25mi/hr=_______m/min

Answers

Answer 1
Answer: I came up with 0.42 miles per minute when I rounded. Without rounding I got 0.41666667

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Evaluate the expression for the given value of x 9x, x=5

Answers

If x = 5 then all you have to do is plug in 5 into 9x; 
9 × 5 = 45

Hope I helped! <3


Find all zeros (real and complex) for the function f(x)=x^3-5x^2+9x-5

Answers

f(x)=x^3-5x^2+9x-5\n f(x)=x^3-x^2-4x^2+4x+5x-5\n f(x)=x^2(x-1)-4x(x-1)+5(x-1)\n f(x)=(x-1)(x^2-4x+5)\n\n (x-1)(x^2-4x+5)=0\n\n x-1=0\n x=1\n\n x^2-4x+5=0\n x^2-4x+4+1=0\n (x-2)^2=-1\n x-2=i \vee x-2=-i\n x=2+i \vee x=2-i\n\n x=\{1,2-i,2+i\}

Suppose it is found that a certain model of car sells y= -1.6(x-2)^2 + 4.8(x-2) + 16 cars per week, where x is the number of shops selling the car. Make a graph and estimate the best number of shops at which the car should be sold, from the point of view of the manufacturer.

Answers

Answer:

Approximately 4 shops would be the best number of shops which the car is sold, and the number of cars is 20.

Step-by-step explanation:

This is a quadratic function. Therefore, the first thing you need to do is assume some values for x, and then, calculate the value of y, (which would be the number of cars sold). In this way, you can do the graph.

Watch the following attachment, which is a document of excel, showing the graph and some values of x, that I assume

Now, even if you don't have the graph you can estimate the number of shops with the following expression of the summit:

X = -b / 2a

Where:

a: number that goes along with the x elevated.

b: number that goes along with the x, but without being elevated.

In this equation, the first thing we need to do, is rearrange it, that's because we have a (x-2) in the equation, and this could be really annoying.

First let's solve the (x-2)^2

(x-2)^2 = (x-2)(x-2) = x^2 - 2*2x + 2^2 = x^2 - 4x + 4

This is now multiplied by -1.6:

-1.6x^2 + 6.4x - 6.4

Now, multiply 4.8 by x-2:

4.8x - 9.6

Finally, let's arrange this:

-1.6x^2 + 6.4x - 6.4 + 4.8x - 9.6 + 16

-1.6x^2 + 11.2x - 6.4 - 9.6 + 16 = -1.6x^2 + 11.2x

This means that the graph do not have a "y" intercept, and the values of a and b are -1.6 and 11.2, therefore, we can estimate the best number of shops, calculating the summit of the graph (This is because s a quadratic function, and the graph is a parable, and the minimum or maximum point of the graph is reached in the summit)

Summit has X and Y values, the x value is (see formula above):

X = -11.2 / 2 * -1.6 = 3.5

and for the y value, just replace the X value in the equation:

Y = -1.6(3.5)^2 + 11.2(3.5) = -19.6 + 39.2 = 19.6

With this we can conclude that the best number of shops that sells this model of car, is 4 (rounded) and they all sell 20 cars (also rounded). See the graph below in the attachment.

Answer:

The best number of shops at which the car should be sold is 3, from the point of view of the manufacturer.

Step-by-step explanation:

Below we can observe a graph of the function y = -1.6(x-2)^2 + 4.8(x-2) + 16. We have that for x = 3 (blue vertical line) and x = 4 (green vertical line) shops, the manufacturer sells the same number of cars per week y(3) = 19.2 and y(4) = 19.2, and this is the maximum number of car per week that can be sold. Because of operation costs (the less the number of shops, the cheaper the costs), the best number of shops at which the car should be sold from the point of view of the manufacturer is 3.

-7x-2y=-13
-3x-2y=-12 by substitution

Answers

Answer: x = 0.25, y = 5.625 or ((1)/(4), (45)/(8))

Step-by-step explanation:

    To solve by substitution, we will first isolate one of the variables in one of the given equations.

         -7x - 2y = -13 ➜ y = -3.5x + 6.5

    Then, we will substitute this into the other given equation and solve for x.

         -3x - 2y = -12

         -3x - 2(-3.5x + 6.5) = -12

         -3x + 7x - 13 = -12

         4x = 1

         x = 0.25

    Lastly, we will substitute this value of x into the equation we solved for to find y.

         y = -3.5x + 6.5

         y = -3.5(0.25) + 6.5

         y = 5.625

John has a total of 13 coins in his pocket. Of the 13 coins, they are all either quarters or dimes. The total value of the coins is $2.50. How many quarters does John have in his pocket?

Answers

8 quarters = (8 x .25) = $2.00

5 dimes = (5 x .10) = $.50

$2.00 + $.50 = $2.50

8 + 5 = 13

To ensure he never eats the whole cake, Bobby only decides to eat half of what’s left for each serving. If 2/3 of the cake are left initially, and no one else but Bobby eats the cake, how much of the cake will Bobby have eaten by his 5th serving?

Answers

1st serving: 2/3 * 1/2 = 2/6 or 1/3
2nd serving: 1/3 * 1/2 = 1/6
3rd serving: 1/6 * 1/2 = 1/12
4th serving: 1/12 * 1/2 = 1/24
5th serving: 1/24 * 1/2 = 1/48

1/3 + 1/6 + 1/12 + 1/24 + 1/48 
1/3 * 16/16 = 16/48
1/6 * 8/8 = 8/48
1/12 * 4/4 = 4/48
1/24 * 2/2 = 2/48
1/48 * 1/1 = 1/48

16/48 + 8/48 + 4/48 + 2/48 + 1/48 = 31/48

Bobby ate 31/48 of the cake in total.