analytical variant not stable enough (spectral decomposition of 0-Matrix)
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@ -1637,7 +1637,7 @@ subroutine plastic_dislotwin_LpAndItsTangent(Lp,dLp_dTstar99,Tstar_v,Temperature
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math_Plain3333to99, &
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math_Mandel6to33, &
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math_Mandel33to6, &
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math_spectralDecompositionSym33, &
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math_spectralDecompositionSym, &
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math_tensorproduct33, &
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math_symmetric33, &
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math_mul33x3
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@ -1683,6 +1683,7 @@ subroutine plastic_dislotwin_LpAndItsTangent(Lp,dLp_dTstar99,Tstar_v,Temperature
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real(pReal), dimension(6) :: gdot_sb,dgdot_dtausb,tau_sb
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real(pReal), dimension(3,3) :: eigVectors, sb_Smatrix
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real(pReal), dimension(3) :: eigValues, sb_s, sb_m
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logical :: error
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real(pReal), dimension(3,6), parameter :: &
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sb_sComposition = &
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reshape(real([&
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@ -1782,7 +1783,7 @@ subroutine plastic_dislotwin_LpAndItsTangent(Lp,dLp_dTstar99,Tstar_v,Temperature
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abs(plastic_dislotwin_sbResistance(instance)) > tiny(0.0_pReal)) then
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gdot_sb = 0.0_pReal
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dgdot_dtausb = 0.0_pReal
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call math_spectralDecompositionSym33(math_Mandel6to33(Tstar_v),eigValues,eigVectors)
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call math_spectralDecompositionSym(math_Mandel6to33(Tstar_v),eigValues,eigVectors,error)
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do j = 1_pInt,6_pInt
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sb_s = 0.5_pReal*sqrt(2.0_pReal)*math_mul33x3(eigVectors,sb_sComposition(1:3,j))
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sb_m = 0.5_pReal*sqrt(2.0_pReal)*math_mul33x3(eigVectors,sb_mComposition(1:3,j))
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