To write the quotient of a number and 6 as an expression, you can represent the number as a variable, such as ( x ). The expression would then be written as ( \frac{x}{6} ). This indicates that the number ( x ) is being divided by 6.
6/n +2
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.
9x + 11
The expression for the sum of ten and the quotient of a number ( x ) and 666 can be written as ( 10 + \frac{x}{666} ). This represents adding 10 to the result of dividing ( x ) by 666.
To write the quotient of a number and 6 as an expression, you can represent the number as a variable, such as ( x ). The expression would then be written as ( \frac{x}{6} ). This indicates that the number ( x ) is being divided by 6.
3+ 6/n
6/n +2
An expression that represents the quotient of a number and 7 can be written as "x/7" where x is the number. This expression signifies dividing the number x by 7. In algebraic terms, it represents a fraction where the numerator is the number being divided and the denominator is 7.
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 expression "15 plus the quotient of 60 and w" can be written as 15 + 60/w. To simplify this expression, we need to divide 60 by w first, then add the result to 15. The final simplified expression is 15 + 60/w.
9x + 11
The expression for the sum of ten and the quotient of a number ( x ) and 666 can be written as ( 10 + \frac{x}{666} ). This represents adding 10 to the result of dividing ( x ) by 666.
3x - 3
The algebraic expression for 11 minus the product of 5 and a number can be written as 11 - 5x, where 'x' represents the unknown number.
A variable expression for the product of 6 and 3 can be written as ( 6 \times 3 ) or simply ( 18 ). If you want to introduce a variable, you could represent it as ( 6x ) where ( x ) is equal to 3. Thus, the variable expression can also be written as ( 6 \cdot 3 ) or ( 6x ) with ( x = 3 ).
Fifteen thousand, fifteen hundred, and fifteen dollars can be written numerically as $15,515. This is because fifteen thousand is written as 15,000, fifteen hundred is written as 1,500, and fifteen is written as 15. When you add these numbers together, you get a total of 15,000 + 1,500 + 15 = 15,515.