| AES | acetone-extracted serum; American Electroencephalographic Society; American Encephalographic Society... |
|---|---|
| AOS | American Ophthalmological Society; American Otological Society; anodal opening sound; anterior [o]es... |
| EC | effective concentration; ejection click; electrochemical; electron capture; embryonal carcinoma; eme... |
| ECD | ectrodactyly; electrochemical detector; electron capture detector; endocardial cushion defect; enzym... |
| ECPOG | electrochemical potential gradient |
| SENSOR | Sentinel Event Notification System for Occupational Risk |
|---|---|
| ECD | Electrochemical detection |
| ECS | Electrochemical stimulation |
| ECT | Electrochemical therapy |
| HPLC-EC | High Performance liquid chromatography with electrochemical detection |
| electrochemical sensor | <equipment> A type of biosensor, in which a biological process is harnessed to and measured by an electrical sensor system. (14 Nov 1997) |
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| bioaffinity sensor | A sensor that uses immobilised hormone receptors or antibodies to detecthormones or antigens. (09 Oct 1997) |
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| sensor | A device designed to respond to physical stimuli such as temperature, light, magnetism, or movement, and transmit resulting impulses for interpretation, recording, movement, or operating control. Origin: see sense (05 Mar 2000) |
| electrochemical | Of or pertaining to electrochemistry. Source: Websters Dictionary (01 Mar 1998) |
| electrochemical gradient | A measure of the tendency of an ion to move passively from one point to another, taking into consideration the differences in its concentration and in the electrical potentials between the two points; commonly expressed as the additional voltage needed to achieve equilibrium. (05 Mar 2000) |
| electrochemical potential | <chemistry> Defined as the work done in bringing 1 mole of an ion from a standard state (infinitely separated) to a specified concentration and electrical potential. Measured in joules/mole. More commonly used to measure the electrochemical potential difference between two points (e.g. Either side of a cell membrane), thus sidestepping the rather abstract concept of a standard state. If the molecule is uncharged or the electrical potential difference between two points is zero, the electrochemical potential reduces to the chemical potential difference of the species. at equilibrium, the electrochemical potential difference (by definition) is zero, the situation can then be described by the Nernst equation. (18 Nov 1997) |
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