6-3)² + (5-7)²

D = √(3)² + (2)²

D= √9+4

D= √13 units

D= 3.605 unit

Hence, the distance is 3.605.

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4. The 6th term of an arithmetic series is 13, the sum of the first 40 terms is 3420. Find
the sum of the first 30 terms.

Answers

Answer:

2145

Step-by-step explanation:

Here is the formula for the sum of the first n terms.

[tex]S_n=\frac{n}{2}(2a_1+(n-1)d)[/tex]

Here is the formula for the nth term.

[tex]a_n=a_1+(n-1)d[/tex]

We are given

[tex]a_6=13[/tex]

[tex]S_{40}=3420[/tex]

[tex]3420=\frac{40}{2}(2a_1+(40-1)d)[/tex]

[tex]13=a_1+(6-1)d[/tex]

We don't have a lot to work with but we can get it done.

Lets solve for [tex]a_1[/tex] in [tex]S_n=\frac{n}{2}(2a_1+(n-1)d)[/tex].

Multiply each term by [tex]\frac{2}{n}[/tex].

[tex]\frac{n}{2}(2a_1+(n-1)d)\frac{2}{n} =S_n\frac{2}{n}[/tex]

Simplify.

[tex]\frac{n}{2}*(2a_1+nd-d)\frac{2}{n} =S_n\frac{2}{n}[/tex]

Apply the distributive property.

[tex][\frac{n}{2} (2a_1)+\frac{n}{2} (nd)+\frac{n}{2} (-d)]\frac{2}{n} =S_n\frac{2}{n}[/tex]

Simplify.

[tex](2\frac{n}{2}a_1+\frac{n^2d}{2} -\frac{n}{2}d)\frac{2}{n} =S_n\frac{2}{n}[/tex]

[tex](na_1+\frac{n^2d}{2} -\frac{n}{2}d)\frac{2}{n} =S_n\frac{2}{n}[/tex]

[tex](na_1+\frac{n^2d}{2} -\frac{dn}{2})\frac{2}{n} =S_n\frac{2}{n}[/tex]

[tex]\frac{(na_1+\frac{n^2d}{2} -\frac{dn}{2})*2 }{n}=S_n\frac{2}{n}[/tex]

[tex]\frac{n(2a_1+nd-d)}{n} =S_n\frac{2}{n}[/tex]

[tex]2a_1+nd-d=S_n\frac{2}{n}[/tex]

[tex]2a_1+nd-d=\frac{2S_n}{n}[/tex]

[tex]2a_1=\frac{2S_n}{n}-nd+n[/tex]

Divide each term by 2.

[tex]\frac{2a_1}{2}=\frac{\frac{2S_n}{n} }{2} +\frac{-nd}{2} +\frac{d}{2}[/tex]

Simplify.

[tex]a_1=\frac{S_n}{n} -\frac{nd}{2} +\frac{d}{2}[/tex]

Insert our answer for [tex]a_1[/tex] into [tex]a_n=a_1+(n-1)d[/tex]

[tex]a_n=\frac{S_n}{n_{40} } -\frac{n_{40} d}{2} +\frac{d}{2}+(n_6-1)d\\[/tex]

I continued my work on paper. I will attach it below.

(NEED HELP ASAP) (PLS HELP!!)


Use this coordinate plane. Imagine a rectangle with two corners at points A and G. What is the perimeter of this rectangle?

A- 11 units
B- 16 units
C- 20 units
D- 22 units

Answers

Answer:

D- 22

Step-by-step explanation:

The rectangle would be 9 units tall and 2 units wide.     2 x 2 = 4   9 x 2 = 18     4 + 18 = 22

The blue rectangle is what the rectangle would look like.

help me please this determines my grade

Answers

Answer:

no the points shown would not be part of y =0.5x

A chef needed to put 36 plates away in the kitchen. She put the plates in stacks of 3. How many stacks did the chef make?

Answers

Answer:12

Step-by-step explanation:

dive 36 plates by by the amount of plates per stack (3)

What does 2 exponent mean?

Answers

Exponent 2 means the number of times one number is multiplied. The number of time the base is multiplied.

The Exponents refers to the repeated multiplication of the same thing by itself.

For example, [tex]x^{2}[/tex] . here 2 is the exponent and x is the base. Then we can write it as x . x . The base is multiplied by 2 time by itself.

Exponents are  also called powers or orders. This is the shorthand for repeated multiplication of the same thing by itself. This process of using exponents is called "raising to a power" where the exponent is the "power". The expression [tex]4^{3}[/tex] is pronounced as four raised to the third power", "four, raised to the power three", or "four to the third". It stands for many times the value is being multiplied.

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PLEASE SOLVE ALL I BEGGIING YOU!!!

Answers

A, X=3
B, X=23
C, X=12
D, X= -2
E, X=5

F,X=12
G,X= 23
H, X= 5
I, X=3
J, X=-2

A=I
B=G
C=F
D=J
E=H

Is no solution or infinitely many solutions?

Answers

On the other hand, it is not impossible for an equation to have only one solution, an infinite number of solutions, or none at all. Any value for the variable would make the equation true, but an equation with infinite solutions suggests that there is no answer to the equation.

What is  infinite solution?

Both sides of an infinite solution are equal. As an illustration, 6x + 2y - 8 = 12x + 4y - 16 Using a formula or method for infinite solutions, you can simplify the equation and make both sides to equal one another, making it an infinite solution. The concept of infinite connotes boundlessness or infinity. Typically, it is denoted by the symbol "".

What is an infinite number?

There are an unlimited number of numbers in a series. a collection of infinitely many natural integers, as an illustration. The initial value 0, and the initial value infinite, are represented by the logarithms and +, respectively.

                    The original values 0 and infinity are similarly treated when we consider both of the conceivable values and + as a single infinity.

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