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gtnhenbr [62]
3 years ago
12

You roll a die and flip three coins. find the number of possible outcomes.

Mathematics
2 answers:
kirill115 [55]3 years ago
8 0

Answer:

Probability of possible outcomes =48.

Step-by-step explanation:

Given  : you roll a die and flip three coins.

To find : find the number of possible outcomes.

Solution : We have given that

We roll a die and flip three coins .

Probability of a rolling die = 1,2,3,4,5,6 = 6

Probability of flip a coin = Head , tail = 2

Probability of flip three coin = 8 { HHT} {HTH}{ HTT}{ TTH}{THT}{HHH}{TTT}{THH}.

Then

Probability of possible outcomes =6 * 8 = 48.

Therefore, Probability of possible outcomes = 48.

STatiana [176]3 years ago
6 0
1, 1head
2,1h 3,1h 4,1h 5,1h 6,1h
So for each number for a side of a die is 12 cuz head PLUS tail
there's 6 numbers in a Standard die.
So 12x6=72 SO 72 Outcomes!! ;)
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Find MP………………………………….
devlian [24]

Answer:

MP = 29

Step-by-step explanation:

MP = 17 + 3y

5y + 9 = 17 + 3y

      -9    -9

5y = 8 + 3y

-3y        -3y

2y = 8

2y / 2 = 8 / 2

y = 4

MP = 17 + 3 (4)

MP = 29

5 0
1 year ago
I just need no. a please help me to prove this. ​
OleMash [197]

Answer:  see proof below

<u>Step-by-step explanation:</u>

Given: A + B + C = π    and         cos A = cos B · cos C

scratchwork:

  A + B + C = π

               A = π - (B + C)

         cos A = cos [π - (B + C)]                              Apply cos

                    = - cos (B + C)                                    Simplify

                    = -(cos B · cos C - sin B · sin C)          Sum Identity

                    = sin B · sin C - cos B · cos C               Simplify

cos B · cos C = sin B · sin C - cos B · cos C               Substitution

2cos B · cos C = sin B · sin C                                        Addition

                     2=\dfrac{\sin B\cdot \sin C}{\cos B \cdot \cos C}                                     Division

                     2 = tan B · tan C

\text{Use the Sum Identity:}\quad \tan(B+C)=\dfrac{\tan B+\tan C}{1-\tan B\cdot \tan C}

<u>Proof LHS → RHS</u>

Given:                              A + B + C = π

Subtraction:                     A = π - (B + C)

Apply tan:                  tan A = tan(π - (B + C))

Simplify:                               = - tan (B + C)

\text{Sum Identity:}\qquad \qquad \qquad =-\bigg(\dfrac{\tan B+\tan C}{1-\tan B\cdot \tan C}\bigg)

Substitution:                        = -(tan B + tan C)/(1 - 2)

Simplify:                               = -(tan B + tan C)/-1

                                            = tan B + tan C

LHS = RHS:   tan B + tan C = tan B + tan C  \checkmark

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kotykmax [81]

Answer:

Your original answer is corrrect

Step-by-step explanation:

At X= -1, Y decreases and then it rises back to -1 and continues to increase

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hjlf
The answer is 8.35. Have a nice day hope this helped!
3 0
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