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Thomas J. Peters
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- affiliation: University of Connecticut, Department of Mathematics, Storrs, CT, USA
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2020 – today
- 2020
- [i5]Kirk E. Jordan, Ji Li, Thomas J. Peters:
Knot Morphing Algorithm for Quantum 'Fragile Topology'. CoRR abs/2005.08873 (2020)
2010 – 2019
- 2014
- [j14]Kirk E. Jordan, Ji Li, Thomas J. Peters, John A. Roulier:
Isotopic equivalence by Bézier curve subdivision for application to high performance computing. Comput. Aided Geom. Des. 31(9): 642-655 (2014) - [p2]Hugh P. Cassidy, Thomas J. Peters, Horea T. Ilies, Kirk E. Jordan:
Topological Integrity for Dynamic Spline Models During Visualization of Big Data. Topological Methods in Data Analysis and Visualization 2014: 167-183 - [i4]Ji Li, Thomas J. Peters, Kirk E. Jordan:
Computational Topology for Approximations of Knots. CoRR abs/1401.3370 (2014) - 2012
- [j13]Tiago Etiene, Luis Gustavo Nonato, Carlos Eduardo Scheidegger, Julien Tierny, Thomas J. Peters, Valerio Pascucci, Robert M. Kirby, Cláudio T. Silva:
Topology Verification for Isosurface Extraction. IEEE Trans. Vis. Comput. Graph. 18(6): 952-965 (2012) - [c14]Hugh P. Cassidy, Thomas J. Peters, Kirk E. Jordan:
Dynamic Computational Topology for Piecewise Linear Curves. CCCG 2012: 265-270 - [i3]Ji Li, Thomas J. Peters, John A. Roulier:
Angular Convergence during Bezier Curve Approximation. CoRR abs/1210.2686 (2012) - 2011
- [j12]Justin Bisceglio, Thomas J. Peters, John A. Roulier, Carlo H. Séquin:
Unknots with highly knotted control polygons. Comput. Aided Geom. Des. 28(3): 212-214 (2011) - [p1]Kirk E. Jordan, Lance Edward Miller, Thomas J. Peters, Alexander C. Russell:
Geometric Topology & Visualizing 1-Manifolds. Topological Methods in Data Analysis and Visualization 2011: 1-12 - 2010
- [j11]Thomas J. Peters:
Letters to the Editors. Comput. Graph. Forum 29(6): 2008-2009 (2010)
2000 – 2009
- 2008
- [j10]Kirk E. Jordan, Lance Edward Miller, Edward L. F. Moore, Thomas J. Peters, Alexander Russell:
Modeling time and topology for animation and visualization with examples on parametric geometry. Theor. Comput. Sci. 405(1-2): 41-49 (2008) - [c13]Lance Edward Miller, Edward L. F. Moore, Thomas J. Peters, Alexander Russell:
Topological Neighborhoods for Spline Curves: Practice & Theory. Reliable Implementation of Real Number Algorithms 2008: 149-161 - 2007
- [j9]Edward L. F. Moore, Thomas J. Peters, John A. Roulier:
Preserving computational topology by subdivision of quadratic and cubic Bézier curves. Computing 79(2-4): 317-323 (2007) - 2006
- [j8]Kinetsu Abe, Justin Bisceglio, David R. Ferguson, Thomas J. Peters, Alexander Russell, Takis Sakkalis:
Computational topology for isotopic surface reconstruction. Theor. Comput. Sci. 365(3): 184-198 (2006) - [c12]Justin Bisceglio, Thomas J. Peters, Kinetsu Abe:
Reconstructing surfaces using envelopes: bridging the gap between theory and practice. SIGGRAPH Research Posters 2006: 86 - [i2]Thomas J. Peters, Edward L. F. Moore:
Floating Point Geometric Algorithms for Topologically Correct Scientific Visualization. Reliable Implementation of Real Number Algorithms 2006 - 2005
- [c11]Kinetsu Abe, Justin Bisceglio, Thomas J. Peters, Alexander Russell, Takis Sakkalis:
