This is a condensation polymerization.
A chemical reaction normally does have a product, and that product in some cases would be a polymer, but it is not true that a chemical reaction is a product or a polymer. It is a specific chemical change.
Using a polymer powder designed for a specific monomer liquid is crucial to ensure optimal compatibility and performance of the resulting product. This tailored approach enhances the chemical bonding and interaction between the polymer and liquid, resulting in improved strength, flexibility, and durability. Additionally, it minimizes issues such as separation or undesired reactions, leading to a more consistent and reliable end product. Overall, this specificity can significantly influence the effectiveness and longevity of the application.
NO!!! You do NOT break monomers. However, monmers have a carbon/carbon double bond. One bond of this double bond breaks to give two 'loose ends'. These loose ends then combine with the loose ends of another mon0mers to form a polymer. Monomer + monomer = polymer. H2C=CH2 + H2C=CH2 = -[-CH2-CH2-CH2-CH2-]-(n) H2C=CHCl + H2C=CHCl = -[-CH2-CHCl-CH2-CHCl-]-(n) These polymers are named 'polyethylene/polychloroethen (polythene / PVC). NB THere are many different polymers. NB The product polymer is normally written is this way, because in polymerisation thousands if not millions of monomer molecules combine. The 'n' stands for any number in the chain .
A chemical substance formed as a result of a chemical reaction is called a product. Products can be either the desired end product of the reaction or byproducts that are formed during the reaction.
Scientists call a substance that forms during a chemical reaction a product. This product is the result of the chemical reaction between the reactants.
A chemical reaction normally does have a product, and that product in some cases would be a polymer, but it is not true that a chemical reaction is a product or a polymer. It is a specific chemical change.
Using a polymer powder designed for a specific monomer liquid is crucial to ensure optimal compatibility and performance of the resulting product. This tailored approach enhances the chemical bonding and interaction between the polymer and liquid, resulting in improved strength, flexibility, and durability. Additionally, it minimizes issues such as separation or undesired reactions, leading to a more consistent and reliable end product. Overall, this specificity can significantly influence the effectiveness and longevity of the application.
NO!!! You do NOT break monomers. However, monmers have a carbon/carbon double bond. One bond of this double bond breaks to give two 'loose ends'. These loose ends then combine with the loose ends of another mon0mers to form a polymer. Monomer + monomer = polymer. H2C=CH2 + H2C=CH2 = -[-CH2-CH2-CH2-CH2-]-(n) H2C=CHCl + H2C=CHCl = -[-CH2-CHCl-CH2-CHCl-]-(n) These polymers are named 'polyethylene/polychloroethen (polythene / PVC). NB THere are many different polymers. NB The product polymer is normally written is this way, because in polymerisation thousands if not millions of monomer molecules combine. The 'n' stands for any number in the chain .
A product, by definition a product is produced by a chemical reaction.
Anew substance that is formed is a product in a chemical reaction
A chemical substance formed as a result of a chemical reaction is called a product. Products can be either the desired end product of the reaction or byproducts that are formed during the reaction.
A new chemical substance is formed during a chemical reaction by rearranging the atoms of the reactants. The products of a chemical reaction have different properties compared to the original reactants.
Anew substance that is formed is a product in a chemical reaction
Scientists call a substance that forms during a chemical reaction a product. This product is the result of the chemical reaction between the reactants.
a substance that is formed in a chemical reaction is called a product=)After a chemical reaction, new chemicals are formed. For an example:-NaOH + HCl = NaCl + HOH(H2O)Chemical substances are formed in chemical reactions.
If a substance is a reactant or product of a chemical reaction then, by definition, it cannot be a catalyst.
If a substance is a reactant or product of a chemical reaction then, by definition, it cannot be a catalyst.