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nlexa [21]
3 years ago
7

Maddie help please ee

Mathematics
1 answer:
Shtirlitz [24]3 years ago
6 0

Answer:

x+11/x+9

Step-by-step explanation:

Just Cancel the common factor of x-4

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In a single growing season at the smith family orchard, the average yield per apple tree is 150 apples when the number of trees
Mariana [72]

Answer:

100 trees should be planted per acre to maximize the total yield (15000 apples per acre)

Step-by-step explanation:

<u>Functions </u>

Expressing some quantities in terms of other(s) comes in handy to understand the behavior of the situations often modeled by those functions.

Our problem tells us about the smith family orchard, where the average yield per apple tree is 150 apples when the number of trees per acre is 100 (or less). But the average yield per tree decreases when more than 100 trees are planted. The rate of decrease is 1 for each additional tree is planted

Let's call x the number of trees planted per acre in a single growing season. We have two conditions when modeling:  when x is less than 100, the average yield per apple tree (Ay) is (fixed) 150.

Ay(x)=150\ ,\ x\leqslant 100

When x is more than 100:

Ay(x)=150-x\ ,\ 100< x\leqslant 150

The upper limit is 150 because it would mean the Average yield is zero and no apples are to be harvested

Part 1

We are asked what happens if the number of trees per acre was doubled, but we don't know what the original number was. Let's make it x=60

If x=60, then we must use the first function, and

Ay(60)=150

The yield per acre will be 150*60=9000 apples

If we doubled x to 120, we would have to use the second function

Ay(120)=150-x=30

The yield per acre will be 30*120=3600 apples

Note that doubling the number of trees would make the production decrease

If we started with x=30, then  

Ay(30)=150, and we would have 150*30=4500 apples per acre

We already know that for x=60 (the double of 30), our production will be 9000 apples per acre

This shows us that in some cases, increasing the number of trees is beneficial and in other cases, it is not

Part 2

The total yield is computed as

Y(x)=x.Ay(x)

This function will be different depending on the value of x

Y(x)=150x\ ,\ x\leqslant 100

Y(x)=150x-x^2\ ,\ 100< x\leqslant 150

To find the maximum total yield we take the first derivative

Y'(x)=150\ ,\ x\leqslant 100

Y'(x)=150-2x\ ,\ 100< x\leqslant 150

The first expression has no variable, so the total yield must be evaluated in the endpoints

Y(0)=0

Y(100)=15000

Now, the second expression contains variable, it will be set to 0 to find the critical point

150-2x=0

x=75

x is outside of the boundaries, we cannot find the maximum in this interval

Answer: 100 trees should be planted per acre to maximize the total yield (15000 apples per acre)

7 0
4 years ago
Hw 30 surface area.
irina [24]

Answer:

5. LA = 301.6 sq. cm.,  SA = 402.1 sq. cm.

6. LA = 377.0 sq. in.,  SA = 603.2 sq. in.

7.  LA = 113.1 sq. cm.,  SA = 169.6 sq. cm.

8. LA = 502.7 sq. cm.,  SA = 603.2 sq. cm.

9. 396 sq. in.

Step-by-step explanation:

The lateral area is the area of all the faces, except the base(s). The surface area is the area of ALL the faces of the shape.

5.

The lateral area of a cylinder is given by the formula:

LA = 2πrh

where r is the radius and h is the height of the cylinder

So, lateral area would be 2π(4)(12) = 301.6 sq. cm.

The surface are would be the lateral area (301.6) PLUS the area of 2 of the circular bases. Circle has an area of πr^2.

So 2 bases would have area of (π(4)^2)*2=100.5

Thus, the surface area = 301.6 + 100.5 = 402.1

6.

The lateral area would be LA = 2πrh

The radius is given as 6 and height as 10. Plugging it would give us:

LA = 2πrh = 2π(6)(10) = 377.0 sq. in.

For the surface area, we would need to add the top and bottom (which are 2 identical circles with area πr^2 each) with the lateral area. So we have:

2 * (π(6)^2)

=226.2

Surface area = 377.0 + 226.2 = 603.2 sq. in.

7.

The radius of the cylinder is 3 and height is 6. We will plug them into the respective formulas.

<u>lateral area:</u>

LA = 2πrh = 2π(3)(6) = 113.1

<u>surface area:</u>

area of 2 circles (top and bottom) = (πr^2)*2 = (π(3)^2)*2 = 56.5

Surface area = 113.1 + 56.5 = 169.6

8.

diameter is given as 8, so radius is half of it. Hence, radius is 4 and height given as 20.

Plugging these values into the respective formula we will get the answer.

<u>lateral area:</u>

LA = 2πrh = 2π(4)(20) = 502.7

<u>surface area:</u>

area of both the circles (top and bottom) PLUS the lateral area of 502.7.

So, surface area = 502.7 + (πr^2)*2 = 502.7 + (π(4)^2)*2 = 603.2  

9.

The frosting area of area of two rectangles (left and right) + area of two rectangles (back and front) + area of rectangle (top).

So, surface area of the frosting part = 2 (4*15) + 2(4*12) + (12)(15) = 396

5 0
4 years ago
X^2+14x-15=0 solve by completing square<br>​
Softa [21]

Answer:

{x}^{2}  + 14x - 15 = 0 \\  {x}^{2}  - x + 15x -15 = 0 \\ x(x - 1) + 15(x - 1) = 0 \\ (x - 1)(x + 15) = 0 \\  \boxed{x = 1} \\  \boxed{x =  - 15}

<h3><u>x=1 and x=</u><u>-</u><u>15</u> is the right answer.</h3>
7 0
3 years ago
Use the data in the following​ table, which lists​ drive-thru order accuracy at popular fast food chains. Assume that orders are
Sergeu [11.5K]

Probability of getting an order from Restaurant A or an order that is accurate is 1.21,

The events are not disjoint events.

<h3>What is the probability?</h3>

Probability is used to calculate the odds that a random event would occur. The odds that the random event happens lie between 0 and 1.  

Total number of accurate orders = 332 + 277 + 244 +  150 = 1,003

Total number of orders = 31 + 51 + 30 + 10 + 1003 = 1,125

Total number of orders from restaurant A = 332 + 31 = 363

Probability of getting an order from Restaurant A = total number of orders from restaurant A / total number of orders

363 / 1125 = 0.32

Probability that the order is accurate = number of accurate orders / total number of orders

1003 / 1125 = 0.89

Probability of getting an order from Restaurant A or an order that is accurate = 0.32 + 0.89 = 1.21

Disjoint events are events that are mutually exclusive. If one event happens, the other event cannot happen

To learn more about probability, please check: brainly.com/question/13234031

#SPJ1

5 0
1 year ago
A band played an encore at 2 of its last 4 shows. Considering this data, how many of the
faust18 [17]
7
it looks like they’re playing 50% of the time so half of 14 shows would be 7 shows
8 0
3 years ago
Read 2 more answers
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