Silicon is the crystal that forms the basis for much of the microelectronics industry. Its semiconductor properties allow it to efficiently conduct electricity under certain conditions, making it ideal for creating transistors and integrated circuits. Additionally, silicon is abundant and relatively inexpensive, which contributes to its widespread use in manufacturing electronic components. Its ability to be easily doped with other elements further enhances its electrical properties, enabling the development of advanced technologies.
The basis in crystals is that it is uniquely arranged in a given solid or liquid.
One of the basis in a crystal structure is classification of solids; classification on the basis of the symmetry of crystal structures (geometrical properties) and physical features of them. In symmetric, we describe shape and arrangement crystals (s.c, b.c.c, f.c.c, h.c.p ,etc.) and in physical classification, decribe physical properties (The scheme is based on the configuration of the valance electrons. for example covalent crystal, ion crystal, metallic crystal and etc.)
In solid-state physics, "basis" refers to a set of vectors that define a crystal's lattice structure and play a fundamental role in describing the periodicity of the crystal. By combining the basis vectors with translation vectors, we can reproduce the entire crystal lattice. This concept is crucial for understanding the electronic and vibrational properties of solids.
In solid state physics, a basis refers to a set of atoms or molecules associated with each lattice point in a crystal structure. It defines the specific arrangement and types of atoms that repeat throughout the lattice, forming the crystal's structure. The combination of the lattice (the periodic arrangement of points in space) and the basis results in the overall structure of the solid, influencing its physical properties, such as electrical conductivity and thermal behavior. Essentially, the basis provides the detailed information needed to describe the crystal's composition and symmetry.
It is a system of classification of crystals into 7 crystal systems(Cubic,Tetragonal,Othorgonal,Hexagonal,Trigonal.Monoclinic and Triclinic) on the basis of their Geometrical properties and symmetry (Diads,Triads,Tetrads,Planes of symmetry,Centre of symmetry)
Silicon is the crystal that forms the basis for much of the microelectronics industry due to its semiconductor properties, which allow for the manipulation of electrical current. Silicon wafers are used in the production of integrated circuits and other electronic components.
The basis in crystals is that it is uniquely arranged in a given solid or liquid.
One of the basis in a crystal structure is classification of solids; classification on the basis of the symmetry of crystal structures (geometrical properties) and physical features of them. In symmetric, we describe shape and arrangement crystals (s.c, b.c.c, f.c.c, h.c.p ,etc.) and in physical classification, decribe physical properties (The scheme is based on the configuration of the valance electrons. for example covalent crystal, ion crystal, metallic crystal and etc.)
In solid-state physics, "basis" refers to a set of vectors that define a crystal's lattice structure and play a fundamental role in describing the periodicity of the crystal. By combining the basis vectors with translation vectors, we can reproduce the entire crystal lattice. This concept is crucial for understanding the electronic and vibrational properties of solids.
Classification of industries on the basis of size........... On the basis of size 3 types of industries are there:- 1.Small scale industry 2.Medium scale industry 3.Large scale industry -mohit malviya VIII-'D' SICA.S.S.SCHOOL
iris
In solid state physics, a basis refers to a set of atoms or molecules associated with each lattice point in a crystal structure. It defines the specific arrangement and types of atoms that repeat throughout the lattice, forming the crystal's structure. The combination of the lattice (the periodic arrangement of points in space) and the basis results in the overall structure of the solid, influencing its physical properties, such as electrical conductivity and thermal behavior. Essentially, the basis provides the detailed information needed to describe the crystal's composition and symmetry.
heavy industry
California
No
It is a system of classification of crystals into 7 crystal systems(Cubic,Tetragonal,Othorgonal,Hexagonal,Trigonal.Monoclinic and Triclinic) on the basis of their Geometrical properties and symmetry (Diads,Triads,Tetrads,Planes of symmetry,Centre of symmetry)
It is a system of classification of crystals into 7 crystal systems(Cubic,Tetragonal,Othorgonal,Hexagonal,Trigonal.Monoclinic and Triclinic) on the basis of their Geometrical properties and symmetry (Diads,Triads,Tetrads,Planes of symmetry,Centre of symmetry)