Geographic distribution refers to the spatial arrangement of organisms across the Earth's surface, while biogeography is the study of the geographical distribution of living things. Geographic distribution is a key aspect studied within biogeography to understand how and why species are distributed where they are, often influenced by factors such as evolutionary history, environmental conditions, and geographical barriers. Overall, geographic distribution is a fundamental component of biogeography as it helps explain the patterns of biodiversity and species richness observed globally.
If you got goosebumps from running through a field of soy beans, you may have an allergy. It may be an allergy to the soy bean dust, or to the chemicals that were sprayed on them.
The distribution of electrons in a Guassian field.
The distribution of the electric field inside a sphere is uniform, meaning it is the same at all points inside the sphere.
He Hypothesised continential drift which is geographical
The distribution of the electric field through a cube is uniform, meaning it is the same strength and direction at every point inside the cube.
Kohji Hirata has written: 'Canonical quantization of the electromagnetic field with Dirac's monopoles' -- subject(s): Electromagnetic fields, Mathematics, Quantum theory 'Host range and geographical distribution of the powdery mildews' -- subject(s): Mildew
The electric field inside a hollow conductor is zero.
The central charge of a spherical conductor with a cavity affects the electric field distribution within the conductor. The electric field inside the conductor is zero, and the charge is distributed on the surface. The central charge influences how the charge is distributed on the surface, which in turn affects the electric field distribution within the conductor.
The charge distribution on a conducting shell affects the electric field inside the shell. If the charge is distributed evenly, the electric field inside the shell is zero. If the charge is not evenly distributed, there will be an electric field inside the shell.
The electric field inside a uniformly charged sphere is zero.
The volume charge density of an electric dipole affects the overall electric field distribution by influencing the strength and direction of the electric field lines around the dipole. A higher volume charge density results in a stronger electric field, while a lower volume charge density results in a weaker electric field. The distribution of the electric field lines is also influenced by the orientation and separation of the charges in the dipole.