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Appendix xraylib macros

Tom Schoonjans edited this page Feb 27, 2015 · 3 revisions

This appendix contains tables of all macros that are used by the xraylib API. These will be substituted at compile-time (C, C++, Objective-C) or run-time with a corresponding integer. These integers have intentionally not been included in these tables as their direct usage is strongly discouraged: it is possible that these integers will change in future versions!

Physical constants

xraylib provides several physical constants, which are commonly used in the field of X-ray physics. They are implemented as macros that are mapped to the corresponding values as provided by NIST.

Constant Value Unit Macro
Avogadro constant 0.602214129 mol-1 × barn-1 × cm2 AVOGNUM
Electron rest mass energy 510.998928 keV MEC2
Square of classical electron radius 0.079407877 barn RE2
Classical electron radius 2.8179403267e-15 m R_E
keV to Å-1 conversion 12.39841930 - KEV2ANGST

X-ray fluorescence line macros

In this section an overview is presented of all macros that are being used by such functions as LineEnergy, RadRate and the CS_FluorLine family. Three types of macros are offered: IUPAC, Siegbahn and obsolete. The first two categories refer to individual XRF lines while the third category refers to groups of XRF lines. Usage of this last group is deprecated as explained in our manuscript The xraylib library for X-ray—matter interactions. Recent developments:

Access to these functions from the xraylib API is managed through a number of macros which allow for the extraction of specific information, such as a particular XRF line or atomic shell. A number of examples can be found in our earlier work [13]. However, care should be taken when using the macros related to the XRF lines. Despite the longstanding recommendation by the International Union of Pure and Applied Chemistry (IUPAC) to designate an XRF line based on the atomic levels involved in the transition (e.g. K−L3), the Siegbahn notation is still widely used in X-ray spectroscopy. This notation (e.g. Kα1), which classifies lines on the basis of their relative intensities, is very often used in a way that overlapping lines are referred to using a single notation: e.g. Kα corresponds to both Kα1 and Kα2. Another example concerns the Lβ line which actually indicates about twenty individual lines. This situation has an impact on how several functions from the xraylib API are used: Firstly, when retrieving an XRF cross section for a line group, the function must return the sum of the XRF cross sections of all lines belonging to that group. Secondly, a problem arises when calling the XRF line energy of a line group. One solution is returning an (weighted) average of the individual line energies. In the case of elements with a high atomic number, however, this would result in a line energy that would be absent from a real experimental spectrum (e.g. Pb K-L2: 72.8045 keV, K-L3: 74.9693). Thirdly, in the case of transition probabilities, it makes no sense to request e.g. this value for Lβ since it corresponds to several lines, originating from the L1, L2 and L3 shells! These issues were circumvented at an earlier stage by defining 4 Siegbahn macros KA_LINE, KB_LINE, LA_LINE and LB_LINE which correspond to Kα1+Kα2, Kβ1 + Kβ2, Lα1 and Lβ1, respectively. These 4 macros were accompanied by a large number of IUPAC macros, each associated with an individual line. Recent xraylib versions have, however, been augmented with about 45 new Siegbahn macros retrieving individual XRF lines [33]. Their usage will resolve the above mentioned issues entirely. The original 4 Siegbahn macros are kept for backward compatibility but their usage is deprecated. When invoking functions with these macros, the returned values will be valid for the complete line group, which means that they will in some cases be different from older xraylib versions.

IUPAC X-ray fluorescence line macros

Transition IUPAC macro
K ← L1 KL1_LINE
K ← L2 KL2_LINE
K ← L3 KL3_LINE
K ← M1 KM1_LINE
K ← M2 KM2_LINE
K ← M3 KM3_LINE
K ← M4 KM4_LINE
K ← M5 KM5_LINE
K ← N1 KN1_LINE
K ← N2 KN2_LINE
K ← N3 KN3_LINE
K ← N4 KN4_LINE
K ← N5 KN5_LINE
K ← N6 KN6_LINE
K ← N7 KN7_LINE
K ← O KO_LINE
K ← O1 KO1_LINE
K ← O2 KO2_LINE
K ← O3 KO3_LINE
K ← O4 KO4_LINE
K ← O5 KO5_LINE
K ← O6 KO6_LINE
K ← O7 KO7_LINE
K ← P KP_LINE
K ← P1 KP1_LINE
K ← P2 KP2_LINE
K ← P3 KP3_LINE
K ← P4 KP4_LINE
K ← P5 KP5_LINE
L1 ← L2 L1L2_LINE
L1 ← L3 L1L3_LINE
L1 ← M1 L1M1_LINE
L1 ← M2 L1M2_LINE
L1 ← M3 L1M3_LINE
L1 ← M4 L1M4_LINE
L1 ← M5 L1M5_LINE
L1 ← N1 L1N1_LINE
L1 ← N2 L1N2_LINE
L1 ← N3 L1N3_LINE
L1 ← N4 L1N4_LINE
L1 ← N5 L1N5_LINE
L1 ← N6 L1N6_LINE
L1 ← N67 L1N67_LINE
L1 ← N7 L1N7_LINE
L1 ← O1 L1O1_LINE
L1 ← O2 L1O2_LINE
L1 ← O3 L1O3_LINE
L1 ← O4 L1O4_LINE
L1 ← O45 L1O45_LINE
L1 ← O5 L1O5_LINE
L1 ← O6 L1O6_LINE
L1 ← O7 L1O7_LINE
L1 ← P1 L1P1_LINE
L1 ← P2 L1P2_LINE
L1 ← P23 L1P23_LINE
L1 ← P3 L1P3_LINE
L1 ← P4 L1P4_LINE
L1 ← P5 L1P5_LINE
L2 ← L3 L2L3_LINE
L2 ← M1 L2M1_LINE
L2 ← M2 L2M2_LINE
L2 ← M3 L2M3_LINE
L2 ← M4 L2M4_LINE
L2 ← M5 L2M5_LINE
L2 ← N1 L2N1_LINE
L2 ← N2 L2N2_LINE
L2 ← N3 L2N3_LINE
L2 ← N4 L2N4_LINE
L2 ← N5 L2N5_LINE
L2 ← N6 L2N6_LINE
L2 ← N7 L2N7_LINE
L2 ← O1 L2O1_LINE
L2 ← O2 L2O2_LINE
L2 ← O3 L2O3_LINE
L2 ← O4 L2O4_LINE
L2 ← O5 L2O5_LINE
L2 ← O6 L2O6_LINE
L2 ← O7 L2O7_LINE
L2 ← P1 L2P1_LINE
L2 ← P2 L2P2_LINE
L2 ← P23 L2P23_LINE
L2 ← P3 L2P3_LINE
L2 ← P4 L2P4_LINE
L2 ← P5 L2P5_LINE
L2 ← Q1 L2Q1_LINE
L3 ← M1 L3M1_LINE
L3 ← M2 L3M2_LINE
L3 ← M3 L3M3_LINE
L3 ← M4 L3M4_LINE
L3 ← M5 L3M5_LINE
L3 ← N1 L3N1_LINE
L3 ← N2 L3N2_LINE
L3 ← N3 L3N3_LINE
L3 ← N4 L3N4_LINE
L3 ← N5 L3N5_LINE
L3 ← N6 L3N6_LINE
L3 ← N7 L3N7_LINE
L3 ← O1 L3O1_LINE
L3 ← O2 L3O2_LINE
L3 ← O3 L3O3_LINE
L3 ← O4 L3O4_LINE
L3 ← O45 L3O45_LINE
L3 ← O5 L3O5_LINE
L3 ← O6 L3O6_LINE
L3 ← O7 L3O7_LINE
L3 ← P1 L3P1_LINE
L3 ← P2 L3P2_LINE
L3 ← P23 L3P23_LINE
L3 ← P3 L3P3_LINE
L3 ← P4 L3P4_LINE
L3 ← P45 L3P45_LINE
L3 ← P5 L3P5_LINE
L3 ← Q1 L3Q1_LINE
M1 ← M2 M1M2_LINE
M1 ← M3 M1M3_LINE
M1 ← M4 M1M4_LINE
M1 ← M5 M1M5_LINE
M1 ← N1 M1N1_LINE
M1 ← N2 M1N2_LINE
M1 ← N3 M1N3_LINE
M1 ← N4 M1N4_LINE
M1 ← N5 M1N5_LINE
M1 ← N6 M1N6_LINE
M1 ← N7 M1N7_LINE
M1 ← O1 M1O1_LINE
M1 ← O2 M1O2_LINE
M1 ← O3 M1O3_LINE
