x*(y+z) = x*y + x*z
This is the distributive property of multiplication over addition.
Write a pair of number which have a sum of 11 and a product of 24?
To write the product of a number cubed and the sum of 57.6 and 3.42, first, calculate the sum: 57.6 + 3.42 = 61.02. Then, if we let the number be represented by ( x ), the expression can be written as ( x^3 \cdot 61.02 ). Thus, the final expression is ( 61.02x^3 ).
A single number cannot have a sum or a product - a sum or product is used to compare two or more numbers.
This is the Distributive Law : a x ( b + c) = ab + ac
sum= answer of an addition question.. so the number of the sum is the answer.
Write a pair of number which have a sum of 11 and a product of 24?
the product of 8 and the sum of 10 and -7
The number 4 is a product of 2 x 2, for example.
To write the product of a number cubed and the sum of 57.6 and 3.42, first, calculate the sum: 57.6 + 3.42 = 61.02. Then, if we let the number be represented by ( x ), the expression can be written as ( x^3 \cdot 61.02 ). Thus, the final expression is ( 61.02x^3 ).
17x+(1+x)
A single number cannot have a sum or a product - a sum or product is used to compare two or more numbers.
The distributive property of multiplication lets you simplify expressions wherein you multiply a number by a sum or difference. According to this property, the product of a sum or difference of a number is equal to the sum or difference of the products.
The sum of four and the product of three and a number xxxx.
This is the Distributive Law : a x ( b + c) = ab + ac
sum= answer of an addition question.. so the number of the sum is the answer.
The product is the answer to a multiplication sum. A single number cannot have a product.
A number can have only one sum: itself. And it cannot have a product without another number!