intensity of current - определение. Что такое intensity of current
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Что (кто) такое intensity of current - определение

Total ions current; Base peak intensity; Total ion current

Amperage         
  • symbol]] for a battery in a [[circuit diagram]].
  • Alternating electric current flows through the solenoid, producing a changing magnetic field. This field causes an electric current to flow in the wire loop by [[electromagnetic induction]].
  • Magnetic field is produced by an electric current in a [[solenoid]].
  • A [[proton conductor]] in a static [[electric field]].
FLOW OF ELECTRIC CHARGE (FOR SPECIFIC QUANTITIES SEE Q29996 OR Q234072)
Amperage; Electrical current; Conventional current; Electric Current; Electrical Current; Electric polarity; Electrical Polarity; Current (electric); Electric currents; Electric conduction; Electrical conduction in gases; Current (electricity); Electron current; AC/DC (electrical); Electrical polarity; Ion flow; Current electricity; Current (electrical); Dynamic electricity; Conduction current; Conventional current flow; AC/DC (electricity); Electric current intensity; DC polarity; Reverse polarity; + pole; Plus pole; Minus pole; − pole; - pole; Electron flow; Positive (electrical polarity); Negative (electrical polarity); Electric current measurement
Current intensity expressed in amperes, as an amperage of ten amperes.
Electrical polarity         
  • symbol]] for a battery in a [[circuit diagram]].
  • Alternating electric current flows through the solenoid, producing a changing magnetic field. This field causes an electric current to flow in the wire loop by [[electromagnetic induction]].
  • Magnetic field is produced by an electric current in a [[solenoid]].
  • A [[proton conductor]] in a static [[electric field]].
FLOW OF ELECTRIC CHARGE (FOR SPECIFIC QUANTITIES SEE Q29996 OR Q234072)
Amperage; Electrical current; Conventional current; Electric Current; Electrical Current; Electric polarity; Electrical Polarity; Current (electric); Electric currents; Electric conduction; Electrical conduction in gases; Current (electricity); Electron current; AC/DC (electrical); Electrical polarity; Ion flow; Current electricity; Current (electrical); Dynamic electricity; Conduction current; Conventional current flow; AC/DC (electricity); Electric current intensity; DC polarity; Reverse polarity; + pole; Plus pole; Minus pole; − pole; - pole; Electron flow; Positive (electrical polarity); Negative (electrical polarity); Electric current measurement
Electrical polarity is a term used throughout industries and fields that involve electricity. There are two types of poles: positive (+) and negative (−).
Electric current         
  • symbol]] for a battery in a [[circuit diagram]].
  • Alternating electric current flows through the solenoid, producing a changing magnetic field. This field causes an electric current to flow in the wire loop by [[electromagnetic induction]].
  • Magnetic field is produced by an electric current in a [[solenoid]].
  • A [[proton conductor]] in a static [[electric field]].
FLOW OF ELECTRIC CHARGE (FOR SPECIFIC QUANTITIES SEE Q29996 OR Q234072)
Amperage; Electrical current; Conventional current; Electric Current; Electrical Current; Electric polarity; Electrical Polarity; Current (electric); Electric currents; Electric conduction; Electrical conduction in gases; Current (electricity); Electron current; AC/DC (electrical); Electrical polarity; Ion flow; Current electricity; Current (electrical); Dynamic electricity; Conduction current; Conventional current flow; AC/DC (electricity); Electric current intensity; DC polarity; Reverse polarity; + pole; Plus pole; Minus pole; − pole; - pole; Electron flow; Positive (electrical polarity); Negative (electrical polarity); Electric current measurement
An electric current is a stream of charged particles, such as electrons or ions, moving through an electrical conductor or space. It is measured as the net rate of flow of electric charge through a surface or into a control volume.

Википедия

Mass chromatogram

A mass chromatogram is a representation of mass spectrometry data as a chromatogram, where the x-axis represents time and the y-axis represents signal intensity. The source data contains mass information; however, it is not graphically represented in a mass chromatogram in favor of visualizing signal intensity versus time. The most common use of this data representation is when mass spectrometry is used in conjunction with some form of chromatography, such as in liquid chromatography–mass spectrometry or gas chromatography–mass spectrometry. In this case, the x-axis represents retention time, analogous to any other chromatogram. The y-axis represents signal intensity or relative signal intensity. There are many different types of metrics that this intensity may represent, depending on what information is extracted from each mass spectrum.