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  2. Comparison of commercial battery types - Wikipedia

    en.wikipedia.org/wiki/Comparison_of_commercial...

    Under certain conditions, some battery chemistries are at risk of thermal runaway, leading to cell rupture or combustion.As thermal runaway is determined not only by cell chemistry but also cell size, cell design and charge, only the worst-case values are reflected here.

  3. Battery nomenclature - Wikipedia

    en.wikipedia.org/wiki/Battery_nomenclature

    A 1 indicates the basis of negative electrode phase, where I is for lithium ion and L is for lithium metal or alloy. A 2 indicates the basis of positive electrode phase, and could be C, N, M, V or T for cobalt, nickel, manganese, vanadium and titanium respectively. A 3 is for the shape of the cell; either R for cylinder or P for prism.

  4. List of battery sizes - Wikipedia

    en.wikipedia.org/wiki/List_of_battery_sizes

    A lithium primary battery, not interchangeable with zinc types. A rechargeable lithium-ion version is available in the same size and is interchangeable in some uses. According to consumer packaging, replaces (BR) 2 ⁄ 3 A. In Switzerland as of 2008, these batteries accounted for 16% of lithium camera battery sales. [75]

  5. Deep-cycle battery - Wikipedia

    en.wikipedia.org/wiki/Deep-cycle_battery

    A deep-cycle battery powering a traffic signal. A deep-cycle battery is a battery designed to be regularly deeply discharged using most of its capacity. The term is traditionally mainly used for lead–acid batteries in the same form factor as automotive batteries; and contrasted with starter or cranking automotive batteries designed to deliver only a small part of their capacity in a short ...

  6. Lead–acid battery - Wikipedia

    en.wikipedia.org/wiki/Lead–acid_battery

    In the 1970s, the valve-regulated lead-acid (VRLA), or sealed, battery was developed, including modern absorbed glass mat (AGM) types, allowing operation in any position. It was discovered early in 2011 that lead-acid batteries do in fact use some aspects of relativity to function, and to a lesser degree, liquid metal and molten-salt batteries ...

  7. Electric battery - Wikipedia

    en.wikipedia.org/wiki/Electric_battery

    Lithium (lithium–iron disulfide) LiFeS 2: Li FeS 2: 1.8 1.5 1070 Expensive. Used in 'plus' or 'extra' batteries. 337 [47] Lithium (lithium–manganese dioxide) LiMnO 2: Li MnO 2: 3.0 830–1010 Expensive. Used only in high-drain devices or for long shelf-life due to very low rate of self-discharge. 'Lithium' alone usually refers to this type ...