UTTO vLocate® Mapper im Vergleich zu Magnetic Field of a Wire Calc Nutzung und Statistiken

UTTO vLocate® Mapper enables field tech map & relocate of buried assets and facilities with simple, fast centimeter accuracy. Patented (№ 16880702) and designed specifically for the Utility Industry with operational simplicity driven by UTTO’s advanced backend Cloud. Leverage your investments and import your existing GIS datasets or map your facilities during construction or locate and mark operations and then vLocate. Use to virtual while lining 811 tickets. Export data sets to your GIS platform of choice. Compatible with ArcGIS Field Maps. (UTTO vLocate® Mapper device required)
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Magnetic Field of a Wire Calculator is a physics/math calculator used to find the Wire Magnetic Field and Current flow in the Wire with Distance quickly and easily. Features: - Instant calculation - Results are copyable to other apps - Formulas are included as references - Supports up to 16 decimal places - Supports various units for each input The magnetic force on a current-carrying wire is perpendicular to both the wire and the magnetic field, with the direction given by the right-hand rule. Magnetic fields arise from charges, similar to electric fields, but are different in that the charges must be moving. A long straight wire carrying a current is the simplest example of a moving charge that generates a magnetic field. The force a charge feels when moving through a magnetic field depends on the right-hand rule. The direction of the magnetic field due to moving charges also depends on the right-hand rule. The direction of the magnetic field is perpendicular to the wire and is in the direction the fingers of the right hand would curl if wrapped around the wire with the thumb in the direction of the current. The strength of the magnetic field depends on the current I in the wire and d, the distance from the wire. Equation: B = μ0 * I / (2 * π * d) where: I - current d - distance from the wire B - strength of the magnetic field produced at distance d μ0 - constant value μ0 = 4 * π * 10^(-7) [T * m / A] permeability of free space Thank you for your support, and feel free to visit nitrio.com for more apps for your iOS devices.
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Magnetic Field of a Wire Calc

Dezember 17, 2024