To find the value of the expression "two less than six times the difference of a number and five" when ( n = 9 ), first calculate the difference: ( n - 5 = 9 - 5 = 4 ). Then, multiply this difference by six: ( 6 \times 4 = 24 ). Finally, subtract two: ( 24 - 2 = 22 ). Thus, the value of the expression is 22.
The difference between three times a number and six can be expressed mathematically as (3x - 6), where (x) represents the number. This expression shows that you first multiply the number by three and then subtract six from the result. Essentially, it's comparing a scaled version of the number to a fixed value of six.
The variable expression for "6 times a number p" is written as ( 6p ). This expression represents the product of the constant 6 and the variable ( p ). It can be used to calculate the value when ( p ) is known.
To find the missing whole number in the expression 852.763_ that results in a number 11,000 times the value of 582.763, we first calculate 11,000 times 582.763, which equals 6,410,393. Then, we set the expression 852.763_ equal to 6,410,393. The missing digit can be found by considering what digit placed in the blank would make 852.763_ equal to 6,410,393. The missing whole number is 0, so the complete expression is 852.7630.
"One less than four times a number" refers to an expression in algebra. If we let the number be represented by a variable, say ( x ), then "four times a number" is ( 4x ). Therefore, "one less than four times a number" can be written as ( 4x - 1 ). This expression indicates that you take four times the value of ( x ) and then subtract one from it.
The difference between 3 times 5 (3 * 5) and 4 is that 3 times 5 equals 15 while 4 is a single numerical value. The expression 3 * 5 represents the multiplication of 3 and 5, resulting in the product of 15. The number 4 is unrelated to this multiplication.
The difference between three times a number and six can be expressed mathematically as (3x - 6), where (x) represents the number. This expression shows that you first multiply the number by three and then subtract six from the result. Essentially, it's comparing a scaled version of the number to a fixed value of six.
The variable expression for "6 times a number p" is written as ( 6p ). This expression represents the product of the constant 6 and the variable ( p ). It can be used to calculate the value when ( p ) is known.
The algebraic expression that represents the sum of 10 and 3 times a number x is 10 + 3x. This expression can be simplified by multiplying 3 with x to get 3x, and then adding 10 to it. In this expression, 3x represents three times the value of x, and 10 represents a constant value added to the product of 3 and x.
The expression for "forty times m" can be written as 40m. In this expression, the number 40 is being multiplied by the variable m. This means that you are taking 40 and multiplying it by whatever value m represents. This expression simplifies to the product of 40 and m.
To find the missing whole number in the expression 852.763_ that results in a number 11,000 times the value of 582.763, we first calculate 11,000 times 582.763, which equals 6,410,393. Then, we set the expression 852.763_ equal to 6,410,393. The missing digit can be found by considering what digit placed in the blank would make 852.763_ equal to 6,410,393. The missing whole number is 0, so the complete expression is 852.7630.
"One less than four times a number" refers to an expression in algebra. If we let the number be represented by a variable, say ( x ), then "four times a number" is ( 4x ). Therefore, "one less than four times a number" can be written as ( 4x - 1 ). This expression indicates that you take four times the value of ( x ) and then subtract one from it.
The difference between 3 times 5 (3 * 5) and 4 is that 3 times 5 equals 15 while 4 is a single numerical value. The expression 3 * 5 represents the multiplication of 3 and 5, resulting in the product of 15. The number 4 is unrelated to this multiplication.
4 - 4/4
write it 5 times
4! * 4/4
In the first expression the value is 91 times as large as it is in the second.
It can be: 2x-25 or 25-2x or maybe the absolute value of (2x-25).