The quotient of the sum of a number and three, and four is seven
The product of four and four is 16, and the sum of four and four is 8. Dividing the product by the sum, we have 16 divided by 8, which equals 2. Therefore, the quotient is 2.
A quotient is the result of a division of one number by another. You cannot have a quotient (or a product, or a sum) for only one number.
A quotient is the result of a division sum between two or more numbers. You cannot have a quotient of a single number.
The English expression for the quotient of nine and the sum of a number and one is "nine divided by the sum of a number and one." This can also be written mathematically as ( \frac{9}{x + 1} ), where ( x ) represents the number.
The answer to a division sum starting with "qua" is "quotient." In mathematics, the quotient is the result of dividing one number by another. For example, in the division of 10 by 2, the quotient is 5.
4 over x plus 3
The sum of four and the product of three and a number xxxx.
The product of four and four is 16, and the sum of four and four is 8. Dividing the product by the sum, we have 16 divided by 8, which equals 2. Therefore, the quotient is 2.
A quotient is the answer to a division sum. A single number cannot have a quotient.
A single number cannot have a sum, or a quotient.
A quotient is the result of a division of one number by another. You cannot have a quotient (or a product, or a sum) for only one number.
The quotient is the solution to a division sum. Therefore, a single number cannot provide a quotient.
The quotient is the solution to a division sum. As such, a single number cannot have a quotient.
91. The sum of all scores is 728, and then dividing by 8, the total number of quizzes, the quotient is the answer.
n + 7
A quotient is the result of a division sum between two or more numbers. You cannot have a quotient of a single number.
The English expression for the quotient of nine and the sum of a number and one is "nine divided by the sum of a number and one." This can also be written mathematically as ( \frac{9}{x + 1} ), where ( x ) represents the number.