Computational Topology for Reconstruction of Surfaces with Boundary: Integrating Experiments and Theory. SMI 2005: 290-299 - [i1]Edward L. F. Moore, Thomas J. Peters, David R. Ferguson, Neil F. Stewart:
Integrating Topology and Geometry for Macro-Molecular Simulations. Spatial Representation 2005 - 2004
- [j7]Takis Sakkalis, Thomas J. Peters, Justin Bisceglio:
Isotopic approximations and interval solids. Comput. Aided Des. 36(11): 1089-1100 (2004) - 2003
- [j6]C. Mow, Thomas J. Peters, Neil F. Stewart:
Specifying useful error bounds for geometry tools: an intersector exemplar. Comput. Aided Geom. Des. 20(5): 247-251 (2003) - [j5]Nina Amenta, Thomas J. Peters, Alexander Russell:
Computational topology: ambient isotopic approximation of 2-manifolds. Theor. Comput. Sci. 305(1-3): 3-15 (2003) - [c10]Takis Sakkalis, Thomas J. Peters:
Ambient isotopic approximations for surface reconstruction and interval solids. Symposium on Solid Modeling and Applications 2003: 176-184 - 2000
- [j4]Lars-Erik Andersson, Thomas J. Peters, Neil F. Stewart:
Equivalence of Topological Form for Curvilinear Geometric Objects. Int. J. Comput. Geom. Appl. 10(6): 609-622 (2000)
1990 – 1999
- 1999
- [c9]Donald M. Needham, Steven A. Demurjian, Thomas J. Peters:
Towards a distributed object-oriented propagation model using Ada95. SIGAda 1999: 203-210 - 1998
- [j3]Lars-Erik Andersson, Thomas J. Peters, Neil F. Stewart:
Selfintersection of composite curves and surfaces. Comput. Aided Geom. Des. 15(5): 507-527 (1998) - [c8]John A. Reisner, Zeenat Lainwala, Thomas J. Peters, Steven A. Demurjian:
Implementing a Culling and Self-Intersection Algorithm for Stereolithography Files in Ada 95. SIGAda 1998: 104-113 - [c7]Kevin Weiler, Tom Duff, Steven Fortune, Chris Hoffman, Thomas J. Peters:
Is robust geometry possible? (panel). SIGGRAPH Abstracts and Applications 1998: 217-219 - 1997
- [c6]Thomas J. Peters, Neil F. Stewart, David R. Ferguson, P. S. Fussell:
Algorithmic Tolerances and Semantics in Data Exchange. SCG 1997: 403-405 - [c5]Donald M. Needham, Steven A. Demurjian, Thomas J. Peters:
An Ada95 Basis for Propagation Modeling. TRI-Ada 1997: 263-272 - 1996
- [c4]Donald M. Needham, Steven A. Demurjian, Karim El Guemhioui, Thomas J. Peters, P. Zamani, M. McMahon, Heidi J. C. Ellis:
ADAM: A Language-Independent, Object-Oriented, Design Environment for Modeling Inheritance and Relationship Variants in Ada 95, C++, and Eiffel. TRI-Ada 1996: 99-113 - 1995
- [j2]Lars-Erik Andersson, Thomas J. Peters, Neil F. Stewart, S. M. Doney:
Polyhedral perturbations that preserve topological form. Comput. Aided Geom. Des. 12(8): 785-799 (1995) - 1994
- [c3]Karim El Guemhioui, Steven A. Demurjian, Thomas J. Peters, Heidi J. C. Ellis:
Profiling in an Object-Oriented Design Environment That Supports Ada 9X and Ada 83 Code Generation. TRI-Ada 1994: 180-190 - 1993
- [c2]Karim El Guemhioui, Steven A. Demurjian, Thomas J. Peters:
Object-Oriented Design and Automatic Ada Code Generation in the Education of Software Engineers. TRI-Ada 1993: 126-136 - 1992
- [j1]Steven A. Demurjian, Thomas J. Peters, George McA. Beshers, Heidi J. C. Ellis, Greg Nichols:
The (Non)Importance of a Programming Language in a Software Engineering Course. Comput. Sci. Educ. 3(1): 35-52 (1992) - [c1]Thomas J. Peters, Vincent Toscano:
Integrating Bounding Boxes, Lines of Support and Shadowing for Intersection Detection in the Plane. Geometric Modeling 1992: 29-44
Coauthor Index
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