"As the atoms of Crystalline solids have specific shape and same distance,so they have same K.E,intermolecular forces of attraction and geometrical shape due to which Crystalline solids are blessed sharp melting points."
in crystalline solids, the atoms are arranged in an ordered fashion and hence they have sharp melting points. amorphous solids, due to random arrangement of the atoms do not have sharp melting points.
A crystalline solid has a highly ordered and repeating atomic structure, leading to distinct patterns and sharp melting points, while an amorphous solid lacks long-range order and has a more random atomic arrangement, resulting in no distinct melting point and a less defined shape.
Crystalline particles form a regular repeating pattern, also when a crystalline solid is heated it melts at a specific temperature. Amorphous particles are not arranged in a regular pattern, and when it is heated, it may become softerand softer or change into other substances.
The way it breaks
the difference between crystalline solids and amorphous solids are that particles in crystalline solids form a regular repeating pattern but in amorphous solids they are not arranged in a regular shapeCrystals are solids with fixed, regularpatterns
in crystalline solids, the atoms are arranged in an ordered fashion and hence they have sharp melting points. amorphous solids, due to random arrangement of the atoms do not have sharp melting points.
No, amorphous solids do not have sharp melting points like crystalline solids. Instead, amorphous solids soften over a range of temperatures as they transition into a more fluid state, making their melting behavior less well-defined.
Crystalline polymers have a highly ordered molecular structure with repeating patterns, while amorphous polymers have a random molecular arrangement without distinct patterns. Crystalline polymers tend to be more rigid and have higher melting points, while amorphous polymers are more flexible and have lower melting points.
Crystalline solids have a well-ordered arrangement of particles in a repeating pattern, leading to defined geometric shapes and distinct melting points, whereas amorphous solids lack a long-range order in their atomic structure, resulting in a random arrangement of particles and no sharp melting point. Crystalline solids exhibit cleavage and anisotropy, while amorphous solids do not have cleavage planes and display isotropic properties.
Amorphous solids do not have a regular repeating structure at the atomic level, resulting in a lack of long-range order, while crystalline solids have a well-defined, repeating atomic arrangement. Amorphous solids exhibit properties like isotropy and lack a sharp melting point, in contrast to crystalline solids that have distinct melting points and crystal structures.
Amorphous solids do not have a definite melting point or regular repeating units. An amorphous solid is a solid in which there is no long-range order of the positions of the atoms unlike those in crystalline solids. An example of an amorphous solid is window glass. In addition many polymers such as polystyrene are amorphous.
Generally they are two types of solids 1. Crystalline solids 2. Amorphous solids. Amorphous solids are those solids which having different properties in different directions. They didnt have sharp melting and boiling points.
Amorphous materials have a disordered atomic structure, while semi-crystalline materials have both ordered and disordered regions. This difference in structure affects their properties, with amorphous materials being more flexible and transparent, while semi-crystalline materials are stronger and have higher melting points.
A crystalline solid has a highly ordered and repeating atomic structure, leading to distinct patterns and sharp melting points, while an amorphous solid lacks long-range order and has a more random atomic arrangement, resulting in no distinct melting point and a less defined shape.
Crystalline particles form a regular repeating pattern, also when a crystalline solid is heated it melts at a specific temperature. Amorphous particles are not arranged in a regular pattern, and when it is heated, it may become softerand softer or change into other substances.
the difference between crystalline solids and amorphous solids are that particles in crystalline solids form a regular repeating pattern but in amorphous solids they are not arranged in a regular shapeCrystals are solids with fixed, regularpatterns
The way it breaks