Linear Equations and Systems
Install and import#
npm install fintech-algorithmsimport { linearEquationsAndSystems } from "fintech-algorithms/financial-mathematics-statistics-and-data-foundations/mathematical-language-and-quantitative-reasoning/linear-equations-and-systems";Signature#
linearEquationsAndSystems(input)Worked example#
verified This is the worked example published in the article, replayed by the test suite on every run. The output cannot drift.
Input#
{
"values": [1, 2, 3, 4, 5],
"startingCash": 1000,
"inflows": 250,
"outflows": 120,
"slope": 2,
"intercept": 1,
"part": 25,
"whole": 200,
"elapsed": 5,
"old": 4.5,
"new": 4.75,
"base": 16,
"exponent": 0.5,
"a": 2
}Showing 14 of 28 fields.
Call#
linearEquationsAndSystems(input)Returns#
object with 2 fields: x, y
{
"x": 3,
"y": 1
}Diagrams#
Calculation flow#
Linear Equations and Systems — four-part map
flowchart LR
A["Name the input"] --> B["Apply: a×x + b×y = c and d×x + e×y = f"]
B --> C["Check units and boundary"]
C --> D["Explain the output"]
How it works#
This page states the contract — how to call it correctly. The article explains the concept: why it works, and where it breaks.
References#
- NIST/SEMATECH e-Handbook of Statistical Methods — NIST/SEMATECH
- Author-derived and synthetic boundary