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B Pointcurve correspondences I The theory of the base 135
Jaeger J C Conduction of heat in a slab in contact with well stirred
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algebraic algebraic curves assume asymptotic curves Bessel functions biaxial surface binary form boundary Cambridge circles coefficients complex consider constant coordinates corresponding covariant critical lattices cycles defined dendrite denote derived displacement double points expression finite number follows formula function given gives Hankel transform Hence homeomorphic identity inner point integers integral intersection invariant lattice points lattices A21 Lemma Lie derivation linear substitutions mapped Math matrix method multiple points mutual multiplier neighbourhood non.singular non.zero notation observable obtain pairs paper path period matrix plane plate polynomial principal curvatures problem Proc projective properties quadric quadric surfaces quantum mechanics quartic radius relation resonator respect Riemann Riemann surface root s.value satisfied segment Similarly sin2 singular lattices solution stress subdendrite subset symmetric syzygies tangent theorem theory transformation valency zero values variable W. V. D. HODGE write