Chance has $7.48. This was calculated by converting the dollars that his mom gave him into cents, adding it to the cents he already had, and converting it back into dollars and cents.
To answer this question, it is important to firstly convert the measure of money to the same unit for easier addition. Chance had 48 cents, which is less than 1 dollar, and his mom gave him 7 dollars.
Since 1 dollar is equal to 100 cents, 7 dollars will be equal to 700 cents.
Now, we can add up the cents to find out how much total money Chance has: 48 cents that Chance originally had plus 700 cents from his mom equals 748 cents,
Converting cents back into dollars (as 1 dollar = 100 cents), Chance has 7 dollars and 48 cents (or $7.48).
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1 ) Each player plays with every other only 1 game.
2 ) If in the i-th round there is a game between A and B, and a game between C and D, and in the i+1-th round there is a game between A and C, then in the i+1-th there must be a game between B and D.
On how many different ways can we make a schedule for all rounds if it's not important which player plays on which table?
Explanation
Consider the example |x| > 5.
On a number line this will mean either x > 5 or x < -5. We're looking for values of x such that they are more than 5 units away from 0.
A value like x = -7 fits the description (since it's 7 units away from 0). While something like x = 1 isn't a solution.
The value of the product of the given factorial 4!•3! is 144.
We have given that the 4! x 3!.
we have to determine the value of the above expression.
n!=1×2×3×4.......×n.
We have to determine the value of 4!
4!=4×3×2×1=24
also the value of the 3!,
3!=3×2×1=6
Therefore the value of
4!•3!= 24×6=144
Therefore the value of the 4!•3! is 144.
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Answer:
144
Step-by-step explanation:
4!•3!= 144
(I used calculator)