The possible values of z are (a cis b), where a is any number between and including 0 and 2 and b is any of 0, 60, 120, 180, 240 and 300 degrees. The minimum modulus of z - 2, that is |z - 2|, is 0.
1 + i
Yes, the modulus of a number ( x ), denoted as ( |x| ), is equal to the positive square root of ( x^2 ). This is because ( |x| ) is defined as the distance of ( x ) from zero on the number line, which is always non-negative. Therefore, ( |x| = \sqrt{x^2} ) for any real number ( x ).
Two is the minimum number of vectors that will sum to zero.
complex fractions can be multiplied when you have two fractions multiplied and equal a whole number.
The absolute value of the sum of two complex numbers is less than or equal to the sum of their absolute values.
1 + i
Yes, the modulus of a number ( x ), denoted as ( |x| ), is equal to the positive square root of ( x^2 ). This is because ( |x| ) is defined as the distance of ( x ) from zero on the number line, which is always non-negative. Therefore, ( |x| = \sqrt{x^2} ) for any real number ( x ).
Any real number is a complex number with an imaginary part equal to 0
The minimum number of swaps required to sort an array is equal to the number of inversions in the array.
Two is the minimum number of vectors that will sum to zero.
The modulus of the ratio of distance to displacement is always less than or equal to 1, as displacement is the shortest distance between two points. The unit for this ratio is dimensionless, as it is a pure number without units.
The percent sign in Java is the modulus operator. Modulus is used to find the remainder from a division For example if you did int x = 10 % 6; x would be equal to 4. 10 divided by 6 has a remainder of 4. The modulus operator can be used to determine whether a number is divisible by another among other things.
complex fractions can be multiplied when you have two fractions multiplied and equal a whole number.
Three. Equal forces, two.
yes
28n / nwhere n is any Complex number.
Yes they do, complex conjugate only flips the sign of the imaginary part.