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Monomers

100 Sentences | 10 Meanings

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Glucose is a monomer that can combine with other monomers to form complex carbohydrates.
Carbohydrates are made up of simple monomers like glucose and fructose.
Polypropylene is made from the polymerization of propylene monomers.
Monomers such as propylene can be used to make polypropylene plastics.
The molecular weight of a polymer is determined by the number of monomers in the chain.
The monomers in a DNA strand are held together by phosphodiester bonds.
The monomers in a plastic can be recycled and used again.
Nucleotides are monomers that can bond to form DNA and RNA.
Monomers are important for the synthesis of many important compounds in the body.
The structure of a polymer is determined by the arrangement of its monomers.
Proteins are made up of monomers called amino acids, which are joined together by peptide bonds.
Carbohydrates are composed of monomers such as glucose, fructose, and galactose.
The properties of a polymer depend on the structure and arrangement of its monomers.
The monomers in this particular polymer chain are derived from petroleum.
The monomers in natural rubber are isoprene units, which combine to form long chains.
The monomers in this plastic can be recycled and reused.
Glycogen is a polymer made up of many monomers of glucose.
DNA is made up of monomers called nucleotides.
The process of adding monomers to a growing polymer chain is called polymerization.
Monosaccharides are monomers that make up complex carbohydrates.
These monomers can combine to form a polymer chain.
The monomers that make up DNA are called nucleotides.
Glucose and fructose are monomers that can combine to form the disaccharide sucrose.
Monomers can be bonded to other monomers to form a larger polymer.
The monomers of a polymer chain are linked by covalent bonds.
Polymers made from monomers like ethylene and propylene are used in a variety of applications, including packaging materials and automotive parts.
Monomers can be classified as either homopolymers or copolymers.
Monomers like isocyanates are used in the production of polyurethane foam.
Monomers like ethylene oxide are used to produce detergents, solvents, and other industrial chemicals.
Monomers like vinyl chloride can be used to make PVC pipes.
The monomers of RNA are called nucleotides and differ from the nucleotides of DNA.
Monomers like butadiene and styrene are used in the production of synthetic rubber.
Adhesive monomers are used to join dental fillings to teeth.
Monomers like caprolactam are used in the production of nylon.
Acrylic monomers can be polymerized to form materials with varying properties, such as acrylic paints and adhesives.
Nucleotides are monomers that can be bonded together to form DNA.
The building blocks of DNA are four different monomers called nucleotides.
Nucleotides are monomers that can join together to form DNA.
Amino acids are monomers used to create proteins.
Monomers of ethylene glycol and terephthalic acid are used to make polyester fibers.
Monomers such as ethylene and propylene can combine to form polyethylene and polypropylene, respectively.
The monomers in this polymer are connected by covalent bonds.
The chain length of a polymer is determined by the number of monomers in the chain.
Adenine, guanine, cytosine, and thymine are monomers that make up the macromolecule, DNA.
Monomers like vinyl acetate and vinyl chloride can be polymerized to form materials such as vinyl siding and PVC pipes.
Lactose is a disaccharide made up of two monomers, glucose and galactose.
The monomers of a protein can be linked together by peptide bonds.
The monomers in a polymer can be derived from renewable resources, such as plant matter.
The monomers in a copolymer can have different chemical properties.
The arrangement of monomers in a polymer chain can affect its physical properties.
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