M1 ← O4 M1O4_LINE
M1 ← O5 M1O5_LINE
M1 ← O6 M1O6_LINE
M1 ← O7 M1O7_LINE
M1 ← P1 M1P1_LINE
M1 ← P2 M1P2_LINE
M1 ← P3 M1P3_LINE
M1 ← P4 M1P4_LINE
M1 ← P5 M1P5_LINE
M2 ← M3 M2M3_LINE
M2 ← M4 M2M4_LINE
M2 ← M5 M2M5_LINE
M2 ← N1 M2N1_LINE
M2 ← N2 M2N2_LINE
M2 ← N3 M2N3_LINE
M2 ← N4 M2N4_LINE
M2 ← N5 M2N5_LINE
M2 ← N6 M2N6_LINE
M2 ← N7 M2N7_LINE
M2 ← O1 M2O1_LINE
M2 ← O2 M2O2_LINE
M2 ← O3 M2O3_LINE
M2 ← O4 M2O4_LINE
M2 ← O5 M2O5_LINE
M2 ← O6 M2O6_LINE
M2 ← O7 M2O7_LINE
M2 ← P1 M2P1_LINE
M2 ← P2 M2P2_LINE
M2 ← P3 M2P3_LINE
M2 ← P4 M2P4_LINE
M2 ← P5 M2P5_LINE
M3 ← M4 M3M4_LINE
M3 ← M5 M3M5_LINE
M3 ← N1 M3N1_LINE
M3 ← N2 M3N2_LINE
M3 ← N3 M3N3_LINE
M3 ← N4 M3N4_LINE
M3 ← N5 M3N5_LINE
M3 ← N6 M3N6_LINE
M3 ← N7 M3N7_LINE
M3 ← O1 M3O1_LINE
M3 ← O2 M3O2_LINE
M3 ← O3 M3O3_LINE
M3 ← O4 M3O4_LINE
M3 ← O5 M3O5_LINE
M3 ← O6 M3O6_LINE
M3 ← O7 M3O7_LINE
M3 ← P1 M3P1_LINE
M3 ← P2 M3P2_LINE
M3 ← P3 M3P3_LINE
M3 ← P4 M3P4_LINE
M3 ← P5 M3P5_LINE
M3 ← Q1 M3Q1_LINE
M4 ← M5 M4M5_LINE
M4 ← N1 M4N1_LINE
M4 ← N2 M4N2_LINE
M4 ← N3 M4N3_LINE
M4 ← N4 M4N4_LINE
M4 ← N5 M4N5_LINE
M4 ← N6 M4N6_LINE
M4 ← N7 M4N7_LINE
M4 ← O1 M4O1_LINE
M4 ← O2 M4O2_LINE
M4 ← O3 M4O3_LINE
M4 ← O4 M4O4_LINE
M4 ← O5 M4O5_LINE
M4 ← O6 M4O6_LINE
M4 ← O7 M4O7_LINE
M4 ← P1 M4P1_LINE
M4 ← P2 M4P2_LINE
M4 ← P3 M4P3_LINE
M4 ← P4 M4P4_LINE
M4 ← P5 M4P5_LINE
M5 ← N1 M5N1_LINE
M5 ← N2 M5N2_LINE
M5 ← N3 M5N3_LINE
M5 ← N4 M5N4_LINE
M5 ← N5 M5N5_LINE
M5 ← N6 M5N6_LINE
M5 ← N7 M5N7_LINE
M5 ← O1 M5O1_LINE
M5 ← O2 M5O2_LINE
M5 ← O3 M5O3_LINE
M5 ← O4 M5O4_LINE
M5 ← O5 M5O5_LINE
M5 ← O6 M5O6_LINE
M5 ← O7 M5O7_LINE
M5 ← P1 M5P1_LINE
M5 ← P2 M5P2_LINE
M5 ← P3 M5P3_LINE
M5 ← P4 M5P4_LINE
M5 ← P5 M5P5_LINE
N1 ← N2 N1N2_LINE
N1 ← N3 N1N3_LINE
N1 ← N4 N1N4_LINE
N1 ← N5 N1N5_LINE
N1 ← N6 N1N6_LINE
N1 ← N7 N1N7_LINE
N1 ← O1 N1O1_LINE
N1 ← O2 N1O2_LINE
N1 ← O3 N1O3_LINE
N1 ← O4 N1O4_LINE
N1 ← O5 N1O5_LINE
N1 ← O6 N1O6_LINE
N1 ← O7 N1O7_LINE
N1 ← P1 N1P1_LINE
N1 ← P2 N1P2_LINE
N1 ← P3 N1P3_LINE
N1 ← P4 N1P4_LINE
N1 ← P5 N1P5_LINE
N2 ← N3 N2N3_LINE
N2 ← N4 N2N4_LINE
N2 ← N5 N2N5_LINE
N2 ← N6 N2N6_LINE
N2 ← N7 N2N7_LINE
N2 ← O1 N2O1_LINE
N2 ← O2 N2O2_LINE
N2 ← O3 N2O3_LINE
N2 ← O4 N2O4_LINE
N2 ← O5 N2O5_LINE
N2 ← O6 N2O6_LINE
N2 ← O7 N2O7_LINE
N2 ← P1 N2P1_LINE
N2 ← P2 N2P2_LINE
N2 ← P3 N2P3_LINE
N2 ← P4 N2P4_LINE
N2 ← P5 N2P5_LINE
N3 ← N4 N3N4_LINE
