more meaningful error messages
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@ -1458,6 +1458,10 @@ subroutine IO_error(error_ID,el,ip,g,instance,ext_msg)
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msg = 'empty list'
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case (143_pInt)
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msg = 'no value found for key'
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case (144_pInt)
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msg = 'negative number of systems'
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case (145_pInt)
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msg = 'to many systems requested'
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!--------------------------------------------------------------------------------------------------
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! material error messages and related messages in mesh
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@ -1957,6 +1957,7 @@ pure function lattice_symmetrizeC66(struct,C66)
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end function lattice_symmetrizeC66
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!--------------------------------------------------------------------------------------------------
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!> @brief Symmetrizes 2nd order tensor according to lattice type
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!--------------------------------------------------------------------------------------------------
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@ -2090,6 +2091,32 @@ pure function lattice_qDisorientation(Q1, Q2, struct)
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end function lattice_qDisorientation
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!function lattice_nonSchmidMatrix
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! coordinateSystem = buildCoordinateSystem(Nslip,int(LATTICE_BCC_SYSTEMSLIP,pInt),structure)
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!
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! do i = 1_pInt,myNslip ! assign slip system vectors
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! direction = coordinateSystem(1:3,1,i)
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! normal = coordinateSystem(1:3,1,i)
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! ! "np" and "nn" according to Gröger_etal2008, Acta Materialia 56 (2008) 5412–5425, table 1 (corresponds to their "n1" for positive and negative slip direction respectively)
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! np = math_mul33x3(math_axisAngleToR(sdU,+60.0_pReal*INRAD), normal)
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! ! Schmid matrices with non-Schmid contributions according to Koester_etal2012, Acta Materialia 60 (2012) 3894–3901, eq. (17) ("n1" is replaced by either "np" or "nn" according to either positive or negative slip direction)
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! nonSchmidMatrix_pos(1:3,1:3,1,i) = math_tensorproduct33(direction, np)
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! nonSchmidMatrix_pos(1:3,1:3,2,i) = math_tensorproduct33(math_crossproduct(normal, direction), normal)
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! nonSchmidMatrix_pos(1:3,1:3,3,i) = math_tensorproduct33(math_crossproduct(np, direction), np)
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! nonSchmidMatrix_pos(1:3,1:3,4,i) = math_tensorproduct33(normal, normal)
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! nonSchmidMatrix_pos(1:3,1:3,5,i) = math_tensorproduct33(math_crossproduct(normal, direction), math_crossproduct(normal, direction))
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! nonSchmidMatrix_pos(1:3,1:3,6,i) = math_tensorproduct33(direction, direction)
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!
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! nn = math_mul33x3(math_axisAngleToR(-sdU,60.0_pReal*INRAD), normal)
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! sns(1:3,1:3,2,1,i) = math_tensorproduct33(-sdU, nn)
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! sns(1:3,1:3,2,2,i) = math_tensorproduct33(math_crossproduct(snU, -sdU), snU)
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! sns(1:3,1:3,2,3,i) = math_tensorproduct33(math_crossproduct(nn, -sdU), nn)
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! sns(1:3,1:3,2,4,i) = math_tensorproduct33(snU, snU)
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! sns(1:3,1:3,2,5,i) = math_tensorproduct33(math_crossproduct(snU, -sdU), math_crossproduct(snU, -sdU))
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! sns(1:3,1:3,2,6,i) = math_tensorproduct33(-sdU, -sdU)
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! enddo
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!end function lattice_nonSchmidMatrix
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!--------------------------------------------------------------------------------------------------
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!> @brief Populates reduced slip-slip interaction matrix
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!> ToDo: prefix "2" needed as long as deprecated array lattice_interactionSlipSlip exists
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@ -2121,11 +2148,11 @@ function lattice_interactionSlipSlip2(Nslip,interactionValues,structure)
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interactionSlipSlip = lattice_bct_interactionSlipSlip
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NslipMax = lattice_bct_Nslip
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case default
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write(6,*) 'mist'
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call IO_error(132_pInt,ext_msg=trim(structure)//' (slip slip interaction)')
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end select
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!if (size(Ntwin) > count(Ntwin > 0_pInt)) call IO_error(150_pInt,ext_msg='Ntwin')
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!if (any(NtwinMax(1:size(Ntwin)) -Ntwin < 0_pInt)) call IO_error(150_pInt,ext_msg='Ntwin')
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if (any(Nslip(1:size(Nslip)) - Nslip < 0_pInt)) &
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call IO_error(145_pInt,ext_msg='Ntrans '//trim(structure))
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lattice_interactionSlipSlip2 = &
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buildInteraction(Nslip,Nslip,NslipMax,NslipMax,interactionValues,interactionSlipSlip)
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@ -2161,11 +2188,11 @@ function lattice_interactionTwinTwin2(Ntwin,interactionValues,structure)
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interactionTwinTwin = lattice_hex_interactionTwinTwin
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NtwinMax = lattice_hex_Ntwin
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case default
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write(6,*) 'mist'
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call IO_error(132_pInt,ext_msg=trim(structure)//' (twin twin interaction)')
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end select
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!if (size(Ntwin) > count(Ntwin > 0_pInt)) call IO_error(150_pInt,ext_msg='Ntwin')
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!if (any(NtwinMax(1:size(Ntwin)) -Ntwin < 0_pInt)) call IO_error(150_pInt,ext_msg='Ntwin')
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if (any(Ntwin(1:size(Ntwin)) - Ntwin < 0_pInt)) &
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call IO_error(145_pInt,ext_msg='Ntrans '//trim(structure))
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lattice_interactionTwinTwin2 = &
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buildInteraction(Ntwin,Ntwin,NtwinMax,NtwinMax,interactionValues,interactionTwinTwin)
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@ -2196,11 +2223,11 @@ function lattice_interactionTransTrans2(Ntrans,interactionValues,structure,targe
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interactionTransTrans = lattice_fccToHex_interactionTransTrans
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NtransMax = lattice_fcc_Ntrans
