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  1. A single replacement reaction, sometimes called a single displacement reaction, is a reaction in which one element is substituted for another element in a compound. The starting materials are always pure elements, such as a pure zinc metal or hydrogen gas, plus an aqueous compound.

  2. A single displacement reaction which is also called as single replacement reaction is a kind of oxidation-reduction chemical reaction when an ion or element moves out of a compound, i.e., one element is replaced by the other in a compound.

  3. A single-displacement reaction, also known as single replacement reaction or exchange reaction, is an archaic concept in chemistry. It describes the stoichiometry of some chemical reactions in which one element or ligand is replaced by atom or group.

  4. The single-displacement reaction equation is: A + BC AC + B. This reaction will proceed if A is more reactive than B. The reaction must be balanced when writing an actual reaction [1]. S i n g l e R e p l a c e m e n t R e a c t i o n. What Happens in a Single-replacement Reaction?

  5. Feb 8, 2020 · A substitution or single displacement reaction is characterized by one element being displaced from a compound by another element. A + BC AC + B. A single displacement reaction is a specific type of oxidation-reduction reaction. An element or ion is replaced by another in a compound. Single Displacement Reaction Examples.

  6. A single-replacement reaction is a reaction in which one element replaces a similar element in a compound. The general form of a single-replacement (also called single-displacement) reaction is: A + BC AC + B A + BC AC + B. In this general reaction, element A A is a metal and replaces element B B (also a metal) in the compound.

  7. In a single-displacement reaction, one element displaces another element in a compound. The general equation for a single-displacement reaction is: A + B-C A-C + B. A and B must be either different metals (including H) or different halogens. Chemists have devised an Activity Series.

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