N3 ← N5 N3N5_LINE
N3 ← N6 N3N6_LINE
N3 ← N7 N3N7_LINE
N3 ← O1 N3O1_LINE
N3 ← O2 N3O2_LINE
N3 ← O3 N3O3_LINE
N3 ← O4 N3O4_LINE
N3 ← O5 N3O5_LINE
N3 ← O6 N3O6_LINE
N3 ← O7 N3O7_LINE
N3 ← P1 N3P1_LINE
N3 ← P2 N3P2_LINE
N3 ← P3 N3P3_LINE
N3 ← P4 N3P4_LINE
N3 ← P5 N3P5_LINE
N4 ← N5 N4N5_LINE
N4 ← N6 N4N6_LINE
N4 ← N7 N4N7_LINE
N4 ← O1 N4O1_LINE
N4 ← O2 N4O2_LINE
N4 ← O3 N4O3_LINE
N4 ← O4 N4O4_LINE
N4 ← O5 N4O5_LINE
N4 ← O6 N4O6_LINE
N4 ← O7 N4O7_LINE
N4 ← P1 N4P1_LINE
N4 ← P2 N4P2_LINE
N4 ← P3 N4P3_LINE
N4 ← P4 N4P4_LINE
N4 ← P5 N4P5_LINE
N5 ← N6 N5N6_LINE
N5 ← N7 N5N7_LINE
N5 ← O1 N5O1_LINE
N5 ← O2 N5O2_LINE
N5 ← O3 N5O3_LINE
N5 ← O4 N5O4_LINE
N5 ← O5 N5O5_LINE
N5 ← O6 N5O6_LINE
N5 ← O7 N5O7_LINE
N5 ← P1 N5P1_LINE
N5 ← P2 N5P2_LINE
N5 ← P3 N5P3_LINE
N5 ← P4 N5P4_LINE
N5 ← P5 N5P5_LINE
N6 ← N7 N6N7_LINE
N6 ← O1 N6O1_LINE
N6 ← O2 N6O2_LINE
N6 ← O3 N6O3_LINE
N6 ← O4 N6O4_LINE
N6 ← O5 N6O5_LINE
N6 ← O6 N6O6_LINE
N6 ← O7 N6O7_LINE
N6 ← P1 N6P1_LINE
N6 ← P2 N6P2_LINE
N6 ← P3 N6P3_LINE
N6 ← P4 N6P4_LINE
N6 ← P5 N6P5_LINE
N7 ← O1 N7O1_LINE
N7 ← O2 N7O2_LINE
N7 ← O3 N7O3_LINE
N7 ← O4 N7O4_LINE
N7 ← O5 N7O5_LINE
N7 ← O6 N7O6_LINE
N7 ← O7 N7O7_LINE
N7 ← P1 N7P1_LINE
N7 ← P2 N7P2_LINE
N7 ← P3 N7P3_LINE
N7 ← P4 N7P4_LINE
N7 ← P5 N7P5_LINE
O1 ← O2 O1O2_LINE
O1 ← O3 O1O3_LINE
O1 ← O4 O1O4_LINE
O1 ← O5 O1O5_LINE
O1 ← O6 O1O6_LINE
O1 ← O7 O1O7_LINE
O1 ← P1 O1P1_LINE
O1 ← P2 O1P2_LINE
O1 ← P3 O1P3_LINE
O1 ← P4 O1P4_LINE
O1 ← P5 O1P5_LINE
O2 ← O3 O2O3_LINE
O2 ← O4 O2O4_LINE
O2 ← O5 O2O5_LINE
O2 ← O6 O2O6_LINE
O2 ← O7 O2O7_LINE
O2 ← P1 O2P1_LINE
O2 ← P2 O2P2_LINE
O2 ← P3 O2P3_LINE
O2 ← P4 O2P4_LINE
O2 ← P5 O2P5_LINE
O3 ← O4 O3O4_LINE
O3 ← O5 O3O5_LINE
O3 ← O6 O3O6_LINE
O3 ← O7 O3O7_LINE
O3 ← P1 O3P1_LINE
O3 ← P2 O3P2_LINE
O3 ← P3 O3P3_LINE
O3 ← P4 O3P4_LINE
O3 ← P5 O3P5_LINE
O4 ← O5 O4O5_LINE
O4 ← O6 O4O6_LINE
O4 ← O7 O4O7_LINE
O4 ← P1 O4P1_LINE
O4 ← P2 O4P2_LINE
O4 ← P3 O4P3_LINE
O4 ← P4 O4P4_LINE
O4 ← P5 O4P5_LINE
O5 ← O6 O5O6_LINE
O5 ← O7 O5O7_LINE
O5 ← P1 O5P1_LINE
O5 ← P2 O5P2_LINE
O5 ← P3 O5P3_LINE
O5 ← P4 O5P4_LINE
O5 ← P5 O5P5_LINE
O6 ← O7 O6O7_LINE
O6 ← P4 O6P4_LINE
O6 ← P5 O6P5_LINE
O7 ← P4 O7P4_LINE
O7 ← P5 O7P5_LINE
P1 ← P2 P1P2_LINE
P1 ← P3 P1P3_LINE
P1 ← P4 P1P4_LINE
P1 ← P5 P1P5_LINE
P2 ← P3 P2P3_LINE
P2 ← P4 P2P4_LINE
P2 ← P5 P2P5_LINE
P3 ← P4 P3P4_LINE
P3 ← P5 P3P5_LINE

