Inputs
Outputs
Neuron type
Best algorithm has been found - locked
Patterns
Pattern |
Input |
Output |
1. |
Price with VAT: |
120 |
VAT: |
20 |
|
|
2. |
Price with VAT: |
300 |
VAT: |
50 |
|
|
3. |
Price with VAT: |
11.9 |
VAT: |
19 |
|
|
Applicable neurons
-
Plus (x + y)
-
Minus (x - y)
-
Multiple (x × y)
-
Division (x ÷ y)
-
100
-
a < b
-
minutes into seconds
-
character =
-
\\d
-
character }
-
is it even?
-
Width of persons
-
sql A+B
Algorithm
Test
Code made by AI:
/**
* 1:
*
* @return {Array}
*/
function neuron501()
{
return [1];
}
/**
* 0:
*
* @return {Array}
*/
function neuron500()
{
return [0];
}
/**
* Connect - two inputs:
*
* @param x1 Variable A
* @param x2 Variable B
* @return {Array}
*/
function neuron520(x1, x2)
{
return [x1.toString()+x2.toString()];
}
/**
* 100:
*
* @return {Array}
*/
function neuron537()
{
var outputs = [];
arr = neuron501();
outputs[0] = arr[0];
arr = neuron500();
outputs[1] = arr[0];
arr = neuron520(outputs[1], outputs[1]);
outputs[2] = arr[0];
arr = neuron520(outputs[0], outputs[2]);
outputs[3] = arr[0];
return[outputs[3]];
}
/**
* Multiple (x × y):
*
* @param x1 Number X
* @param x2 Number Y
* @return {Array}
*/
function neuron3(x1, x2)
{
math.config({number: 'BigNumber', precision: 64}); return [math.eval(Number(x1) + '*'+Number(x2)).toString()];
}
/**
* Plus (x + y): The addition of two whole numbers is the total amount of those quantities combined.
*
* @param x1 first number
* @param x2 second number
* @return {Array}
*/
function neuron1(x1, x2)
{
math.config({number: 'BigNumber', precision: 64}); return [math.eval(Number(x1) + '+'+Number(x2)).toString()];
}
/**
* Division (x ÷ y): X / Y
*
* @param x1 first number
* @param x2 second number
* @return {Array}
*/
function neuron17(x1, x2)
{
math.config({number: 'BigNumber', precision: 64}); return [math.eval(Number(x1) + '/'+Number(x2)).toString()];
}
/**
* Price without VAT:
*
* @param x1 Price with VAT
* @param x2 VAT
* @return {Array}
*/
function neuron654(x1, x2)
{
var outputs = [];
outputs[0] = x1;
outputs[1] = x2;
arr = neuron537();
outputs[2] = arr[0];
arr = neuron3(outputs[2], outputs[0]);
outputs[3] = arr[0];
arr = neuron1(outputs[2], outputs[1]);
outputs[4] = arr[0];
arr = neuron17(outputs[3], outputs[4]);
outputs[5] = arr[0];
return[outputs[5]];
}
Code made by AI: