{"id":26800574,"url":"https://github.com/ktsu-dev/physicalquantity","last_synced_at":"2025-03-29T20:17:52.783Z","repository":{"id":242978290,"uuid":"811117987","full_name":"ktsu-dev/PhysicalQuantity","owner":"ktsu-dev","description":null,"archived":false,"fork":false,"pushed_at":"2025-03-25T06:01:25.000Z","size":385,"stargazers_count":0,"open_issues_count":0,"forks_count":0,"subscribers_count":1,"default_branch":"main","last_synced_at":"2025-03-25T07:19:31.493Z","etag":null,"topics":[],"latest_commit_sha":null,"homepage":null,"language":"C#","has_issues":true,"has_wiki":null,"has_pages":null,"mirror_url":null,"source_name":null,"license":"mit","status":null,"scm":"git","pull_requests_enabled":true,"icon_url":"https://github.com/ktsu-dev.png","metadata":{"files":{"readme":"README.md","changelog":"CHANGELOG.md","contributing":null,"funding":null,"license":"LICENSE.md","code_of_conduct":null,"threat_model":null,"audit":null,"citation":null,"codeowners":null,"security":null,"support":null,"governance":null,"roadmap":null,"authors":"AUTHORS.md","dei":null,"publiccode":null,"codemeta":null}},"created_at":"2024-06-06T01:09:49.000Z","updated_at":"2025-03-25T06:01:29.000Z","dependencies_parsed_at":"2024-08-23T12:51:45.647Z","dependency_job_id":"1819ac23-94ab-4458-90fa-fd3f955f0eec","html_url":"https://github.com/ktsu-dev/PhysicalQuantity","commit_stats":null,"previous_names":["ktsu-io/physicalquantity","ktsu-dev/physicalquantity"],"tags_count":20,"template":false,"template_full_name":null,"repository_url":"https://repos.ecosyste.ms/api/v1/hosts/GitHub/repositories/ktsu-dev%2FPhysicalQuantity","tags_url":"https://repos.ecosyste.ms/api/v1/hosts/GitHub/repositories/ktsu-dev%2FPhysicalQuantity/tags","releases_url":"https://repos.ecosyste.ms/api/v1/hosts/GitHub/repositories/ktsu-dev%2FPhysicalQuantity/releases","manifests_url":"https://repos.ecosyste.ms/api/v1/hosts/GitHub/repositories/ktsu-dev%2FPhysicalQuantity/manifests","owner_url":"https://repos.ecosyste.ms/api/v1/hosts/GitHub/owners/ktsu-dev","download_url":"https://codeload.github.com/ktsu-dev/PhysicalQuantity/tar.gz/refs/heads/main","host":{"name":"GitHub","url":"https://github.com","kind":"github","repositories_count":246237434,"owners_count":20745348,"icon_url":"https://github.com/github.png","version":null,"created_at":"2022-05-30T11:31:42.601Z","updated_at":"2022-07-04T15:15:14.044Z","host_url":"https://repos.ecosyste.ms/api/v1/hosts/GitHub","repositories_url":"https://repos.ecosyste.ms/api/v1/hosts/GitHub/repositories","repository_names_url":"https://repos.ecosyste.ms/api/v1/hosts/GitHub/repository_names","owners_url":"https://repos.ecosyste.ms/api/v1/hosts/GitHub/owners"}},"keywords":[],"created_at":"2025-03-29T20:17:52.253Z","updated_at":"2025-03-29T20:17:52.776Z","avatar_url":"https://github.com/ktsu-dev.png","language":"C#","funding_links":[],"categories":[],"sub_categories":[],"readme":"# ktsu.PhysicalQuantity\n\n`PhysicalQuantity` is a .NET library that provides a robust framework for working with physical quantities, supporting a wide range of units and conversions.\n\n## Features\n\n- **Comprehensive Unit Support**: Supports a wide range of physical quantities including length, mass, time, energy, and more.\n- **Accurate Conversions**: Provides accurate unit conversions for each quantity.\n- **Significant Numbers**: Uses the SignificantNumber library to maintain precision in calculations.\n- **Extensibility**: Easily extendable to support custom units and quantities.