A true statement.
The even numbers greater than 10 but less than 20 are 12, 14, 16, and 18. To find the sum, we add these numbers: 12 + 14 + 16 + 18 = 60. Therefore, the sum of the even numbers in that range is 60.
The product is 1254. The sum is 79.
14, 16, 18 and 16, 18, 20
The sum is less than the positive number. Example: 16 + -3= 13. As you can see 13 is less than 16 so the sum is less than the positive number.
The product of 8 and a number ( k ) that is greater than 4 and no more than 16 can be expressed as ( 8k ), where ( 4 < k \leq 16 ). This means ( k ) can take any value within that range, resulting in the products ranging from ( 8 \times 4 = 32 ) to ( 8 \times 16 = 128 ). Therefore, the product ( 8k ) will be greater than 32 and no more than 128.
No because a abundant # is a number where the sum of its proper factors is greater than itself. 16 is not an abundant number because the sum of its proper factors is (15) less than itself.
The even numbers greater than 10 but less than 20 are 12, 14, 16, and 18. To find the sum, we add these numbers: 12 + 14 + 16 + 18 = 60. Therefore, the sum of the even numbers in that range is 60.
The sum is: 12+14+15+16+18 = 75
The product is 1254. The sum is 79.
14, 16, 18 and 16, 18, 20
Type your answer here... 4525
The sum is less than the positive number. Example: 16 + -3= 13. As you can see 13 is less than 16 so the sum is less than the positive number.
The product of 8 and a number ( k ) that is greater than 4 and no more than 16 can be expressed as ( 8k ), where ( 4 < k \leq 16 ). This means ( k ) can take any value within that range, resulting in the products ranging from ( 8 \times 4 = 32 ) to ( 8 \times 16 = 128 ). Therefore, the product ( 8k ) will be greater than 32 and no more than 128.
The two numbers that have a product of 64 and a sum of 16 are 8 and 8. Since both numbers are the same, their product is (8 \times 8 = 64) and their sum is (8 + 8 = 16).
A single number cannot have a sum or a product - a sum or product is used to compare two or more numbers.
The product of four and four is 16, and the sum of four and four is 8. Dividing the product by the sum, we have 16 divided by 8, which equals 2. Therefore, the quotient is 2.
16 is greater than 1.6: 16 - 1.6 = 14.4