22680 is the answer
When using the distributive property to write an expression, you do not simplify within the parentheses before applying the property. The distributive property involves multiplying the term outside the parentheses by each term inside the parentheses. Once you have distributed the term, you can then simplify the resulting expression by combining like terms. Simplifying before distributing would result in an incorrect application of the distributive property.
2f + 10 in distributive property
(510)+(55)
Oh, dude, it's like you want me to do math or something. Okay, fine. So, 8 times 9 using the distributive property is basically 8 times (5 + 4), which equals 8 times 5 plus 8 times 4, which is 40 plus 32, so the answer is 72. Math, man, it's everywhere.
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When using the distributive property to write an expression, you do not simplify within the parentheses before applying the property. The distributive property involves multiplying the term outside the parentheses by each term inside the parentheses. Once you have distributed the term, you can then simplify the resulting expression by combining like terms. Simplifying before distributing would result in an incorrect application of the distributive property.
OWO
To simplify using the distributive property, you distribute a number or variable outside a set of parentheses to each term inside the parentheses. For example, if you have the expression 3(x + 2), you would distribute the 3 to both x and 2 to get 3x + 6. This helps you combine like terms and simplify the expression further.
To simplify the expression (9(x + 3)) using the Distributive property, multiply 9 by each term inside the parentheses. This gives you (9 \cdot x + 9 \cdot 3), which simplifies to (9x + 27). Thus, the simplified expression is (9x + 27).
To express ( 364 \times 26 ) using the distributive property, you can break down 26 into smaller parts, like 20 and 6. This gives you: [ 364 \times 26 = 364 \times (20 + 6) ] Using the distributive property, this expands to: [ 364 \times 20 + 364 \times 6 ] Now you can calculate each part separately.
2f + 10 in distributive property
None whatsoever. You might find the distributive property useful when trying to calculate 39*74. Of course, if you are familiar with the 39 times table or the 74 times table, the distributive property is a complete waste of time! But somehow I doubt that level of arithmetic competence.
The distributive property states that when you multiply a number by a sum, you can distribute the multiplication to each addend. For example, 4 times 15 can be expressed as 4 times (10 + 5). Using the distributive property, this equals 4 times 10 plus 4 times 5, which is 40 + 20, resulting in 60.
To find the product of 7 and 63 using the distributive property, you can break down 63 into more manageable parts. For example, you can express 63 as 60 + 3. Then, apply the distributive property: (7 \times 63 = 7 \times (60 + 3) = 7 \times 60 + 7 \times 3). This simplifies to (420 + 21), which equals 441.
To multiply 7 by 256 using expanded form and the distributive property, you can break down 256 into its place values: (256 = 200 + 50 + 6). Then, apply the distributive property: (7 \times 256 = 7 \times (200 + 50 + 6) = (7 \times 200) + (7 \times 50) + (7 \times 6)). This results in (1400 + 350 + 42).
2(x - 3) = 2x - 6.
You would distribute the numbers for example 5(4+5) you would go 5*4 + 5*5and you get the answer which is 45.