Siegbahn X-ray fluorescence line macros

The following table contains the Siegbahn macros: these are all mapped to a corresponding IUPAC macro from the previous table.

Siegbahn notation Siegbahn macro IUPAC macro
Kα1 KA1_LINE KL3_LINE
Kα2 KA2_LINE KL2_LINE
Kα3 KA3_LINE KL1_LINE
Kβ1 KB1_LINE KM3_LINE
Kβ2 KB2_LINE KN3_LINE
Kβ3 KB3_LINE KM2_LINE
Kβ4 KB4_LINE KN5_LINE
Kβ5 KB5_LINE KM5_LINE
Lα1 LA1_LINE L3M5_LINE
Lα2 LA2_LINE L3M4_LINE
Lβ1 LB1_LINE L2M4_LINE
Lβ2 LB2_LINE L3N5_LINE
Lβ3 LB3_LINE L1M3_LINE
Lβ4 LB4_LINE L1M2_LINE
Lβ5 LB5_LINE L3O45_LINE
Lβ6 LB6_LINE L3N1_LINE
Lβ7 LB7_LINE L3O1_LINE
Lβ9 LB9_LINE L1M5_LINE
Lβ10 LB10_LINE L1M4_LINE
Lβ15 LB15_LINE L3N4_LINE
Lβ17 LB17_LINE L2M3_LINE
Lγ1 LG1_LINE L2N4_LINE
Lγ2 LG2_LINE L1N2_LINE
Lγ3 LG3_LINE L1N3_LINE
Lγ4 LG4_LINE L1O3_LINE
Lγ5 LG5_LINE L2N1_LINE
Lγ6 LG6_LINE L2O4_LINE
Lγ8 LG8_LINE L2O1_LINE
Lη LE_LINE L2M1_LINE
Lh LH_LINE L2M1_LINE
Ll LL_LINE L3M1_LINE
Ls LS_LINE L3M3_LINE
Lt LT_LINE L3M2_LINE
Lu LU_LINE L3N6_LINE
Lv LV_LINE L2N6_LINE
Mα1 MA1_LINE M5N7_LINE
Mα2 MA2_LINE M5N6_LINE
Mβ MB_LINE M4N6_LINE
Mγ MG_LINE M3N5_LINE

Obsolete X-ray fluorescence macros

The following macros based on the Siegbahn notation are presented here strictly for the sake of completeness: though it is quite unlikely that they will be removed in future versions, their usage is deprecated. Since they refer to groups of lines you will up receiving values that are calculated as averages or sums over a number of individual lines, which may not have an obvious counterpart in experimental data.

