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makkiz [27]
3 years ago
7

Point a and point b are placed on a number line point a is located -20 and point b is 5 less then point a .which statement about

paint b is true
Mathematics
1 answer:
nekit [7.7K]3 years ago
4 0
<span>point a is located -20 and point b is 5 less then point a

-20 - 5 = -25 
So the answer is C. It is located at -25 and is to the left of point a on the number line</span>
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7 0
3 years ago
What is the y-intercept in the equation y=4x-3?​
Korvikt [17]
<h3>♫ - - - - - - - - - - - - - - - ~Hello There!~ - - - - - - - - - - - - - - - ♫</h3>

➷ Equations come in the form y = mx + c

'c' is the y intercept

In this equation, the y intercept is -3

<h3><u>✽</u></h3>

➶ Hope This Helps You!

➶ Good Luck (:

➶ Have A Great Day ^-^

↬ ʜᴀɴɴᴀʜ ♡

3 0
4 years ago
Read 2 more answers
Can I get some help please?! I will mark Brainliest and 5 stars ✨
Kaylis [27]

See in the explanation

<h2>Explanation:</h2><h2 /><h3>Part 1.</h3>

If you have two variables, the proportional relationship tells us that the ratio between these variables stays the same. Suppose you have two variable x \ and \ y, so in proportional relationship we say y varies proportionally as x or in other terms y is directly proportional to x. If so, then y increases as x increases or y decrases as x decreases:

y=kx \\ \\ k:Constant \ of \ proportionality

But how does the slope relate to the equation? Well, in this case y=kx is the equation of a line and k which is the constant of proportionality represents the slope of the line.

<h3>Part 2.</h3>

Here we have:

y=mx \\ \\ Where: \\ \\ m:Slope

The slope is the steepness of the line and also tells us its direction. But what do the graphs of lines given by that form have in common? Well, the common thing is that they all pass through the origin (0, 0), because the y-intercept is b=0

On the other hand, how might they differ? Well, they might differ in the inclination. So we can measure this as:

  • m > 0, the line increases its outputs if you move from left to right.
  • m < 0, the line decreases its outputs if you move from left to right.
  • m = 0, the line lies on the x-axis and is constant.
  • m <em>undefined, </em>this occurs when the line is vertical.

<h3>Part 3.</h3>

The table shows relationship between time (s) and distance (m) of a train that is traveling. We know that the table represents a linear relationship because the between two consecutive outputs (distance) is constant, that is:

50-25=25 \\ 75-50=25 \\ 100-75=25

y-y_{1}=m(x-x_{1}) \\ \\ m:Slope \\ \\ (x_{1},y_{1}):A \ point \ on \ the \ line \\ \\ \\ So: \\ \\ m=\frac{y_{2}-y_{1}}{x_{2}-x_{1}} \\ \\ Two \ points: \\ \\ (x_{1},y_{1})=(2,25) \\ (x_{2},y_{2})=(4,50) \\ \\ m=\frac{50-25}{4-2} \\ \\ m=\frac{25}{2}

So, the equation of the line is:

\boxed{y-25=\frac{25}{2}(x-2)}

<h3 /><h3>Part 4.</h3>

a)

In this case, we have a relationship between a hiker's elevation and time given by a proportional relationship. We know this is so because the graph is a line and passes through the origin (See Part 2). So we can find the constant of proportionality by computing the slope of the line. Therefore:

k=m=\frac{y_{2}-y_{1}}{x_{2}-x_{1}} \\ \\ Two \ points \ are: \\ \\ (x_{1},y_{1})=(0,0) \\ (x_{2},y_{2})=(1,30) \\ \\ k=\frac{30-0}{1-0} \\ \\ \boxed{k=30}

So the slope is also:

\boxed{m=30}

b)

So the equation of the line can be written as:

y=kx \\ \\ \boxed{y=30x}

<h3>Part 5.</h3>

As we said before, the graph of lines given by the form:

y=mx

passes through the origin having slope m. In this case, we have the following equation:

y=-\frac{1}{2}x

So we can graph this with two points, since the origin is a point that lies on the line, we just need another point. Let's say:

x=1 \\ \\ y=-\frac{1}{2}x \\ \\ y=-\frac{1}{2}(1) \\ \\ y=-\frac{1}{2} \\ \\ Another \ point \ is: \\ \\ (1,-1/2)

Graph a line that passes through these two points as shown below

<h3>Part 6.</h3>

As the problem states, Resting heart rate is a measure of how fast the heart beats when a person is not performing a physical activity. So you can see that the graph shows the number of heartbeats over time for a given person. So we have the following equation of the slope in an incomplete form:

m=\frac{280-()}{()-2} \\ \\ Recall \ that: \\ \\ m=\frac{y_{2}-y_{1}}{x_{2}-x_{1}} \\ \\ So: \\ \\ (x_{1},y_{1})=(2,140) \rightarrow Because \ the \ image \ of \ 2 \ is \ 140 \\ \\ (x_{2},y_{2})=(4,280) \rightarrow Because \ the \ image \ of \ 4 \ is \ 280 \\ \\ Accordingly: \\ \\ \boxed{m=\frac{280-140}{4-2}=\frac{70}{1}} \\ \\ or \ simply: \\ \\ m=70

Since this line passes through the origin, then:

y=mx \\ \\ \boxed{y=70x}

<h3>Part 7.</h3>

Here you have another example of proportional relationships. In this case, the number of gallons of white paint is related to the number of gallons of red paint. Since this line passes through the origin, we just need to find the slope in order to build up the equation of the line:

Two \ points: \\ \\ (x_{1},y_{1})=(0,0) \\ \\ (x_{2},y_{2})=(4,1) \\ \\ m=\frac{1-0}{4-0} \\ \\ m=\frac{1}{4}

Finally, the equation of the line is:

\boxed{y=\frac{1}{4}x}

<h3>Part 8.</h3>

His graph is incorrect. In fact, the graph comes from the equation:

y=x

Remember that we said above that if m < 0, the line decreases its outputs if you move from left to right.

In the graph occurs the opposite because the line increases its outputs if you move from left to right or, in other words, m > 0 and in this case m = 1, so:

y=x

<h2>Learn more:</h2>

Equation of lines: brainly.com/question/12169569

Proportional relationships: brainly.com/question/674693

#LearnWithBrainly

5 0
4 years ago
Please help me with this question ASAP
Goryan [66]

Answer:

4x-5

Step-by-step explanation:

The area of a square is

A = s^2

16x^2 - 40x+25 = s^2

Take the square root of each side

sqrt(16x^2 - 40x+25) =sqrt( s^2)

Recognizing that the left hand side is a perfect square trinomial

sqrt((4x-5)^2) = s

4x-5 =s

The side length is 4x-5

6 0
3 years ago
Find the first three nonzero terms in the power series expansion for the product f(x)g(x).
WARRIOR [948]

Answer:

∑(-1)^k/(2k+1)! (5x)^2k+1

From k = 1 to 3.

= -196.5

Step-by-step explanation:

Given

∑(-1)^k/(2k+1)! (5x)^2k+1

From k = 0 to infinity

The expression that includes all terms up to order 3 is:

∑(-1)^k/(2k+1)! (5x)^2k+1

From k = 0 to 3.

= 0 + (-1/2 × 5³) + (1/6 × 10^5) + (-1/5040 × 15^5)

= -125/2 + 100000/6 - 759375/5040

= -62.5 + 16.67 - 150.67

= - 196.5

6 0
3 years ago
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