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Ron Goldman 0002
Ronald N. Goldman
Author information
- Rice University
Other persons with the same name
- Ron Goldman
- Ron Goldman 0001 — Oracle
2010 – today
- 2013
[j67]Xiaoran Shi, Xiaohong Jia, Ron Goldman: Using a bihomogeneous resultant to find the singularities of rational space curves. J. Symb. Comput. 53: 1-25 (2013)- 2012
[j66]Xiaohong Jia, Ron Goldman: Using Smith normal forms and μ-bases to compute all the singularities of rational planar curves. Computer Aided Geometric Design 29(6): 296-314 (2012)
[j65]Xiaoran Shi, Ron Goldman: Implicitizing rational surfaces of revolution using μ-bases. Computer Aided Geometric Design 29(6): 348-362 (2012)
[j64]Xiaoran Shi, Xuhui Wang, Ron Goldman: Using μ-bases to implicitize rational surfaces with a pair of orthogonal directrices. Computer Aided Geometric Design 29(7): 541-554 (2012)
[j63]Ron Goldman, Plamen Simeonov: Formulas and algorithms for quantum differentiation of quantum Bernstein bases and quantum Bézier curves based on quantum blossoming. Graphical Models 74(6): 326-334 (2012)
[j62]Plamen Simeonov, Vasilis Zafiris, Ron Goldman: q-Blossoming: A new approach to algorithms and identities for q-Bernstein bases and q-Bézier curves. Journal of Approximation Theory 164(1): 77-104 (2012)- 2011
[j61]Plamen Simeonov, Vasilis Zafiris, Ron Goldman: h-Blossoming: A new approach to algorithms and identities for h-Bernstein bases and h-Bézier curves. Computer Aided Geometric Design 28(9): 549-565 (2011)
[j60]
[j59]Nira Dyn, Ron Goldman: Convergence and Smoothness of Nonlinear Lane-Riesenfeld Algorithms in the Functional Setting. Foundations of Computational Mathematics 11(1): 79-94 (2011)
[p1]Ron Goldman: A Homogeneous Model for Three-Dimensional Computer Graphics Based on the Clifford Algebra for ℝ3. Guide to Geometric Algebra in Practice 2011: 329-352- 2010
[b1]Ron Goldman: Rethinking Quaternions. Synthesis Lectures on Computer Graphics and Animation, Morgan & Claypool Publishers 2010
[j58]Xiaohong Jia, Haohao Wang, Ron Goldman: Set-theoretic generators of rational space curves. J. Symb. Comput. 45(4): 414-433 (2010)
[i1]Xiaohong Jia, Ron Goldman: Using Smith Normal Forms and mu-Bases to Compute all the Singularities of Rational Planar Curves. CoRR abs/1005.0085 (2010)
2000 – 2009
- 2009
[j57]Ning Song, Ron Goldman: mu-bases for polynomial systems in one variable. Computer Aided Geometric Design 26(2): 217-230 (2009)
[j56]Haohao Wang, Xiaohong Jia, Ron Goldman: Axial moving planes and singularities of rational space curves. Computer Aided Geometric Design 26(3): 300-316 (2009)
[j55]Xiaohong Jia, Ron Goldman: µ-Bases and singularities of rational planar curves. Computer Aided Geometric Design 26(9): 970-988 (2009)- 2008
[j54]Ron Goldman: After the revolution: Geometric algebra for Computer Scientists in the twenty-first century. Computer-Aided Design 40(5): 655-656 (2008)
[j53]Laurent Busé, Ron Goldman: Division algorithms for Bernstein polynomials. Computer Aided Geometric Design 25(9): 850-865 (2008)- 2007
[j52]Ning Song, Falai Chen, Ron Goldman: Axial moving lines and singularities of rational planar curves. Computer Aided Geometric Design 24(4): 200-209 (2007)
[j51]Stefanie Hahmann, Guido Brunnett, Gerald E. Farin, Ron Goldman: Editorial: Special issue on Geometric Modeling (Dagstuhl 2005). Computing 79(2-4): 99 (2007)- 2006
[j50]Ming Zhang, Liqun Wang, Ronald N. Goldman: Bézier Subdivision for Inverse Molecular Kinematics. Int. J. Comput. Geometry Appl. 16(5-6): 513-532 (2006)- 2005
[j49]Ming Zhang, R. Allen White, Liqun Wang, Ronald N. Goldman, Lydia E. Kavraki, Brendan Hassett: Improving conformational searches by geometric screening. Bioinformatics 21(5): 624-630 (2005)
[j48]Ron Goldman: Curvature formulas for implicit curves and surfaces. Computer Aided Geometric Design 22(7): 632-658 (2005)
[c12]Scott Schaefer, David Levin, Ron Goldman: Subdivision Schemes and Attractors. Symposium on Geometry Processing 2005: 171-180- 2004
[j47]Ron Goldman, Scott Schaefer, Tao Ju: Turtle geometry in computer graphics and computer-aided design. Computer-Aided Design 36(14): 1471-1482 (2004)
[j46]Ronald N. Goldman: Multisided arrays of control points for multisided Bezier patches. Computer Aided Geometric Design 21: 243-261 (2004)
[j45]Tao Ju, Scott Schaefer, Ron Goldman: Recursive turtle programs and iterated affine transformations. Computers & Graphics 28(6): 991-1004 (2004)
[j44]Ronald N. Goldman, Wenping Wang: Using Invariants To Extract Geometric Characteristics Of Conic Sections From Rational Quadratic Parameterizations. Int. J. Comput. Geometry Appl. 14(3): 161-187 (2004)
[c11]
[c10]Amit Khetan, Ning Song, Ron Goldman: Sylvester-resultants for bivariate polynomials with planar newton polygons. ISSAC 2004: 205-212- 2003
[j43]Wenping Wang, Ronald N. Goldman, Changhe Tu: Enhancing Levin's method for computing quadric-surface intersections. Computer Aided Geometric Design 20(7): 401-422 (2003)
[j42]Ron Goldman: Deriving Linear Transformations in Three Dimensions. IEEE Computer Graphics and Applications 23(3): 66-71 (2003)
[c9]Ron Goldman: Computer Graphics in its Fifth Decade: Ferment at the Foundations. Pacific Conference on Computer Graphics and Applications 2003: 4-21- 2002
[j41]Ronald N. Goldman, Géraldine Morin: The affine invariant analytic blossom. Computer Aided Geometric Design 19(8): 621-623 (2002)
[j40]Wenping Wang, Barry Joe, Ronald N. Goldman: Computing quadric surface intersections based on an analysis of plane cubic curves. Graphical Models 64(6): 335-367 (2002)
[j39]Eng-Wee Chionh, Ming Zhang, Ronald N. Goldman: Fast Computation of the Bezout and Dixon Resultant Matrices. J. Symb. Comput. 33(1): 13-29 (2002)
[j38]Ron Goldman: On the algebraic and geometric foundations of computer graphics. ACM Trans. Graph. 21(1): 52-86 (2002)- 2001
[j37]Géraldine Morin, Ronald N. Goldman: Trimming analytic functions using right sided Poisson subdivision. Computer-Aided Design 33(11): 813-824 (2001)
[j36]Géraldine Morin, Ronald N. Goldman: On the smooth convergence of subdivision and degree elevation for Bézier curves. Computer Aided Geometric Design 18(7): 657-666 (2001)
[j35]Ron Goldman: Baseball Arithmetic and the Laws of Pseudoperspective. IEEE Computer Graphics and Applications 21(2): 70-78 (2001)- 2000
[j34]Géraldine Morin, Ronald N. Goldman: A subdivision scheme for Poisson curves and surfaces. Computer Aided Geometric Design 17(9): 813-833 (2000)
[j33]Ron Goldman: The Ambient Spaces of Computer Graphics and Geometric Modeling. IEEE Computer Graphics and Applications 20(2): 76-84 (2000)
[j32]David A. Cox, Ronald N. Goldman, Ming Zhang: On the Validity of Implicitization by Moving Quadrics for Rational Surfaces with No Base Points. J. Symb. Comput. 29(3): 419-440 (2000)
[c8]
[c7]Eng-Wee Chionh, Ming Zhang, Ronald N. Goldman: Implicitization by Dixon A-Resultants. GMP 2000: 310-318
[c6]Ming Zhang, Ronald N. Goldman: Rectangular corner cutting and Sylvester A-resultants. ISSAC 2000: 301-308
1990 – 1999
- 1999
[j31]Ming Zhang, Eng-Wee Chionh, Ronald N. Goldman: On a relationship between the moving line and moving conic coefficient matrices. Computer Aided Geometric Design 16(6): 517-527 (1999)
[j30]
[j29]Ron Goldman: The rational Bernstein bases and the multirational blossoms. Computer Aided Geometric Design 16(8): 701-738 (1999)
[c5]- 1998
[c4]L. Yohanes Stefanus, Ronald N. Goldman: On the Linear Independence of the Bivariate Discrete Convolution Blending Functions. CATS 1998: 231-244- 1997
[j28]W. A. M. Othman, Ronald N. Goldman: The dual basis functions for the generalized Ball basis of odd degree. Computer Aided Geometric Design 14(6): 571-582 (1997)
[j27]Wenping Wang, Barry Joe, Ronald N. Goldman: Rational Quadratic Parameterizations of Quadrics. Int. J. Comput. Geometry Appl. 7(6): 599- (1997)
[j26]Thomas W. Sederberg, Ron Goldman, Hang Du: Implicitizing Rational Curves by the Method of Moving Algebraic Curves. J. Symb. Comput. 23(2/3): 153-175 (1997)
[j25]Suresh K. Lodha, Ron Goldman: A unified approach to evaluation algorithms for multivariate polynomials. Math. Comput. 66(220): 1521-1553 (1997)- 1996
[j24]Ayman W. Habib, Ronald N. Goldman: Theories of contact specified by connection matrices. Computer Aided Geometric Design 13(9): 905-929 (1996)- 1995
[j23]Suresh K. Lodha, Ron Goldman: Change of basis algorithms for surfaces in CAGD. Computer Aided Geometric Design 12(8): 801-824 (1995)
[j22]James R. Miller, Ronald N. Goldman: Geometric Algorithms for Detecting and Calculating All Conic Sections in the Intersection of Any 2 Natural Quadric Surfaces. CVGIP: Graphical Model and Image Processing 57(1): 55-66 (1995)- 1994
[j21]Eng-Wee Chionh, Ronald N. Goldman: On the Existence and the Coefficients of the Implicit Equation of Rational Surfaces. CVGIP: Graphical Model and Image Processing 56(1): 19-24 (1994)- 1993
[j20]Phillip J. Barry, Ronald N. Goldman, Charles A. Micchelli: Knot insertion algorithms for piecewise polynomial spaces determined by connection matrices. Adv. Comput. Math. 1(2): 139-171 (1993)
[j19]Ron Goldman, Joe D. Warren: An Extension of Chaiken's Algorithm to B-Spline Curves with Knots in Geometric Progression. CVGIP: Graphical Model and Image Processing 55(1): 58-62 (1993)
[j18]Tony DeRose, Ronald N. Goldman, Hans Hagen, Stephen Mann: Functional Composition Algorithms via Blossoming. ACM Trans. Graph. 12(2): 113-135 (1993)
[c3]Phillip J. Barry, Ronald N. Goldman: Unimodal Properties of Generalized Ball Bases. Geometric Modelling 1993: 35-41- 1992
[j17]Phillip J. Barry, John C. Beatty, Ronald N. Goldman: Unimodal properties of B-spline and Bernstein-basis functions. Computer-Aided Design 24(12): 627-636 (1992)
[j16]L. Yohanes Stefanus, Ronald N. Goldman: Blossoming Marsden's identity. Computer Aided Geometric Design 9(2): 73-84 (1992)
[j15]Eng-Wee Chionh, Ronald N. Goldman: Degree, multiplicity, and inversion formulas for rational surfaces using u-resultants. Computer Aided Geometric Design 9(2): 93-108 (1992)
[j14]Eng-Wee Chionh, Ronald N. Goldman: Using multivariate resultants to find the implicit equation of a rational surface. The Visual Computer 8(3): 171-180 (1992)- 1991
[j13]Phillip J. Barry, Ronald N. Goldman: Interpolation and approximation of curves and surfaces using Pólya polynomials. CVGIP: Graphical Model and Image Processing 53(2): 137-148 (1991)
[j12]Eng-Wee Chionh, Ronald N. Goldman, James R. Miller: Using Multivariate Resultants to Find the Intersection of Three Quadric Surfaces. ACM Trans. Graph. 10(4): 378-400 (1991)
[c2]Ronald N. Goldman, James R. Miller: Combining algebraic rigor with geometric robustness for the detection and calculation of conic sections in the intersection of two natural quadric surfaces. Symposium on Solid Modeling and Applications 1991: 221-231- 1990
[j11]
[j10]Ronald N. Goldman: Blossoming and knot insertion algorithms for B-spline curves. Computer Aided Geometric Design 7(1-4): 69-81 (1990)
1980 – 1989
- 1988
[j9]Phillip J. Barry, Ronald N. Goldman: A recursive proof of a B-spline identity for degree elevation. Computer Aided Geometric Design 5(2): 173-175 (1988)
[c1]Phillip J. Barry, Ronald N. Goldman: A recursive evaluation algorithm for a class of Catmull-Rom splines. SIGGRAPH 1988: 199-204- 1986
[j8]Ronald N. Goldman, Tony DeRose: Recursive subdivision without the convex hull property. Computer Aided Geometric Design 3(4): 247-265 (1986)- 1985
[j7]Ronald N. Goldman: Markov Chains and Computer Aided Geometric Design II - Examples and Subdivision Matrices. ACM Trans. Graph. 4(1): 12-40 (1985)
[j6]
[j5]Ronald N. Goldman, Thomas W. Sederberg: Some applications of resultants to problems in computational geometry. The Visual Computer 1(2): 101-107 (1985)- 1984
[j4]Ronald N. Goldman, David C. Heath: Linear subdivision is strictly a polynomial phenomenon. Computer Aided Geometric Design 1(3): 269-278 (1984)
[j3]Ronald N. Goldman, Thomas W. Sederberg, D. C. Anderson: Vector elimination: A technique for the implicitization, inversion, and intersection of planar parametric rational polynomial curves. Computer Aided Geometric Design 1(4): 327-356 (1984)
[j2]Thomas W. Sederberg, D. C. Anderson, Ronald N. Goldman: Implicit representation of parametric curves and surfaces. Computer Vision, Graphics, and Image Processing 28(1): 72-84 (1984)
[j1]Ronald N. Goldman: Markov Chains and Computer-Aided Geometric Design: Part I - Problems and Constraints. ACM Trans. Graph. 3(3): 204-222 (1984)
Coauthor Index
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last updated on 2013-04-17 21:42 CEST by the dblp team



