Partial products of 87 times 65 would be 80 x 60 and 80 x 5 and 7 x 60 and 7 x 5. Partial products allow for the multiplication of whole numbers.
5 x 5 = 2570 x 5 = 350
No, multiplication itself is not a partial product; rather, partial products are the individual products obtained when multiplying each digit of one number by each digit of another number, particularly in multi-digit multiplication. For example, when multiplying 23 by 45, the partial products would be 20 times 40, 20 times 5, 3 times 40, and 3 times 5. These partial products are then summed to get the final result of the multiplication. Thus, while partial products are part of the multiplication process, they are not the multiplication itself.
42 * 5 = 210
It is: 5/42 times 100/1 = 12% rounded
Partial products of 87 times 65 would be 80 x 60 and 80 x 5 and 7 x 60 and 7 x 5. Partial products allow for the multiplication of whole numbers.
(40 x 5) + (2 x 5)
5 x 5 = 2570 x 5 = 350
No, multiplication itself is not a partial product; rather, partial products are the individual products obtained when multiplying each digit of one number by each digit of another number, particularly in multi-digit multiplication. For example, when multiplying 23 by 45, the partial products would be 20 times 40, 20 times 5, 3 times 40, and 3 times 5. These partial products are then summed to get the final result of the multiplication. Thus, while partial products are part of the multiplication process, they are not the multiplication itself.
210= 42*5
6 x 80 = 480 6 x 5 = 30
5 x 42 = 210
42 * 5 = 210
40 x 5 = 200 2 x 5 = 10 42 x 5 = 210
5 = 210 /42
It is: 5/42 times 100/1 = 12% rounded
5 x 40 = 2005 x 42 = 210Answer: 42 times with 4 remaining214 - 4 = 210 = 5 x 42