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Nickel–zinc: 100 to 50% capacity [13] Nickel–iron: 65–80 5,000 Nickel–cadmium: 70–90 500 [25] Nickel–hydrogen: 85 20,000 [31] Nickel–metal hydride: 66 300–800 [13] Low self-discharge nickel–metal hydride battery: 500–1,500 [13] Lithium cobalt oxide: 90 500–1,000 Lithium–titanate: 85–90 6,000–10,000 to 90% capacity ...
A nickel–metal hydride battery (NiMH or Ni–MH) is a type of rechargeable battery. The chemical reaction at the positive electrode is similar to that of the nickel–cadmium cell (NiCd), with both using nickel oxide hydroxide (NiOOH). However, the negative electrodes use a hydrogen-absorbing alloy instead of cadmium.
battery, Nickel–metal hydride (NiMH), low power design as used in consumer batteries [29] 0.4: 1.55: Liquid Nitrogen: 0.349: Water – Enthalpy of Fusion: 0.334: 0.334: battery, Zinc–Bromine flow (ZnBr) [30] 0.27: battery, Nickel–metal hydride (NiMH), High-Power design as used in cars [31] 0.250: 0.493: battery, Nickel–Cadmium (NiCd ...
Rechargeable nickel–cadmium and nickel–metal hydride are far less common than other rechargeable sizes. [63] Mercury batteries of the same dimensions are no longer manufactured. A21: A21 11A E11A MN11 L1016 4LR23 V11GA LR1016 4LR932 (alkaline) 1811A (alkaline) 6135-99-665-9374 [64] 55 (alkaline) 6: 10.3 × 16.0
Nickel–metal hydride battery. Low self-discharge NiMH battery; Nickel–zinc battery; Organic radical battery; Polymer-based battery; Polysulfide–bromide battery;
Nickel-cadmium and Nickel-metal hydride batteries follow a similar rule as the system above; [11] [12] especially cylindrical cells designed to be dimensionally interchangeable with primary batteries use the same designation as the primary batteries, the codes for electrochemical systems as below.
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