Answer:
16 which is twice as never mind let me say what you said,
Step-by-step explanation: A fair six-sided die is rolled twice. What is the theoretical probability that the first number that comes up is greater than or equal to the second number?
A.
1
6
Answer:
1/6
Step-by-step explanation:
1. this is because a normal dice is 1/6
And can you show me how you got your answer?
it's 3:1 because if liz has one ken doll she three times as many as that.
95.
As you see, the angle is a bit closer to 120. A right angle would be a perfect square, which is 90 degrees. So since it is so closer to 90 than the other answers, the answer is 95.
The bin containing 382 red, yellow, blue and green balls have a total of 32 green balls.
Let x represent the number of red balls, y represent the number of yellow balls and z represent the number of green balls.
Since ther is a total of 382 balls, hence:
x + y + z = 382 (1)
There is three times as many red balls as yellow balls:
y = 3x
3x - y = 0 (2)
52 more blue balls than yellow balls, hence:
z = y + 52
- y - z = -52 (3)
Solving equations 1, 2 and 3 gives x = 62, y = 186, z = 134
Hence there are 62 red balls, 186 yellow balls and 134 blue balls
Green balls = 62 - 30 = 32 balls
Find out more at: brainly.com/question/16763389
To find the number of green balls, you need to create equations using the given information. By solving the equations, the bin is determined to have 150 green balls.
To find the number of green balls, we need to consider the given information and create equations to solve for the number of green balls. Let's define the number of yellow balls as 'y'.
From the first statement, we know that there are 3 times as many red balls as yellow balls. Therefore, the number of red balls is 3y.
From the second statement, we know that there are 52 more blue balls than yellow balls. So, the number of blue balls is y + 52.
From the third statement, we know that there are 30 fewer green balls than red balls. So, the number of green balls is 3y - 30.
We can set up an equation: 3y + y + 52 + 3y - 30 = 382. Solving for 'y', we get y = 60.
Substituting the value of 'y' back into the equation for the number of green balls, we find that the bin has 3(60) - 30 = 150 green balls.
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Answer:
Step-by-step explanation:
Standard form of any polynomial is according to its degree
Degree is highest power of variable
Decreasing order of degree is the standard form of a polynomial.
we have given an expression
we will write it in standard form as:
Now, we will simplify the polynomial by solving like terms we get:
Therefore, the given polynomial is equivalent to
B. 0.946
C. 1.058
D. 1.011