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lbvjy [14]
4 years ago
14

BEST ANSWER GETS TO BE BRAINLYEST!!!!At a pizza parlor, a customer has a choice of pizza toppings and sizes. The topping choices

are ham, pepperoni, and black olive. The size choices are medium and large. Find the probabilty of randomly selecting a large pepperoni pizza.
a. 1/4B. 1/2C. 1/3D. 1/6
Mathematics
1 answer:
mr Goodwill [35]4 years ago
8 0

There are 3 toppings, the probability of picking pepperoni is 1/3.

There are 2 sizes, the probability of choosing a large would be 1/2.

The probability of picking both would be 1/3 x 1/2 = 1/6

The answer would be D. 1/6

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A large university accepts ​60% of the students who apply. Of the students the university​ accepts, 50​% actually enroll. If 10,
prisoha [69]

we need to find 1% of 10000 first

so we divide 10000:100= 100 (that's 1%)

to find the 60% which will be accepted we multiply 100 × 60 = 6000 students accepted

of those 6000 we need to find 50% which is ½ so we basically just divide by 2, aka 6000 : 2 = 3000 people which will be enrolled

3 0
3 years ago
Find the midpoint of the segment between the points (17,1) and (−2,8)
sergeinik [125]

Answer:

C. (15/2,9/2)

Step-by-step explanation:

To find the midpoint of two points

midpoint = (x1+x2)/2 , (y1+y2)/2

               = (17+-2)/2, (1+8)/2

               = 15/2, 9/2

5 0
3 years ago
Read 2 more answers
HI I NEED HELP WITH THIS QUESTION ASAP!!!!!! ITS URGENT PLEASE HELP
natima [27]

a) The sinusoidal function is y = 7·sin(π/15(t - 2.5)) + 9

b) The height of the shorts at t =  10 minute is approximately 6 meters

The above answers were arrived at as follows

a) The general form of a sinusoidal equation is presented as follows;

y = A·sin(B(t - h)) + k

Where;

A = The amplitude of the graph of the function

The period, T = 2·π/B

h = The horizontal shift

k = The vertical shift

The maximum height of the blade = 16 meters

The minimum height of the blade  = 2 meters

The time the blade moves from maximum height to minimum height = 25 s - 10 s = 15 s

Therefore, the time it takes the blade to move from maximum height to minimum height, the period, T= 2 × 15 s = 30 s

Therefore;

B = 2·π/30 = π/15

B = π/15

When B·(t - h) = π/2, t = 10

Therefore;

(π/15)·(10 - h) = π/2

10 - h = 15/2

h = 10 - 15/2 = 2.5

The horizontal shift, h = 2.5

The amplitude, A = (Max - Min)/2

∴ A = (16 - 2)/2 = 7

A = 7

The vertical shift, k = Min - (-Amplitude)

∴ k = 2 - (-7) = 9

The vertical shift, k = 9 Up

Therefore, the equation of the sinusoidal equation that describes the height of shorts in terms of time is given by plugging in the values of the variables, <em>A</em>, <em>B</em>, <em>h</em>, and <em>k</em> to  get the following equation;

y = 7·sin(π/15·(t - 2.5)) + 9

b) The height of the shorts at exactly, t = 10 minutes = 600 seconds, is given as follows;

y = 7·sin(π/15·(t - 2.5)) + 9

10 minutes =  600 seconds

When t = 10 minutes = 600 seconds

∴ y = 7·sin(π/15(600 - 2.5)) + 9 = 5.5 ≈ 6

The height of the shorts at exactly t = 10 minutes ≈ 6 meters.

Get more information on  sinusoidal functions here;

brainly.com/question/16820464

5 0
3 years ago
How do I solve an equation with different variables on both sides? here is an example.
Goryan [66]

Answer:

Step-by-step explanation:

9x - 2c = k

    9x = k + 2c

     x  = (k + 2c)/9

8 0
3 years ago
What is the value of x in the equation -6x= 5x+22? Mark this and return Save and Exit Submit​
GREYUIT [131]

Answer:

x = -2

Hope this helps :)

6 0
3 years ago
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