![]() The most convenient way to create a Quantity is to multiply or divide a value by one of the built-in units. Also, explore tools to convert gauss or tesla to other magnetic flux density units or learn more about magnetic flux density conversions. Most users of the astropy.units package will work with Quantity objects: the combination of a value and a unit. The tesla (symbol: T) is the unit of magnetic flux density (also called magnetic B-field strength) in the International System of Units (SI). One tesla (T) corresponds to 10 4 gauss, and one ampere (A) per metre corresponds to 4 × 10 3 oersted. ![]() The gauss Gs, G to tesla T conversion table and conversion steps are also listed. The gauss is the unit of magnetic flux density B in the system of Gaussian units and is equal to Mx /cm 2 or g / Bi /s 2, while the oersted is the unit of H -field. 1 gauss/oersted 105 newton 79.58 ampere/m 104 tesla 107 joule 108 weber. If you're looking to compare $\mathbf B$ and $\mathbf H$ field values, you had better have a good idea of exactly what the deal is with your material - and still, you should stick to one system. Instant free online tool for gauss to tesla conversion or vice versa. Equation conversions cgs SI F : H B - E : X : - tM) Pi P2 An r2 P (newton). If you need data on a material's properties that's in another system, convert that to the one you're using first thing. Choose one one EM unit+formula system, and stick to it. More generally, though, if you're looking to convert between teslas and oersteds, my advice is: don't. To go between the two unit systems, we haveġ\ \mathrm$ amperes per meter. The magnetic field that makes sense ($B$) is measured in teslas (SI) or gauss (CGS), and the magnetic field that people spoke about 100 years ago ($H$) is measured in amps per meter (SI, also equivalent to a number of other things) or oersteds (CGS). ![]() They are technically units for incommensurate quantities, but in practice this is often just a technicality. ![]()
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