The molecular structure is the same. However, the crystalline structure is different.
Both diamond and coal are formed from the mineral carbon, each with a different molecular structure.
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Natural gas is primarily composed of methane (CH4), which consists of a single carbon atom bonded to four hydrogen atoms. Its molecular structure is a tetrahedron, with the carbon atom at the center and the hydrogen atoms pointing outward at the corners.
the basic structure of the immunoglobulin gene natural immunoglobulin molecule containing four heterologous polypeptide chain, in which the molecular weight known as the heavy chain and lower molecular weight light chain. Two H chains and two L-chain amino acids in the same natural Ig molecules are composed of exactly the same.
Graphite and diamond are different because of their molecular structures. Graphite has layers of carbon atoms arranged in sheets, allowing it to be soft and slippery. Diamond, on the other hand, has a rigid, three-dimensional structure of carbon atoms, making it the hardest natural substance.
In its natural state, sulfur exists as S8, which means it is composed of an octet of sulfur atoms bonded together to form a stable ring structure. This molecular formula reflects how sulfur typically exists in nature before it undergoes reactions to form other compounds.
Molecular distortion refers to a change in the shape or structure of a molecule from its natural state. This distortion can occur due to external factors such as temperature, pressure, or chemical interactions, leading to a deviation from the molecule's usual symmetry or configuration. The distortion can affect the molecule's properties and behavior, influencing its reactivity and stability.
The structure within the cochlea containing hair cells that vibrate at different natural frequencies is the basilar membrane. This structure is vital for detecting different pitches of sound as vibrations of different frequencies cause specific hair cells to be stimulated, sending signals to the brain for processing.
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The absorption spectrum shows the wavelengths of light that are absorbed by a substance. Each substance has a unique absorption spectrum due to its molecular structure and composition. The absorption spectrum is determined by measuring the amount of light absorbed at different wavelengths.
Different forms of carbon, such as diamond, graphite, and fullerenes, have distinct properties because of variations in their molecular structures. For instance, diamond has a tetrahedral lattice structure that makes it the hardest natural substance, while graphite has layers of hexagonally arranged carbon atoms that allow for easy cleavage and conductivity. Fullerenes have a spherical or tubular structure, giving them unique properties such as high strength and potential for nanotechnology applications.
due to hydrogen bonding no of molecular rearrangement in the structure is more than viscoce in viscose hydrogen bonds break up is more in terms of molecular arrangement so wet strength of cotton is higher than viscose fibre rajarahul28@gmail.com