1 x 168, 2 x 84, 3 x 56, 4 x 42, 6 x 28, 7 x 24, 8 x 21, 12 x 14 = 168
2, 3 and 7: 2 x 2 x 2 x 3 x 7 = 168
Let's denote the two numbers as x and y. From the given conditions, we have the following system of equations: x + y = 9 xy = 168 By solving the first equation for y (y = 9 - x) and substituting it into the second equation, we get: x(9 - x) = 168 9x - x^2 = 168 x^2 - 9x + 168 = 0 Factoring the quadratic equation gives us (x - 8)(x - 21) = 0. Therefore, the two numbers are 8 and 21.
504/3 = 168 so the three numbers are 167, 168 and 169.504/3 = 168 so the three numbers are 167, 168 and 169.504/3 = 168 so the three numbers are 167, 168 and 169.504/3 = 168 so the three numbers are 167, 168 and 169.
To multiply two digit decimal numbers, multiply the numbers as you would without the decimals. To put the decimal in the answer, count the number of decimal places in the two numbers and put the decimal in the answer that many places to the left. For example: 5.12 x 6.35 = 32.5120. If the numbers were 51.2 x 63.5, the answer would be 3251.20.
12 x 14 = 168
6568
109
The two numbers you are looking for are -21 and -8. When added together, they yield -29 (-21 + -8 = -29), and when multiplied, they give 168 (-21 * -8 = 168).
7 x 4 x 6=168
84x2=168 -1X59=-59
155
They are in exponents: 23*3*7 = 168
The two numbers you are looking for are 12 and -14. When you multiply them, (12 \times -14 = -168), and when you add them, (12 + (-14) = -2). However, to satisfy the condition of adding to 2, the correct pairs are 14 and -12, as (14 + (-12) = 2).
They are: 2*4*3*7 = 168
-190
1, 2 and 84
168