Inputs
-
Point A: xa
-
Point A: ya
-
Point A: za
-
Point B: xb
-
Point B: yb
-
Point B: zb
Outputs
Neuron type
Best algorithm has been found - locked
Patterns
Pattern |
Input |
Output |
1. |
Point A: xa: |
7 |
Point A: ya: |
4 |
Point A: za: |
3 |
Point B: xb: |
10 |
Point B: yb: |
8 |
Point B: zb: |
3 |
|
|
2. |
Point A: xa: |
-5 |
Point A: ya: |
-8 |
Point A: za: |
9 |
Point B: xb: |
-1 |
Point B: yb: |
-8 |
Point B: zb: |
12 |
|
|
3. |
Point A: xa: |
-20 |
Point A: ya: |
-50 |
Point A: za: |
-20 |
Point B: xb: |
-20 |
Point B: yb: |
-10 |
Point B: zb: |
-50 |
|
|
Applicable neurons
-
Minus (x - y)
-
√¯(a² + b² + c²)
-
Pi (π) 3.14
-
Volume Of a Cylinder
-
AND
-
√¯(x² + y²)
-
character (
-
(a, +∞)
-
constant x.xxxxx
-
character c
Algorithm
Test
Code made by AI:
/**
* Minus (x - y):
*
* @param x1 Number X
* @param x2 Number Y
* @return {Array}
*/
function neuron2(x1, x2)
{
math.config({number: 'BigNumber', precision: 64}); return [math.eval(Number(x1) + '-'+Number(x2)).toString()];
}
/**
* 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()];
}
/**
* x to the 2 (x²): x squared
*
* @param x1 Number X
* @return {Array}
*/
function neuron7(x1)
{
var outputs = [];
outputs[0] = x1;
arr = neuron3(outputs[0], outputs[0]);
outputs[1] = arr[0];
return[outputs[1]];
}
/**
* 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()];
}
/**
* 5:
*
* @return {Array}
*/
function neuron505()
{
return [5];
}
/**
* character .:
*
* @return {Array}
*/
function neuron510()
{
return['.'];
}
/**
* Connect - two inputs:
*
* @param x1 Variable A
* @param x2 Variable B
* @return {Array}
*/
function neuron520(x1, x2)
{
return [x1.toString()+x2.toString()];
}
/**
* Half (0.5):
*
* @return {Array}
*/
function neuron522()
{
var outputs = [];
arr = neuron505();
outputs[0] = arr[0];
arr = neuron510();
outputs[1] = arr[0];
arr = neuron520(outputs[1], outputs[0]);
outputs[2] = arr[0];
return[outputs[2]];
}
/**
* x to the a (xª): value of the number x to be the power of a
*
* @param x1 x - The base
* @param x2 a - The exponent
* @return {Array}
*/
function neuron18(x1, x2)
{
return[Math.pow(Number(x1), Number(x2))];
}
/**
* Square root (√¯):
*
* @param x1 Number X
* @return {Array}
*/
function neuron554(x1)
{
var outputs = [];
outputs[0] = x1;
arr = neuron522();
outputs[1] = arr[0];
arr = neuron18(outputs[0], outputs[1]);
outputs[2] = arr[0];
return[outputs[2]];
}
/**
* √¯(a² + b² + c²):
*
* @param x1 a
* @param x2 b
* @param x3 c
* @return {Array}
*/
function neuron709(x1, x2, x3)
{
var outputs = [];
outputs[0] = x1;
outputs[1] = x2;
outputs[2] = x3;
arr = neuron7(outputs[2]);
outputs[3] = arr[0];
arr = neuron7(outputs[1]);
outputs[4] = arr[0];
arr = neuron7(outputs[0]);
outputs[5] = arr[0];
arr = neuron1(outputs[4], outputs[3]);
outputs[6] = arr[0];
arr = neuron1(outputs[5], outputs[6]);
outputs[7] = arr[0];
arr = neuron554(outputs[7]);
outputs[8] = arr[0];
return[outputs[8]];
}
/**
* Distance between two points (3d):
*
* @param x1 Point A: xa
* @param x2 Point A: ya
* @param x3 Point A: za
* @param x4 Point B: xb
* @param x5 Point B: yb
* @param x6 Point B: zb
* @return {Array}
*/
function neuron657(x1, x2, x3, x4, x5, x6)
{
var outputs = [];
outputs[0] = x1;
outputs[1] = x2;
outputs[2] = x3;
outputs[3] = x4;
outputs[4] = x5;
outputs[5] = x6;
arr = neuron2(outputs[3], outputs[0]);
outputs[6] = arr[0];
arr = neuron2(outputs[2], outputs[5]);
outputs[7] = arr[0];
arr = neuron2(outputs[1], outputs[4]);
outputs[8] = arr[0];
arr = neuron709(outputs[6], outputs[8], outputs[7]);
outputs[9] = arr[0];
return[outputs[9]];
}
Code made by AI: