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tamaranim1 [39]
1 year ago
5

A polynomial function has a root of -4 with multiplicity of 4, a root of -1 with multiplicity of 3, and a root of 5 with multipl

icity 6. If the function has a positive leading coefficient and is of odd degree, which could be the graph of the function ?
Mathematics
2 answers:
Dmitrij [34]1 year ago
7 0

Answer:

To draw this graph, we start from the left in quadrant 3 drawing the curve to -4 on the x-axis to touch it but not cross. We continue back down and curve back around to cross the x-axis at -1. We continue up past -1 and curve back down to 5 on the x-axis. We touch here without crossing and draw the rest of our function heading back up. It should form a sideways s shape.


Step-by-step explanation:


A polynomials is an equation with many terms whose leading term is the highest exponent known as degree. The degree or exponent tells how many roots exist. These roots are the x-intercepts.


This polynomial has roots -4, -1, and 5. This means the graph must touch or cross through the x-axis at these x-values. What determines if it crosses the x-axis or the simple touch it and bounce back? The even or odd multiplicity - how many times the root occurs.


In this polynomial:


Root -4 has even multiplicity of 4 so it only touches and does not cross through.


Root -1 has odd multiplicity of 3 so crosses through.


Root 5 has even multiplicity of 6 so it only touches and does not cross through.


Lastly, what determines the facing of the graph (up or down) is the leading coefficient. If positive, the graph ends point up. If negative, the graph ends point down. All even degree graphs will have this shape.


To draw this graph, we start from the left in quadrant 3 drawing the curve to -4 on the x-axis to touch it but not cross. We continue back down and curve back around to cross the x-axis at -1. We continue up past -1 and curve back down to 5 on the x-axis. We touch here without crossing and draw the rest of our function heading back up. It should form a sideways s shape.

Alexeev081 [22]1 year ago
3 0

Answer: b

Step-by-step explanation:

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Step-by-step explanation:

The statement says each gave one of not all of his ginger in the toasting session.

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Lines K and L are parallel,and the measure of angle ABC is 19 degrees
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Answer:

A. Because the measure of the angle BCD is 19 \° and the angles BCD  and ECF are Vertical angles. Therefore, they are congruent ( m\angle BCD=m\angle ECF =19\°)

B.  m\angle BCD=19\°

Step-by-step explanation:

<h3> <em><u>The missing figure is attached.</u></em></h3><h3 />

You can observe in the figure that the parallel lines k and l are intersected by a another line m (this is a transversal).

Let's begin with PART B:

Observe that the angles ABC and BCD are located inside the parallel lines and they alternate sides of the transversal. Therefore, we can determine that these angles are "Alternate Interior Angles".

Since the lines k and l are parallel, we know that the Alternate Interior Angles are congruent. Then:

m\angle ABC=m\angle BCD=19\°

Now we can solve the PART A.

Observe the figure.

Since the angle BCD  and the angle ECF share the same vertex, they are "Vertical angles" and, therefore, they are congruent:

m\angle BCD=m\angle ECF =19\°

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Find the quantity q that maximizes profit if the total revenue, R(q), and total cost, C(q) are given in dollars by R(q)=3q−0.002
marysya [2.9K]

Answer:

The value of q that maximize the profit is q=200 units

Step-by-step explanation:

we know that

The profit is equal to the revenue minus the cost

we have

R(q)=3q-0.002q^{2} ---> the revenue

C(q)=200+2.2q ---> the cost

The profit  P(q) is equal to

P(q)=R(q)-C(q)

substitute the given values

P(q)=(3q-0.002q^{2})-(200+2.2q)

P(q)=3q-0.002q^{2}-200-2.2q

P(q)=-0.002q^{2}+0.8q-200

This is a vertical parabola open downward (because the leading coefficient is negative)

The vertex represent a maximum

The x-coordinate of the vertex represent the value of q that maximize the profit

The y-coordinate of the vertex represent the maximum profit

using a graphing tool

Graph the quadratic equation

The vertex is the point (200,-120)

see the attached figure

therefore

The value of q that maximize the profit is q=200 units

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2 years ago
The high temperatures in Montana are recorded for a week. High Temperatures Sunday 46°F Monday 52°F Tuesday 51°F Wednesday 54°F
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Answer:


Step-by-step explanation:

to get the mean you need to add up all the numbers

46+52+51+54+49+51+61=364

then divide that sum by the amount of numbers you have

364 divided by 7=52

so the mean you have is 52 degrees

5 0
1 year ago
Read 2 more answers
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