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Laplace's Equation
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Neumann Boundary Condition on a Plane
Solution assumes specific derivative (gradient) values on the boundary of the domain.
Continuity Boundary Condition
Requires the continuity of the solution and its derivatives across internal boundaries.
Mixed Boundary Condition
Solution that uses a combination of Dirichlet and Neumann conditions on the domain.
Isolated Boundary Condition
Assumes the absence of external influences at the boundary.
Periodic Boundary Condition
Solution imposes that the function repeats after a certain interval.
Robin Boundary Condition
Combination of Dirichlet and Neumann conditions as a linear condition on the boundary of the domain.
Dirichlet Boundary Condition on a Plane
Solution assumes specific values on the boundary of the domain.
Boundary Condition at Infinity
Assumes a specific behavior of the solution at infinity.
Symmetry Boundary Condition
Utilizes the symmetry of the problem to simplify the boundary conditions.
Radiation Boundary Condition
Models the heat transfer or flux at the boundary due to radiation.
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