1 x 294, 2 x 147, 3 x 98, 6 x 49, 7 x 42, 14 x 21, 21 x 14, 42 x 7, 49 x 6, 98 x 3, 147 x 2, 294 x 1
The numbers that multiply to 294 and add to 7 are 14 and -21. When you multiply 14 and -21, you get 294 (14 * -21 = -294). When you add them together, 14 + (-21) equals 7 (14 - 21 = -7).
The three numbers that multiply together to make 294 are 7, 6, and 7. This can be verified as 7 × 7 × 6 = 294. Another possible combination is 3, 7, and 14, since 3 × 7 × 14 also equals 294.
73.5*2*2=294
To get 294, you can multiply the numbers 2, 3, 7, and 7 together: (2 \times 3 \times 7 \times 7 = 294). Another combination could be 1, 2, 3, and 49, since (1 \times 2 \times 3 \times 49 = 294). Various combinations exist, but these two are valid examples.
301
There are no two real numbers that do, but two complex numbers do: (3.5 + i 3.5 √23) and (3.5 - i 3.5 √23) If you want them to add to 7 and multiply to -294, then the two real numbers -14 and 21 work. Or if you want them to add to -7 and multiply to -294, then the two real numbers 14 and -21 work. To add to -7 and multiply to 294, the following two complex numbers work: (-3.5 + i 3.5 √23) and (-3.5 - i 3.5 √23)
Well, honey, let me tell you. The numbers that multiply to 294 are 2, 3, 7, and 7. Yep, you heard me right. 2 times 3 times 7 times 7 equals 294. So, there you have it, the sassy math answer you never knew you needed.
The prime factorization of 294 is 2 * 3 * 7 * 7. Therefore, the four prime numbers that multiply to make 294 are 2, 3, 7, and 7.
You can multiply any numbers together.
1,294 2,147 3,98 6,49 7,42 14,21
The numbers are: 11+ square root of 415 and 11 - square root of 415
multiply the numerators (top numbers) together then multiply the denominators (lower numbers) together