you can muit by 4s and 8s.
324 = 3 x 108 324 x 4 = 3 x 108 x 4
You can use the product from 4x7 to find the product of 8x7 by doubling the answer to 4x7. The product of 4x7 is 28 and the product of 8x7 is 56 (28 doubled is also 56).
Product is a binary operation so you need two arguments before you can find their product.
Oh, dude, so you've got two numbers already, 8 and 3, and you need to find the third one that, when multiplied with them, gives you 96? That's like a math puzzle from the '90s. The missing number is 4, because 8 times 3 times 4 equals 96. Math can be fun, right?
Multiply the numbers together, e.g. the product of 3 and 4 is 12; 3x4=12
324 = 3 x 108 324 x 4 = 3 x 108 x 4
-3-4-5=-12
The product of 4 and 3 is (4 \times 3 = 12). The sum of 4 and 3 is (4 + 3 = 7). To find how much greater the product is than the sum, we subtract the sum from the product: (12 - 7 = 5). Therefore, the product is 5 greater than the sum.
You can use the product from 4x7 to find the product of 8x7 by doubling the answer to 4x7. The product of 4x7 is 28 and the product of 8x7 is 56 (28 doubled is also 56).
The product of 4 and 3 is 12. You can use a calculator or you could do 4+4+4= or 3+3+3+3= and you will get 12. The properties of multiplication is that if you switch the beginning two numbers around, the product of the two numbers will not be impacted by the change.
To find the product of 3, 4, and 5, you simply multiply the numbers together. Start by multiplying 3 and 4, which equals 12. Then, multiply that result by 5: 12 x 5 equals 60. Therefore, the product of 3, 4, and 5 is 60.
double 4 times 4
product ... as in 12 is the product of 3 x 4
It would seem more sensible to do the multiplication directly.
324 is 3*108
(6)(5)(4)(3) = 360
Product is a binary operation so you need two arguments before you can find their product.