mit mathematicsmath.mit.edu/~edelman/publications/admissible_slopes.pdf · 2014. 9. 12. · theorem...

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Page 1: MIT Mathematicsmath.mit.edu/~edelman/publications/admissible_slopes.pdf · 2014. 9. 12. · Theorem 2.1. For nž3, D(Mn) is the convex hull of (0, 0) and an ellipse for n odd or a
Page 2: MIT Mathematicsmath.mit.edu/~edelman/publications/admissible_slopes.pdf · 2014. 9. 12. · Theorem 2.1. For nž3, D(Mn) is the convex hull of (0, 0) and an ellipse for n odd or a
Page 3: MIT Mathematicsmath.mit.edu/~edelman/publications/admissible_slopes.pdf · 2014. 9. 12. · Theorem 2.1. For nž3, D(Mn) is the convex hull of (0, 0) and an ellipse for n odd or a
Page 4: MIT Mathematicsmath.mit.edu/~edelman/publications/admissible_slopes.pdf · 2014. 9. 12. · Theorem 2.1. For nž3, D(Mn) is the convex hull of (0, 0) and an ellipse for n odd or a
Page 5: MIT Mathematicsmath.mit.edu/~edelman/publications/admissible_slopes.pdf · 2014. 9. 12. · Theorem 2.1. For nž3, D(Mn) is the convex hull of (0, 0) and an ellipse for n odd or a
Page 6: MIT Mathematicsmath.mit.edu/~edelman/publications/admissible_slopes.pdf · 2014. 9. 12. · Theorem 2.1. For nž3, D(Mn) is the convex hull of (0, 0) and an ellipse for n odd or a
Page 7: MIT Mathematicsmath.mit.edu/~edelman/publications/admissible_slopes.pdf · 2014. 9. 12. · Theorem 2.1. For nž3, D(Mn) is the convex hull of (0, 0) and an ellipse for n odd or a
Page 8: MIT Mathematicsmath.mit.edu/~edelman/publications/admissible_slopes.pdf · 2014. 9. 12. · Theorem 2.1. For nž3, D(Mn) is the convex hull of (0, 0) and an ellipse for n odd or a
Page 9: MIT Mathematicsmath.mit.edu/~edelman/publications/admissible_slopes.pdf · 2014. 9. 12. · Theorem 2.1. For nž3, D(Mn) is the convex hull of (0, 0) and an ellipse for n odd or a
Page 10: MIT Mathematicsmath.mit.edu/~edelman/publications/admissible_slopes.pdf · 2014. 9. 12. · Theorem 2.1. For nž3, D(Mn) is the convex hull of (0, 0) and an ellipse for n odd or a
Page 11: MIT Mathematicsmath.mit.edu/~edelman/publications/admissible_slopes.pdf · 2014. 9. 12. · Theorem 2.1. For nž3, D(Mn) is the convex hull of (0, 0) and an ellipse for n odd or a
Page 12: MIT Mathematicsmath.mit.edu/~edelman/publications/admissible_slopes.pdf · 2014. 9. 12. · Theorem 2.1. For nž3, D(Mn) is the convex hull of (0, 0) and an ellipse for n odd or a
Page 13: MIT Mathematicsmath.mit.edu/~edelman/publications/admissible_slopes.pdf · 2014. 9. 12. · Theorem 2.1. For nž3, D(Mn) is the convex hull of (0, 0) and an ellipse for n odd or a
Page 14: MIT Mathematicsmath.mit.edu/~edelman/publications/admissible_slopes.pdf · 2014. 9. 12. · Theorem 2.1. For nž3, D(Mn) is the convex hull of (0, 0) and an ellipse for n odd or a
Page 15: MIT Mathematicsmath.mit.edu/~edelman/publications/admissible_slopes.pdf · 2014. 9. 12. · Theorem 2.1. For nž3, D(Mn) is the convex hull of (0, 0) and an ellipse for n odd or a
Page 16: MIT Mathematicsmath.mit.edu/~edelman/publications/admissible_slopes.pdf · 2014. 9. 12. · Theorem 2.1. For nž3, D(Mn) is the convex hull of (0, 0) and an ellipse for n odd or a
Page 17: MIT Mathematicsmath.mit.edu/~edelman/publications/admissible_slopes.pdf · 2014. 9. 12. · Theorem 2.1. For nž3, D(Mn) is the convex hull of (0, 0) and an ellipse for n odd or a
Page 18: MIT Mathematicsmath.mit.edu/~edelman/publications/admissible_slopes.pdf · 2014. 9. 12. · Theorem 2.1. For nž3, D(Mn) is the convex hull of (0, 0) and an ellipse for n odd or a