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  1. Reducing agent - Wikipedia

    In chemistry, a reducing agent (also known as a reductant, reducer, or electron donor) is a chemical species that "donates" an electron to an electron recipient (called the oxidizing agent, …

  2. Oxidizing and Reducing Agents - Chemistry LibreTexts

    Aug 29, 2023 · A reducing agent, or reductant, loses electrons and is oxidized in a chemical reaction. A reducing agent is typically in one of its lower possible oxidation states, and is …

  3. REDUCTANT Definition & Meaning - Merriam-Webster

    The meaning of REDUCTANT is reducing agent.

  4. Reducing Agent (Reductant) Definition and Examples

    Jan 22, 2023 · Other names for a reducing agent are a reducer, reductant, or electron donor. Reducing agents and oxidizing agents always occur together in redox reactions. The word …

  5. REDUCTANT definition in American English | Collins English …

    Vivianite acts as a reductant and reduces hematite to magnetite and masks the goethite–hematite transition during heating.

  6. Reductant - definition of reductant by The Free Dictionary

    reductant (rɪˈdʌktənt) n (Chemistry) chem a reducing agent which as it is oxidized is capable of bringing about the reduction of another substance

  7. What Is a Reductant? Its Role in Chemistry and Engineering

    A reductant, also known as a reducing agent, is a chemical species that causes the reduction of another substance during a chemical reaction. This process is fundamental to chemistry and …

  8. What are Reducing Agents? - BYJU'S

    A substance which loses electrons to other substances in a redox reaction and gets oxidised to a higher valency state is called a reducing agent. A reducing agent is one of the reactants of an …

  9. Reducing agent (reductant) - (Intro to Chemistry) - Vocab, …

    A reducing agent (reductant) is a substance that donates electrons to another substance in a chemical reaction, thereby reducing the oxidation state of the latter.

  10. 10.11: Oxidizing and Reducing Agents - Chemistry LibreTexts

    Because carbon has been oxidized, cyclohexane is the reductant; because oxygen has been reduced, it is the oxidant. All combustion reactions are therefore oxidation–reduction reactions.