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else
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write(6,*) 'mist'
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call IO_error(132_pInt,ext_msg=trim(structure)//' => '//trim(targetStructure))
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end if
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!if (size(Ntwin) > count(Ntwin > 0_pInt)) call IO_error(150_pInt,ext_msg='Ntwin')
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!if (any(NtwinMax(1:size(Ntwin)) -Ntwin < 0_pInt)) call IO_error(150_pInt,ext_msg='Ntwin')
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if (any(Ntrans(1:size(Ntrans)) - Ntrans < 0_pInt)) &
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call IO_error(145_pInt,ext_msg='Ntrans '//trim(structure))
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lattice_interactionTransTrans2 = &
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buildInteraction(Ntrans,Ntrans,NtransMax,NtransMax,interactionValues,interactionTransTrans)
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@ -2211,7 +2238,7 @@ end function lattice_interactionTransTrans2
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!--------------------------------------------------------------------------------------------------
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!> @brief Calculates Schmid matrix for active slip systems
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!--------------------------------------------------------------------------------------------------
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function lattice_SchmidSlip(Nslip,structure,cOverA)
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function lattice_SchmidMatrix_slip(Nslip,structure,cOverA)
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use IO, only: &
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IO_error
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use math, only: &
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@ -2220,7 +2247,7 @@ function lattice_SchmidSlip(Nslip,structure,cOverA)
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implicit none
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integer(pInt), dimension(:), intent(in) :: Nslip !< number of active slip systems per family
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character(len=*), intent(in) :: structure !< lattice structure
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real(pReal), dimension(3,3,sum(Nslip)) :: lattice_SchmidSlip
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real(pReal), dimension(3,3,sum(Nslip)) :: lattice_SchmidMatrix_slip
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real(pReal), intent(in), optional :: &
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cOverA
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@ -2237,21 +2264,21 @@ function lattice_SchmidSlip(Nslip,structure,cOverA)
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case('bct')
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coordinateSystem = buildCoordinateSystem(Nslip,int(LATTICE_BCT_SYSTEMSLIP,pInt),structure,cOverA)
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case default
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call IO_error(130_pInt,ext_msg=trim(structure)//' (lattice_SchmidSlip)')
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call IO_error(130_pInt,ext_msg=trim(structure)//' (lattice_SchmidMatrix_slip)')
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end select
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do i = 1, sum(Nslip)
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lattice_SchmidSlip(1:3,1:3,i) = &
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lattice_SchmidMatrix_slip(1:3,1:3,i) = &
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math_tensorproduct33(coordinateSystem(1:3,1,i),coordinateSystem(1:3,2,i))
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enddo
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end function lattice_SchmidSlip
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end function lattice_SchmidMatrix_slip
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!--------------------------------------------------------------------------------------------------
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!> @brief Calculates Schmid matrix for active twin systems
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!--------------------------------------------------------------------------------------------------
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function lattice_SchmidTwin(Ntwin,structure,cOverA)
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function lattice_SchmidMatrix_twin(Ntwin,structure,cOverA)
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use IO, only: &
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IO_error
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use math, only: &
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@ -2260,7 +2287,7 @@ function lattice_SchmidTwin(Ntwin,structure,cOverA)
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implicit none
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integer(pInt), dimension(:), intent(in) :: Ntwin !< number of active twin systems per family
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character(len=*), intent(in) :: structure !< lattice structure
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real(pReal), dimension(3,3,sum(Ntwin)) :: lattice_SchmidTwin
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real(pReal), dimension(3,3,sum(Ntwin)) :: lattice_SchmidMatrix_Twin
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real(pReal), intent(in), optional :: &
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cOverA
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@ -2269,21 +2296,21 @@ function lattice_SchmidTwin(Ntwin,structure,cOverA)
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select case(structure)
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case('fcc')
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coordinateSystem = buildCoordinateSystem(Nslip,int(LATTICE_FCC_SYSTEMTWIN,pInt),structure)
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coordinateSystem = buildCoordinateSystem(Ntwin,int(LATTICE_FCC_SYSTEMTWIN,pInt),structure)
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case('bcc')
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coordinateSystem = buildCoordinateSystem(Nslip,int(LATTICE_BCC_SYSTEMTWIN,pInt),structure)
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coordinateSystem = buildCoordinateSystem(Ntwin,int(LATTICE_BCC_SYSTEMTWIN,pInt),structure)
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case('hex','hexagonal') !ToDo: "No alias policy": long or short?
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coordinateSystem = buildCoordinateSystem(Nslip,int(LATTICE_HEX_SYSTEMTWIN,pInt),'hex',cOverA)
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coordinateSystem = buildCoordinateSystem(Ntwin,int(LATTICE_HEX_SYSTEMTWIN,pInt),'hex',cOverA)
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case default
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call IO_error(130_pInt,ext_msg=trim(structure)//' (lattice_SchmidTwin)')
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call IO_error(130_pInt,ext_msg=trim(structure)//' (lattice_SchmidMatrix_twin)')
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end select
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do i = 1, sum(Nslip)
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lattice_SchmidTwin(1:3,1:3,i) = &
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do i = 1, sum(Ntwin)
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lattice_SchmidMatrix_twin(1:3,1:3,i) = &
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math_tensorproduct33(coordinateSystem(1:3,1,i),coordinateSystem(1:3,2,i))
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enddo
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end function lattice_SchmidTwin
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end function lattice_SchmidMatrix_twin
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!--------------------------------------------------------------------------------------------------
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