Hyperbolic Monge-Ampère Equation

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In this paper we use the Sobolev steepest descent method introduced by John W. Neuberger to solve the hyperbolic Monge-Ampère equation. First, we use the discrete Sobolev steepest descent method to find numerical solutions; we use several initial guesses, and explore the effect of some imposed boundary conditions on the solutions. Next, we prove convergence of the continuous Sobolev steepest descent to show local existence of solutions to the hyperbolic Monge-Ampère equation. Finally, we prove some results on the Sobolev gradients that mainly arise from general nonlinear differential equations.
Date: August 2006
Creator: Howard, Tamani M.
System: The UNT Digital Library
A Characterization of Homeomorphic Bernoulli Trial Measures. (open access)

A Characterization of Homeomorphic Bernoulli Trial Measures.

We give conditions which, given two Bernoulli trial measures, determine whether there exists a homeomorphism of Cantor space which sends one measure to the other, answering a question of Oxtoby. We then provide examples, relating these results to the notions of good and refinable measures on Cantor space.
Date: August 2006
Creator: Yingst, Andrew Q.
System: The UNT Digital Library
A Computation of Partial Isomorphism Rank on Ordinal Structures (open access)

A Computation of Partial Isomorphism Rank on Ordinal Structures

We compute the partial isomorphism rank, in the sense Scott and Karp, of a pair of ordinal structures using an Ehrenfeucht-Fraisse game. A complete formula is proven by induction given any two arbitrary ordinals written in Cantor normal form.
Date: August 2006
Creator: Bryant, Ross
System: The UNT Digital Library
Characterizations of Continua of Finite Degree (open access)

Characterizations of Continua of Finite Degree

In this thesis, some characterizations of continua of finite degree are given. It turns out that being of finite degree (by formal definition) can be described by saying there exists an equivalent metric in which Hausdorff linear measure of the continuum is finite. I discuss this result in detail.
Date: August 2006
Creator: Irwin, Shana
System: The UNT Digital Library