How to get this formula for mean and scalar curvatures for tube
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HE L, Jiao X X, Zhou X C: $On almost complex curves and Hopf hypersurfaces in the nearly Kddotahler 6-sphere, $ Sci China Math, 2014. 57: 1045-1056, doi:10.1007/s11425-014-4777-3
I don't know how to get this formula (3.4) and (3.5) for The mean curvature H and the scalar curvature àof tubular hypersurface $M_r ⊂ S^6(1)$?
beginalign
&H=frac(2+5(x_1^2+x_2^2)lambda^2)cot r-3cot^3 r5(cot^2 r-(x_1^2+x_2^2)lambda^2)dotgamma_eta(r),\[0.1cm]
&rho=20+frac2-(12+20(x_1^2+x_2^2)lambda^2)cot^2 r+6cot^4 rcot^2 r-(x_1^2+x_2^2)lambda^2.
endalign
Did anyone see calculations for this in some paper or how to get this formulas?
geometry differential-geometry algebraic-geometry
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up vote
2
down vote
favorite
I'am reading paper
HE L, Jiao X X, Zhou X C: $On almost complex curves and Hopf hypersurfaces in the nearly Kddotahler 6-sphere, $ Sci China Math, 2014. 57: 1045-1056, doi:10.1007/s11425-014-4777-3
I don't know how to get this formula (3.4) and (3.5) for The mean curvature H and the scalar curvature àof tubular hypersurface $M_r ⊂ S^6(1)$?
beginalign
&H=frac(2+5(x_1^2+x_2^2)lambda^2)cot r-3cot^3 r5(cot^2 r-(x_1^2+x_2^2)lambda^2)dotgamma_eta(r),\[0.1cm]
&rho=20+frac2-(12+20(x_1^2+x_2^2)lambda^2)cot^2 r+6cot^4 rcot^2 r-(x_1^2+x_2^2)lambda^2.
endalign
Did anyone see calculations for this in some paper or how to get this formulas?
geometry differential-geometry algebraic-geometry
I'm not certain what the protocol is for questions about specific papers is, but you may want to cross post on MO.
– Nico
yesterday
add a comment |Â
up vote
2
down vote
favorite
up vote
2
down vote
favorite
I'am reading paper
HE L, Jiao X X, Zhou X C: $On almost complex curves and Hopf hypersurfaces in the nearly Kddotahler 6-sphere, $ Sci China Math, 2014. 57: 1045-1056, doi:10.1007/s11425-014-4777-3
I don't know how to get this formula (3.4) and (3.5) for The mean curvature H and the scalar curvature àof tubular hypersurface $M_r ⊂ S^6(1)$?
beginalign
&H=frac(2+5(x_1^2+x_2^2)lambda^2)cot r-3cot^3 r5(cot^2 r-(x_1^2+x_2^2)lambda^2)dotgamma_eta(r),\[0.1cm]
&rho=20+frac2-(12+20(x_1^2+x_2^2)lambda^2)cot^2 r+6cot^4 rcot^2 r-(x_1^2+x_2^2)lambda^2.
endalign
Did anyone see calculations for this in some paper or how to get this formulas?
geometry differential-geometry algebraic-geometry
I'am reading paper
HE L, Jiao X X, Zhou X C: $On almost complex curves and Hopf hypersurfaces in the nearly Kddotahler 6-sphere, $ Sci China Math, 2014. 57: 1045-1056, doi:10.1007/s11425-014-4777-3
I don't know how to get this formula (3.4) and (3.5) for The mean curvature H and the scalar curvature àof tubular hypersurface $M_r ⊂ S^6(1)$?
beginalign
&H=frac(2+5(x_1^2+x_2^2)lambda^2)cot r-3cot^3 r5(cot^2 r-(x_1^2+x_2^2)lambda^2)dotgamma_eta(r),\[0.1cm]
&rho=20+frac2-(12+20(x_1^2+x_2^2)lambda^2)cot^2 r+6cot^4 rcot^2 r-(x_1^2+x_2^2)lambda^2.
endalign
Did anyone see calculations for this in some paper or how to get this formulas?
geometry differential-geometry algebraic-geometry
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I'm not certain what the protocol is for questions about specific papers is, but you may want to cross post on MO.
– Nico
yesterday
add a comment |Â
I'm not certain what the protocol is for questions about specific papers is, but you may want to cross post on MO.
– Nico
yesterday
I'm not certain what the protocol is for questions about specific papers is, but you may want to cross post on MO.
– Nico
yesterday
I'm not certain what the protocol is for questions about specific papers is, but you may want to cross post on MO.
– Nico
yesterday
add a comment |Â
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I'm not certain what the protocol is for questions about specific papers is, but you may want to cross post on MO.
– Nico
yesterday