\n\n## Installation\n\nTo install PhysicalQuantity, run the following command in your .NET project:\n\n```bash\ndotnet add package ktsu.PhysicalQuantity\n```\n\n## Usage\n\n### Basic Example\n\n```csharp\nusing ktsu.PhysicalQuantity.Length;\nusing ktsu.SignificantNumber;\n\nLength lengthInMeters = 100.Meters();\nfloat lengthInKilometers = lengthInMeters.Kilometers\u003cfloat\u003e();\n\nConsole.WriteLine($\"{lengthInMeters} is equal to {lengthInKilometers} kilometers\");\n```\n\n### Supported Quantities\n\n- Acceleration\n- AmountOfSubstance\n- Angle\n- AngularAcceleration\n- AngularVelocity\n- Area\n- Density\n- ElectricCurrent\n- ElectricPotential\n- Energy\n- Force\n- Illuminance\n- Jerk\n- Length\n- LuminousFlux\n- LuminousIntensity\n- Mass\n- Power\n- Pressure\n- Resistance\n- Temperature\n- Time\n- Torque\n- Velocity\n- Volume\n\n### Example Conversion\n\n```csharp\nusing ktsu.PhysicalQuantity.Mass;\nusing ktsu.SignificantNumber;\n\nMass massInKilograms = 70.Kilograms();\nfloat massInPounds = massInKilograms.Pounds\u003cfloat\u003e();\n\nConsole.WriteLine($\"{massInKilograms} is equal to {massInPounds} pounds\");\n```\n\n### Integrating and Deriving Quantities\n\nThe `PhysicalQuantity` library supports operations for integrating and deriving physical quantities, making it easier to work with quantities that result from these operations.\n\n#### Deriving Quantities\n\nTo derive a quantity, you can use the appropriate operators provided by the `IIntegrationOperators` interface. For example, deriving velocity from distance and time:\n\n```csharp\nusing ktsu.PhysicalQuantity.Length;\nusing ktsu.PhysicalQuantity.Time;\nusing ktsu.PhysicalQuantity.Velocity;\nusing ktsu.SignificantNumber;\n\nLength distance = 100.Meters();\nTime time = 10.Seconds();\nVelocity velocity = distance / time;\n\nConsole.WriteLine($\"Velocity: {velocity}\"); // Output: Velocity: 10 m/s\n```\n\n#### Integrating Quantities\n\nTo integrate quantities, you can use the appropriate operators. For example, integrating acceleration over time to get velocity:\n\n```csharp\nusing ktsu.PhysicalQuantity.Acceleration;\nusing ktsu.PhysicalQuantity.Time;\nusing ktsu.PhysicalQuantity.Velocity;\nusing ktsu.SignificantNumber;\n\nAcceleration acceleration = 9.8.MetersPerSecondSquared();\nTime time = 5.Seconds();\nVelocity velocity = acceleration * time;\n\nConsole.WriteLine($\"Velocity: {velocity}\"); // Output: Velocity: 49 m/s\n```\n\n### Example\n\nHere's a more comprehensive example that demonstrates both integration and derivation:\n\n```csharp\nusing ktsu.PhysicalQuantity.Acceleration;\nusing ktsu.PhysicalQuantity.Length;\nusing ktsu.PhysicalQuantity.Time;\nusing ktsu.PhysicalQuantity.Velocity;\nusing ktsu.SignificantNumber;\n\nLength initialDistance = 0.Meters();\nVelocity initialVelocity = 0.MetersPerSecond();\nAcceleration acceleration = 9.8.MetersPerSecondSquared();\nTime time = 10.Seconds();\n\n// Calculate final velocity: v = u + at\nVelocity finalVelocity = initialVelocity + acceleration * time;\n\n// Calculate distance traveled: s = ut + 0.5 * a * t^2\nLength distance = initialVelocity * time + 0.5 * acceleration * time * time;\n\nConsole.WriteLine($\"Final Velocity: {finalVelocity}\"); // Output: Final Velocity: 98 m/s\nConsole.WriteLine($\"Distance Traveled: {distance}\");   // Output: Distance Traveled: 490 m\n```\n\nBy using these integration and derivation methods, you can handle a wide range of physical calculations with ease.\n\n## Contributing\n\nContributions are welcome! Please feel free to submit a pull request or open an issue.\n\n## License\n\nThis project is licensed under the MIT License. See the [LICENSE](LICENSE) file for details.\n\n## Contact\n\nFor questions or feedback, please open an issue on GitHub.\n","project_url":"https://awesome.ecosyste.ms/api/v1/projects/github.com%2Fktsu-dev%2Fphysicalquantity","html_url":"https://awesome.ecosyste.ms/projects/github.com%2Fktsu-dev%2Fphysicalquantity","lists_url":"https://awesome.ecosyste.ms/api/v1/projects/github.com%2Fktsu-dev%2Fphysicalquantity/lists"}