When expressing the fourth roots w k of a complex number generated by w k = r n cos θ + 360 ° k n + i sin θ + 360 ° k n for k = 0 , 1 , 2 , … , n − 1 by how many degrees will consecutive roots differ? In general, given an integer n > 2 , by how many degrees will consecutive n th roots differ?
When expressing the fourth roots w k of a complex number generated by w k = r n cos θ + 360 ° k n + i sin θ + 360 ° k n for k = 0 , 1 , 2 , … , n − 1 by how many degrees will consecutive roots differ? In general, given an integer n > 2 , by how many degrees will consecutive n th roots differ?
Solution Summary: The author calculates the degrees by which the consecutive roots differ for the fourth roots of a complex number generated by w_k.
When expressing the fourth roots
w
k
of a complex number generated by
w
k
=
r
n
cos
θ
+
360
°
k
n
+
i
sin
θ
+
360
°
k
n
for
k
=
0
,
1
,
2
,
…
,
n
−
1
by how many degrees will consecutive roots differ? In general, given an integer
n
>
2
, by how many degrees will consecutive nth roots differ?
Combination of a real number and an imaginary number. They are numbers of the form a + b , where a and b are real numbers and i is an imaginary unit. Complex numbers are an extended idea of one-dimensional number line to two-dimensional complex plane.
=
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