App Profile: Solenoid Magnetic Field Calc

Android / Games / Puzzles
Solenoid Magnetic Field Calc
Installs:
Rating:
0.00
Total Reviews:
0
Top Countries:
US, DE, AU
< $5k
/mo
< 5k
/mo
Reviews: What People Think About Solenoid Magnetic Field Calc
About Solenoid Magnetic Field Calc
Solenoid Magnetic Field Calculator is a physics/math calculator designed to find the magnetic field inside a long solenoid, current flow, solenoid length, or number of turns quickly and easily.
Features:
- Instant calculations
- Results can be copied to other apps
- Formulas are included as references
- Supports up to 16 decimal places
- Supports various units for each input
A solenoid is a tightly wound helical coil of wire whose diameter is small compared to its length. The magnetic field generated in the center, or core, of a current-carrying solenoid is essentially uniform and is directed along the axis of the solenoid.
A solenoid is a long coil of wire wrapped in many turns. When a current passes through it, it creates a nearly uniform magnetic field inside. Solenoids can convert electric current to mechanical action, making them very commonly used as switches. The magnetic field within a solenoid depends on the current and the density of turns.
Magnetic field inside a long solenoid equation:
B = µ₀ * N * I / L
Where:
B - Magnetic field
N - Number of turns in the solenoid
I - Electric current
L - Length of the solenoid
µ₀ - 1.25664 * 10^-6 T*m/A is the vacuum permeability
Thank you for your support. Please visit nitrio.com for more apps for your iOS devices.
Features:
- Instant calculations
- Results can be copied to other apps
- Formulas are included as references
- Supports up to 16 decimal places
- Supports various units for each input
A solenoid is a tightly wound helical coil of wire whose diameter is small compared to its length. The magnetic field generated in the center, or core, of a current-carrying solenoid is essentially uniform and is directed along the axis of the solenoid.
A solenoid is a long coil of wire wrapped in many turns. When a current passes through it, it creates a nearly uniform magnetic field inside. Solenoids can convert electric current to mechanical action, making them very commonly used as switches. The magnetic field within a solenoid depends on the current and the density of turns.
Magnetic field inside a long solenoid equation:
B = µ₀ * N * I / L
Where:
B - Magnetic field
N - Number of turns in the solenoid
I - Electric current
L - Length of the solenoid
µ₀ - 1.25664 * 10^-6 T*m/A is the vacuum permeability
Thank you for your support. Please visit nitrio.com for more apps for your iOS devices.
File size: 9856000
Launched countries: USAUCACNFRDEGBITJPKRRUDZAOARATAZBBBYBEBMBRBGCLCOCRHRCZDKDOECEGSVFIGHGRGTHKHUINIDIEILKZKEKWLBLTLUMOMGMYMXNLNZNGNOOMPKPAPEPHPLPTQAROSASGSKSIZAESLKSECHTWTHTNTRUAAEUYUZVEVNBOKHEELVNIPYBHCYMTMZYE
Minimum OS version: 12.0
Release Date: 1534635783000
Published by Nitrio
Website url: http://www.nitrio.com
Publisher country: