Linear Weingarten centroaffine translation surfaces in \(\mathbb R^3\)
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Publication:615910
DOI10.1016/j.jmaa.2010.09.052zbMath1247.53012OpenAlexW2050291518MaRDI QIDQ615910
Yun Yang, Yanhua Yu, Liu Hui-Li
Publication date: 7 January 2011
Published in: Journal of Mathematical Analysis and Applications (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1016/j.jmaa.2010.09.052
Related Items (10)
Flat centroaffine surfaces with parallel second fundamental form in \(\mathbb{R}^4\) ⋮ On affine translation surfaces in affine space ⋮ LCN-translation surfaces in affine 3-space ⋮ Invariant hypersurface flows in centro-affine geometry ⋮ Minimal translation surfaces in Euclidean space ⋮ Translation surfaces in affine 3-space ⋮ Flat centroaffine surfaces with the degenerate second fundamental form and vanishing Pick invariant in \(\mathbb R^{4}\) ⋮ Surfaces generated by the real and imaginary parts of analytic functions: a-deformations that occur independently or simultaneously ⋮ Unnamed Item ⋮ Centroaffine geometry of equiaffine rotation surfaces in \(\mathbb R^3\)
Cites Work
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- Indefinite centroaffine surfaces with vanishing generalized Pick function
- Relative Tchebychev hypersurfaces which are also translation hypersurfaces
- Canonical centroaffine hypersurfaces in \({\mathbb{R}{}}^{n+1}\)
- Centroaffine surfaces with parallel traceless cubic form
- Centroaffine minimal hypersurfaces in \(\mathbb{R}^{n+1}\)
- Conformal structure in affine geometry: Complete Tchebychev hypersurfaces
- Affine translation surfaces with constant sectional curvature
- Centroaffine Bernstein problems
- Projectively flat affine surfaces
- The centroaffine Tchebychev operator
- Centroaffine ruled surfaces in \(\mathbb R^3\)
- Centroaffine minimal surfaces whose centroaffine curvature and Pick function are constants
- Classification of surfaces in \(\mathbb{R}^ 3\) which are centroaffine-minimal and equiaffine-minimal
- Centroaffine minimal surfaces with non-semisimple centroaffine Tchebychev operator
- Centroaffine translation surfaces in \(\mathbb{R}^3\)
- RELATIVE TCHEBYCHEV SURFACES IN R3
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