Thin Lens Equation Calc |
価格 | 500円 | ダウンロード |
||
---|---|---|---|---|
ジャンル | ユーティリティ | |||
サイズ | 8.1MB | |||
開発者 | Nitrio | |||
順位 |
| |||
リリース日 | 2018-08-07 07:31:48 | 評価 | 評価が取得できませんでした。 | |
互換性 | iOS 12.0以降が必要です。 iPhone、iPad および iPod touch 対応。 |
Thin Lens Equation Calculator is a physics/math tool designed to quickly and easily find object distance, image distance, focal length, and magnification.
Features:
- Instant calculations
- Results are copyable to other apps
- Formulas are included as references
- Supports up to 16 decimal places
- Supports various units for each input
In optics, a thin lens is a lens with a thickness (distance along the optical axis between the two surfaces of the lens) that is negligible compared to the radii of curvature of the lens surfaces. Lenses whose thickness is not negligible are sometimes called thick lenses.
The thin lens approximation ignores optical effects due to the thickness of lenses and simplifies ray tracing calculations. It is often combined with the paraxial approximation in techniques such as ray transfer matrix analysis.
The position, orientation, and size of an image formed by a lens are determined by two things: the focal length of the lens and the position of the original object.
Thin Lens Equation:
1/u + 1/v = 1/f
M = |v|/u
Where:
u = Distance between the object and the center of the lens
v = Distance between the image and the center of the lens
f = Focal length
M = Magnification
Thanks for your support, and please visit nitrio.com for more apps for your iOS devices.
更新履歴
- Updated for the newest devices.
- Minor bugs fixed.
Features:
- Instant calculations
- Results are copyable to other apps
- Formulas are included as references
- Supports up to 16 decimal places
- Supports various units for each input
In optics, a thin lens is a lens with a thickness (distance along the optical axis between the two surfaces of the lens) that is negligible compared to the radii of curvature of the lens surfaces. Lenses whose thickness is not negligible are sometimes called thick lenses.
The thin lens approximation ignores optical effects due to the thickness of lenses and simplifies ray tracing calculations. It is often combined with the paraxial approximation in techniques such as ray transfer matrix analysis.
The position, orientation, and size of an image formed by a lens are determined by two things: the focal length of the lens and the position of the original object.
Thin Lens Equation:
1/u + 1/v = 1/f
M = |v|/u
Where:
u = Distance between the object and the center of the lens
v = Distance between the image and the center of the lens
f = Focal length
M = Magnification
Thanks for your support, and please visit nitrio.com for more apps for your iOS devices.
更新履歴
- Updated for the newest devices.
- Minor bugs fixed.
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