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  2. Galvanic cell - Wikipedia

    en.wikipedia.org/wiki/Galvanic_cell

    The cathode is the electrode where reduction (gain of electrons) takes place (metal B electrode); in a galvanic cell, it is the positive electrode, as ions get reduced by taking up electrons from the electrode and plate out (while in electrolysis, the cathode is the negative terminal and attracts positive ions from the solution).

  3. Cathode - Wikipedia

    en.wikipedia.org/wiki/Cathode

    For example, reversing the current direction in a Daniell galvanic cell converts it into an electrolytic cell [1] where the copper electrode is the positive terminal and also the anode. In a diode, the cathode is the negative terminal at the pointed end of the arrow symbol, where current flows out of the device.

  4. Anode - Wikipedia

    en.wikipedia.org/wiki/Anode

    Positive and negative electrode vs. anode and cathode for a secondary battery Battery manufacturers may regard the negative electrode as the anode, [ 12 ] particularly in their technical literature. Though from an electrochemical viewpoint incorrect, it does resolve the problem of which electrode is the anode in a secondary (or rechargeable) cell.

  5. Primary battery - Wikipedia

    en.wikipedia.org/wiki/Primary_battery

    The battery terminal that develops a positive voltage polarity (the carbon electrode in a dry cell) is called the cathode and the electrode with a negative polarity (zinc in a dry cell) is called the anode. [9] This is the reverse of the terminology used in an electrolytic cell or thermionic vacuum tube. The reason is that the terms anode and ...

  6. Cathodic protection - Wikipedia

    en.wikipedia.org/wiki/Cathodic_protection

    In order for galvanic cathodic protection to work, the anode must possess a lower (that is, more negative) electrode potential than that of the cathode (the target structure to be protected). The table below shows a simplified galvanic series which is used to select the anode metal. [ 13 ]

  7. Electrochemical cell - Wikipedia

    en.wikipedia.org/wiki/Electrochemical_cell

    Galvanic cells consists of two half-cells. Each half-cell consists of an electrode and an electrolyte (both half-cells may use the same or different electrolytes). [citation needed] The chemical reactions in the cell involve the electrolyte, electrodes, and/or an external substance (fuel cells may use hydrogen gas as a reactant).

  8. Electrode - Wikipedia

    en.wikipedia.org/wiki/Electrode

    The anode is the electrode through which the conventional current enters from the electrical circuit of an electrochemical cell (battery) into the non-metallic cell. The electrons then flow to the other side of the battery. Benjamin Franklin surmised that the electrical flow moved from positive to negative. [4]

  9. Silver oxide battery - Wikipedia

    en.wikipedia.org/wiki/Silver_oxide_battery

    A silver oxide battery uses silver(I) oxide as the positive electrode , zinc as the negative electrode , plus an alkaline electrolyte, usually sodium hydroxide (NaOH) or potassium hydroxide (KOH). The silver is reduced at the cathode from Ag(I) to Ag, and the zinc is oxidized from Zn to Zn(II). The half-cell reaction at the positive plate: