-6x2 + 17x -12.
To get the solution, we set up the formula as follows:
(2x - 3) * (4 - 3x)
Then we multiply each of the components as follows:
(2x * 4) + (2x * -3x) + (-3 * 4) + (-3 * -3x)
Then we simplify as follows:
8x + -6x2 + -12 + 9x
-6x2 + 17x + -12
-6x2 + 17x -12
In the equation 43X +2=5X, X=-1/19.
3 goes into 7 twice. (2x3=6)
The expression "2 2X3" can be interpreted in a couple of ways. If it's meant as a multiplication, it could be understood as ( 2 \times (2 \times 3) ), which equals ( 2 \times 6 = 12 ). Alternatively, if it is read as two separate terms, it could simply be the numbers 2 and 6 (from ( 2 \times 3 )). Please clarify if you meant something different!
Since 6 equals 2 times 3, this expression can be written as:(2x3)x(2x3)x3x3x2x23x3x3x3x2x2x2x2Notice that there are four 3's and four 2's being multiplied. This can be written in exponential notation as:3424, or 34x24In other words, 3 four times multiplied by 2 four times.
For x-2x= 3x-43x+1 x-2x= -x and 3x-43x+1 = -40x+1 so -x= -40x+1 subtract -x from both sides 0= -39x +1 -1 = -39x so 1=39x so x=1/39
If you mean 3x - 2x * 3x * 43x - 2x * 3x * 43x - 5x * 43x - 20x-17x (negative 17x) is your answer
x2 × 2x = 2x3
In the equation 43X +2=5X, X=-1/19.
430x is the total magnification of the microscope, which is the product of the magnification of the eyepiece lens (10x) and the objective lens (43x). This means that objects viewed through this microscope appear 430 times larger than they actually are.
2x3=6+4=10 2.
3 goes into 7 twice. (2x3=6)
The factors of 18 are 2, 3, and 3. 3 can go into 6 times (2x3)
The expression "2 2X3" can be interpreted in a couple of ways. If it's meant as a multiplication, it could be understood as ( 2 \times (2 \times 3) ), which equals ( 2 \times 6 = 12 ). Alternatively, if it is read as two separate terms, it could simply be the numbers 2 and 6 (from ( 2 \times 3 )). Please clarify if you meant something different!
Since 6 equals 2 times 3, this expression can be written as:(2x3)x(2x3)x3x3x2x23x3x3x3x2x2x2x2Notice that there are four 3's and four 2's being multiplied. This can be written in exponential notation as:3424, or 34x24In other words, 3 four times multiplied by 2 four times.
For x-2x= 3x-43x+1 x-2x= -x and 3x-43x+1 = -40x+1 so -x= -40x+1 subtract -x from both sides 0= -39x +1 -1 = -39x so 1=39x so x=1/39
2X3 2 + 2 + 2 = 6 3 + 3 = 6 ^ thats how ^
To determine if the polynomial (21x^2 - 43x + 20) is prime, we need to check if it can be factored into the product of two non-trivial polynomials with real coefficients. By applying the discriminant method, we find that the discriminant (b^2 - 4ac) is positive, indicating that it has real roots and can be factored. Therefore, (21x^2 - 43x + 20) is not a prime polynomial.