How to resolve the algorithm Arithmetic/Complex step by step in the Arturo programming language

Published on 12 May 2024 09:40 PM

How to resolve the algorithm Arithmetic/Complex step by step in the Arturo programming language

Table of Contents

Problem Statement

A   complex number   is a number which can be written as:

a + b × i

{\displaystyle a+b\times i}

(sometimes shown as:

b + a × i

{\displaystyle b+a\times i}

where

a

{\displaystyle a}

and

b

{\displaystyle b}

are real numbers,   and

i

{\displaystyle i}

is   √ -1

Typically, complex numbers are represented as a pair of real numbers called the "imaginary part" and "real part",   where the imaginary part is the number to be multiplied by

i

{\displaystyle i}

.

By definition, the   complex conjugate   of

a + b i

{\displaystyle a+bi}

is

a − b i

{\displaystyle a-bi}

Some languages have complex number libraries available.   If your language does, show the operations.   If your language does not, also show the definition of this type.

Let's start with the solution:

Step by Step solution about How to resolve the algorithm Arithmetic/Complex step by step in the Arturo programming language

Source code in the arturo programming language

a: to :complex [1 1]
b: to :complex @[pi 1.2]

print ["a:" a]
print ["b:" b]

print ["a + b:" a + b]
print ["a * b:" a * b]
print ["1 / a:" 1 / a]
print ["neg a:" neg a]
print ["conj a:" conj a]


  

You may also check:How to resolve the algorithm Fast Fourier transform step by step in the OCaml programming language
You may also check:How to resolve the algorithm Esthetic numbers step by step in the Factor programming language
You may also check:How to resolve the algorithm Metaprogramming step by step in the Rust programming language
You may also check:How to resolve the algorithm Hofstadter Q sequence step by step in the FreeBASIC programming language
You may also check:How to resolve the algorithm Execute Brain step by step in the Never programming language