gaging battery - определение. Что такое gaging battery
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Что (кто) такое gaging battery - определение

TYPE OF BATTERY
Plastic battery; Polymer-Based Battery; Organic battery
  • Charge/discharge redox reaction of thioether pendant group.
  • Charge and discharge of a Li/radical polymer battery, consisting of a Li anode and nitroxide radical group polymer. This is an example of a semi polymer based battery, where only one electrode is polymeric.
  • conductive polymers]]. In these polymers, the redox group is embedded into the backbone.
  • This graph is a schematic representation of the problematic sloping discharge curve (blue) of a [[conductive polymer]] battery, compared to the voltage plateau of a non-conjugated or organic radical polymer batter discharge curve (green).
  • In a polystyrene chain, the phenyl groups are the pendant groups attached to the polymer's backbone chain.

Artillery battery         
  • Arras]], 1917
  • 64-pounder rifled muzzle-loader (RML) gun on Moncrieff disappearing mount, at Scaur Hill Fort, a fixed battery of coastal artillery in [[Bermuda]]
  • French Napoleonic artillery battery. Photo taken during the 200th anniversary reenactment of the [[battle of Austerlitz]] which took place in 1805.
  • A coast battery in [[Crawfordsburn]], [[County Down]], [[Northern Ireland]]
  • al-Qa'im]], Iraq, 2 December 2018
  • I Battery, [[2nd Battalion 11th Marines]] in [[Iraq]], 2003
  • 80px
  • 80px
  • 80px
  • 80px
  • 6}}
ARTILLERY UNIT SIZE DESIGNATION
Battery (military unit); Artillery batteries; Rocket battery; Artillery Battery; Shore batteries; Bty; Gun battery; Battery (artillery); Battery (military); Missile battery; Gun platform; Battery commander; Btys
In military organizations, an artillery battery is a unit or multiple systems of artillery, mortar systems, rocket artillery, multiple rocket launchers, surface-to-surface missiles, ballistic missiles, cruise missiles, etc., so grouped to facilitate better battlefield communication and command and control, as well as to provide dispersion for its constituent gunnery crews and their systems.
Voltaic Electricity         
  • An analog camcorder [lithium ion] battery
  • Battery after explosion
  • AAAA cell]]'', an ''[[A23 battery]]'', a 9-volt ''[[PP3 battery]]'', and a pair of [[button cell]]s (CR2032 and LR44)
  • Line art drawing of a dry cell: 1. brass cap, 2. plastic seal, 3. expansion space, 4. porous cardboard, 5. zinc can, 6. carbon rod, 7. chemical mixture
  • A voltaic cell for demonstration purposes. In this example the two half-cells are linked by a [[salt bridge]] that permits the transfer of ions.
  • 150px
  • Leak-damaged alkaline battery
ASSEMBLY OF ONE OR MORE ELECTROCHEMICAL CELLS, USED TO PROVIDE DEVICES WITH STORED ELECTRICAL ENERGY
Battery (electronics); Battery power; Wet cell; Battery explosion; Battery Explosion; Electricity cell; Cell (electricity); Electrical batteries; Voltaic electricity; Voltaic Electricity; Cell vs. battery; Battery life; Alkaline dry cell; Wet cell battery; Wet Cell Battery; Wet Cell; Wh/lb; Dry battery; Dry cell battery; Dry Cell; Battery (electrical); Electrical battery; Battery-power; Laptop explosion; Electricity storage device; Aftermarket Battery; Battery durability; Battery Life; Dry-cell; Advances in battery technologies; Battery technology advancements; Battery engineering; Battery Technologies; Battery powered; Battery-powered; Battery (electric); Battery industry; Electrochemical battery; 🔋; Electric batteries; Battery capacity; Battery lifetime; Battery level; Battery levels; Rate of discharge (battery); Overcharging (battery); Battery (electricity); Electronic battery; Wet-cell batteries; Batteries purchased in the United States
Electricity of low potential difference and large current intensity; electricity such as produced by a voltaic battery; current or dynamic electricity as opposed to static electricity.
dry cell         
  • An analog camcorder [lithium ion] battery
  • Battery after explosion
  • AAAA cell]]'', an ''[[A23 battery]]'', a 9-volt ''[[PP3 battery]]'', and a pair of [[button cell]]s (CR2032 and LR44)
  • Line art drawing of a dry cell: 1. brass cap, 2. plastic seal, 3. expansion space, 4. porous cardboard, 5. zinc can, 6. carbon rod, 7. chemical mixture
  • A voltaic cell for demonstration purposes. In this example the two half-cells are linked by a [[salt bridge]] that permits the transfer of ions.
  • 150px
  • Leak-damaged alkaline battery
ASSEMBLY OF ONE OR MORE ELECTROCHEMICAL CELLS, USED TO PROVIDE DEVICES WITH STORED ELECTRICAL ENERGY
Battery (electronics); Battery power; Wet cell; Battery explosion; Battery Explosion; Electricity cell; Cell (electricity); Electrical batteries; Voltaic electricity; Voltaic Electricity; Cell vs. battery; Battery life; Alkaline dry cell; Wet cell battery; Wet Cell Battery; Wet Cell; Wh/lb; Dry battery; Dry cell battery; Dry Cell; Battery (electrical); Electrical battery; Battery-power; Laptop explosion; Electricity storage device; Aftermarket Battery; Battery durability; Battery Life; Dry-cell; Advances in battery technologies; Battery technology advancements; Battery engineering; Battery Technologies; Battery powered; Battery-powered; Battery (electric); Battery industry; Electrochemical battery; 🔋; Electric batteries; Battery capacity; Battery lifetime; Battery level; Battery levels; Rate of discharge (battery); Overcharging (battery); Battery (electricity); Electronic battery; Wet-cell batteries; Batteries purchased in the United States
(also dry battery)
¦ noun an electric cell (or battery) in which the electrolyte is absorbed in a solid to form a paste.

Википедия

Polymer-based battery

A polymer-based battery uses organic materials instead of bulk metals to form a battery. Currently accepted metal-based batteries pose many challenges due to limited resources, negative environmental impact, and the approaching limit of progress. Redox active polymers are attractive options for electrodes in batteries due to their synthetic availability, high-capacity, flexibility, light weight, low cost, and low toxicity. Recent studies have explored how to increase efficiency and reduce challenges to push polymeric active materials further towards practicality in batteries. Many types of polymers are being explored, including conductive, non-conductive, and radical polymers. Batteries with a combination of electrodes (one metal electrode and one polymeric electrode) are easier to test and compare to current metal-based batteries, however batteries with both a polymer cathode and anode are also a current research focus. Polymer-based batteries, including metal/polymer electrode combinations, should be distinguished from metal-polymer batteries, such as a lithium polymer battery, which most often involve a polymeric electrolyte, as opposed to polymeric active materials.

Organic polymers can be processed at relatively low temperatures, lowering costs. They also produce less carbon dioxide.