U+1F9F2 Magnet
U+1F9F2 wurde in Version 11.0 in 2018 zu Unicode hinzugefügt. Er gehört zum Block
Dieses Zeichen ist ein Other Symbol und wird allgemein verwendet, das heißt, in keiner speziellen Schrift.
Das Zeichen ist keine Zusammensetzung. Seine Weite in ostasiatischen Texten ist weite. In bidirektionalem Text handelt es als Other Neutral. Bei einem Richtungswechsel wird es nicht gespiegelt. U+1F9F2 bietet eine Zeilenumbruch-Gelegenheit an seiner Position, außer in einigen numerischen Kontexten.
Das CLDR-Projekt bezeichnet dieses Zeichen mit „Magnet“ für die Verwendung in Screenreader-Software. Es weist zusätzliche Namen zu, z.B. für die Suche in Emoji-Auswahlboxen: Anziehung, Anziehungskraft, Hufeisen, magnetisch, Pole, positiv negativ, U-Form.
Dieses Schriftzeichen ist als Emoji ausgezeichnet. Es wird als buntes Emoji auf unterstützenden Plattformen angezeigt. Um es auf schwarz-weiße Ansicht zu reduzieren, kannst du es mit
Die Wikipedia hat die folgende Information zu diesem Codepunkt:
A magnet is a material or object that produces a magnetic field. This magnetic field is invisible but is responsible for the most notable property of a magnet: a force that pulls on other ferromagnetic materials, such as iron, steel, nickel, cobalt, etc. and attracts or repels other magnets.
A permanent magnet is an object made from a material that is magnetized and creates its own persistent magnetic field. An everyday example is a refrigerator magnet used to hold notes on a refrigerator door. Materials that can be magnetized, which are also the ones that are strongly attracted to a magnet, are called ferromagnetic (or ferrimagnetic). These include the elements iron, nickel and cobalt and their alloys, some alloys of rare-earth metals, and some naturally occurring minerals such as lodestone. Although ferromagnetic (and ferrimagnetic) materials are the only ones attracted to a magnet strongly enough to be commonly considered magnetic, all other substances respond weakly to a magnetic field, by one of several other types of magnetism.
Ferromagnetic materials can be divided into magnetically "soft" materials like annealed iron, which can be magnetized but do not tend to stay magnetized, and magnetically "hard" materials, which do. Permanent magnets are made from "hard" ferromagnetic materials such as alnico and ferrite that are subjected to special processing in a strong magnetic field during manufacture to align their internal microcrystalline structure, making them very hard to demagnetize. To demagnetize a saturated magnet, a certain magnetic field must be applied, and this threshold depends on coercivity of the respective material. "Hard" materials have high coercivity, whereas "soft" materials have low coercivity. The overall strength of a magnet is measured by its magnetic moment or, alternatively, the total magnetic flux it produces. The local strength of magnetism in a material is measured by its magnetization.
An electromagnet is made from a coil of wire that acts as a magnet when an electric current passes through it but stops being a magnet when the current stops. Often, the coil is wrapped around a core of "soft" ferromagnetic material such as mild steel, which greatly enhances the magnetic field produced by the coil.
Darstellungen
System | Darstellung |
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Nr. | 129522 |
UTF-8 | F0 9F A7 B2 |
UTF-16 | D8 3E DD F2 |
UTF-32 | 00 01 F9 F2 |
URL-kodiert | %F0%9F%A7%B2 |
HTML hex reference | 🧲 |
Falsches windows-1252-Mojibake | 🧲 |
Kodierung: GB18030 (Hex-Bytes) | 95 30 E3 36 |
Anderswo
Vollständiger Eintrag
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