Content location → Content locationEvidenceThe reviewed planar-flux card uses the Euclidean dot product F⋅n to extract the normal component of a constant field on a planar patch, with n a chosen unit normal. Multiplying by patch area gives signed flux; reversing the normal changes its sign. This is an application of the inner product, not a definition of all possible surface integrals.
Application → Content locationEvidenceThe reviewed planar-flux card uses the Euclidean dot product F⋅n to extract the normal component of a constant field on a planar patch, with n a chosen unit normal. Multiplying by patch area gives signed flux; reversing the normal changes its sign. This is an application of the inner product, not a definition of all possible surface integrals.
Application → Content locationEvidenceReviewed application connection to Content location.
Content location → Surface fluxEvidenceThe reviewed planar-flux card uses the Euclidean dot product F⋅n to extract the normal component of a constant field on a planar patch, with n a chosen unit normal. Multiplying by patch area gives signed flux; reversing the normal changes its sign. This is an application of the inner product, not a definition of all possible surface integrals.
Application → Inner productsEvidenceThe reviewed planar-flux card uses the Euclidean dot product F⋅n to extract the normal component of a constant field on a planar patch, with n a chosen unit normal. Multiplying by patch area gives signed flux; reversing the normal changes its sign. This is an application of the inner product, not a definition of all possible surface integrals.