Skip to main content

ENG: A module that allows you to solve quadratic and linear equations. | RU: Модуль, позволяющий решать квадратные и линейные уравнения.

Project description

equation_maths_helper

ENG

A module that allows you to solve quadratic and linear equations.

How to use?

Importing

First, import the equation_maths_helper module.

import equation_maths_helper

For convenience, we recommend importing all necessary methods from the module at once.

from equation_maths_helper import linear_one_variable, quadratic

The linear_one_variable method

The linear_one_variable method allows you to solve linear equations with a single variable.

The method accepts the coefficients a and b from the formula ax + b = 0. It also has an additional solution parameter, which is responsible for outputting a step-by-step solution to the console. By default it is set to False. The method returns False if it fails (there are no roots), the root of the equation, or True if the root is any number.

Example of using the method:

from equation_maths_helper import linear_one_variable
equation_answer = linear_one_variable(a=1, b=1, solution=True)
print(equation_answer)

Output the solution to the console:

Root: x = -b / a = x = 1 / 1 = 1.0.
1.0

The quadratic method

The quadratic method allows you to solve quadratic equations.

The method accepts the coefficients a, b, and c from the formula a(x ** 2) + bx + c = 0. It also has an additional parameter solution, which is responsible for displaying the step-by-step solution on the console. By default, it is set to False. The method returns False if it fails (no roots) or a tuple with 1 or 2 roots of the equation.

An example of using the method:

from equation_maths_helper import quadratic
equation_answer = quadratic(a=1, b=1, c=1, solution=True)
print(equation_answer)

Output of the solution to the console:

Discriminant: (b ** 2) - 4 * a * c = (-5 ** 2) - 4 * 1 * 6 = 1.
First root: x1 = (-b - sqrt(d)) / 2 * a = (5 - 1.0) / 2 * 1 = 2.0.
Second root: x2 = (-b + sqrt(d)) / 2 * a = (5 + 1.0) / 2 * 1 = 3.0.
Roots: 2.0, 3.0.
(2.0, 3.0)

RU

Модуль, позволяющий решать квадратные и линейные уравнения.

Как использовать?

Импорт

Первым делом импортируйте модуль equation_maths_helper.

import equation_maths_helper

Для удобства рекомендуем сразу импортировать все необходимые методы из модуля.

from equation_maths_helper import linear_one_variable, quadratic

Метод linear_one_variable

Метод linear_one_variable позволяет решать линейные уравнения с одной переменной.

Метод принимает коэффициенты a и b из формулы ax + b = 0. Также у него есть дополнитеьный параметр solution, который отвечает за вывод пошагового решения на консоль. По умолчанию он равен False. Метод возвращает False в случае неудачи(нет корней), корень уравнения или True, если корень любое число.

Пример использования метода:

from equation_maths_helper import linear_one_variable
equation_answer = linear_one_variable(a=1, b=1, solution=True)
print(equation_answer)

Вывод решения на консоль:

Root:  x = -b / a = x = 1 / 1 = 1.0.
1.0

Метод quadratic

Метод quadratic позваоляет решать квадратные уравнения.

Метод принимает коэффициенты a, b и c из формулы a(x ** 2) + bx + c = 0. У него тоже есть дополнитеьный параметр solution, который отвечает за вывод пошагового решения на консоль. По умолчанию он равен False. Метод возвращает False в случае неудачи(нет корней) или кортеж с 1 или 2 корнями уравнения.

Пример использования метода:

from equation_maths_helper import quadratic
equation_answer = quadratic(a=1, b=1, c=1, solution=True)
print(equation_answer)

Вывод решения на консоль:

Discriminant: (b ** 2) - 4 * a * c = (-5 ** 2) - 4 * 1 * 6 = 1.
First root: x1 = (-b - sqrt(d)) / 2 * a = (5 - 1.0) / 2 * 1 = 2.0.
Second root: x2 = (-b + sqrt(d)) / 2 * a = (5 + 1.0) / 2 * 1 = 3.0.
Roots: 2.0, 3.0.
(2.0, 3.0)

Project details


Download files

Download the file for your platform. If you're not sure which to choose, learn more about installing packages.

Source Distributions

No source distribution files available for this release.See tutorial on generating distribution archives.

Built Distribution

If you're not sure about the file name format, learn more about wheel file names.

equation_maths_helper-1.11-py3-none-any.whl (4.6 kB view details)

Uploaded Python 3

File details

Details for the file equation_maths_helper-1.11-py3-none-any.whl.

File metadata

File hashes

Hashes for equation_maths_helper-1.11-py3-none-any.whl
Algorithm Hash digest
SHA256 94d91f7f376778b49c9769240026045835941bbec2f2ba2c616d71c9ab725546
MD5 37b8bad73e487f3b9139a22079886b50
BLAKE2b-256 f3c2ba2363d22b16179d16ba1bb5ec1ef0670021fc0a4a67964b92306dffabde

See more details on using hashes here.

Supported by

AWS Cloud computing and Security Sponsor Datadog Monitoring Depot Continuous Integration Fastly CDN Google Download Analytics Pingdom Monitoring Sentry Error logging StatusPage Status page