Siegbahn notation Obsolete macro
Kα KA_LINE
Kβ KB_LINE
Lα LA_LINE
Lβ LB_LINE

Shell macros

These macros denote X-ray levels ('shells') conforming with the many-electron description of electronic structure as is commonly used in X-ray spectrometry. They are used in the CS_Photo_Partial, FluorYield, AugerYield, EdgeEnergy, JumpFactor, AtomicLevelWidth, ComptonProfile_Partial and ElectronConfig.

Level Electron configuration Shell macro
K 1s-1 K_SHELL
L1 2s-1 L1_SHELL
L2 2p1/2-1 L2_SHELL
L3 2p3/2-1 L3_SHELL
M1 3s-1 M1_SHELL
M2 3p1/2-1 M2_SHELL
M3 3p3/2-1 M3_SHELL
M4 3d3/2-1 M4_SHELL
M5 3d5/2-1 M5_SHELL
N1 4s-1 N1_SHELL
N2 4p1/2-1 N2_SHELL
N3 4p3/2-1 N3_SHELL
N4 4d3/2-1 N4_SHELL
N5 4d5/2-1 N5_SHELL
N6 4f5/2-1 N6_SHELL
N7 4f7/2-1 N7_SHELL
O1 5s-1 O1_SHELL
O2 5p1/2-1 O2_SHELL
O3 5p3/2-1 O3_SHELL
O4 5d3/2-1 O4_SHELL
O5 5d5/2-1 O5_SHELL
O6 5f5/2-1 O6_SHELL
O7 5f7/2-1 O7_SHELL
P1 6s-1 P1_SHELL
P2 6p1/2-1 P2_SHELL
P3 6p3/2-1 P3_SHELL
P4 6d3/2-1 P4_SHELL
P5 6d5/2-1 P5_SHELL
Q1 7s-1 Q1_SHELL
Q2 7p1/2-1 Q2_SHELL
Q3 7p3/2-1 Q3_SHELL

Coster-Kronig transition macros

The following macros are used to select a specific Coster-Kronig (CK) transition with the CosKronTransProb function. Currently we are only supporting L- and M-shell CK transitions.

Transition CK macro
L1 ← L2 FL12_TRANS
L1 ← L3 FL13_TRANS
L2 ← L3 FL23_TRANS
M1 ← M2 FM12_TRANS
M1 ← M3 FM13_TRANS
M1 ← M4 FM14_TRANS
M1 ← M5 FM15_TRANS
M2 ← M3 FM23_TRANS
M2 ← M4 FM24_TRANS
M2 ← M5 FM25_TRANS
M3 ← M4 FM34_TRANS
M3 ← M5 FM35_TRANS
M4 ← M5 FM45_TRANS

Auger transition macros

The AugerRate function requires one of the following macros as argument. Some of these macros (e.g. L2_L3M1_AUGER) correspond to Coster-Kronig transitions (a special case of the Auger effect), these will return zero. This list contains only those transitions that are relevant for X-ray fluorescence production involving the K-, L- and M-shells: do not expect to find macros like K_N2O3_AUGER although these Auger transitions certainly exist!

Excited shell Ionized shells Auger macro
K L1 & L1 K_L1L1_AUGER
K L1 & L2 K_L1L2_AUGER
K L1 & L3 K_L1L3_AUGER
K L1 & M1 K_L1M1_AUGER
K L1 & M2 K_L1M2_AUGER
K L1 & M3 K_L1M3_AUGER
K L1 & M4 K_L1M4_AUGER
K L1 & M5 K_L1M5_AUGER
K L1 & N1 K_L1N1_AUGER
K L1 & N2 K_L1N2_AUGER
K L1 & N3 K_L1N3_AUGER
K L1 & N4 K_L1N4_AUGER
K L1 & N5 K_L1N5_AUGER
K L1 & N6 K_L1N6_AUGER
K L1 & N7 K_L1N7_AUGER
K L1 & O1 K_L1O1_AUGER
K L1 & O2 K_L1O2_AUGER
K L1 & O3 K_L1O3_AUGER
K L1 & O4 K_L1O4_AUGER
K L1 & O5 K_L1O5_AUGER
K L1 & O6 K_L1O6_AUGER
K L1 & O7 K_L1O7_AUGER
K L1 & P1 K_L1P1_AUGER
K L1 & P2 K_L1P2_AUGER
K L1 & P3 K_L1P3_AUGER
K L1 & P4 K_L1P4_AUGER
K L1 & P5 K_L1P5_AUGER
K L1 & Q1 K_L1Q1_AUGER
K L1 & Q2 K_L1Q2_AUGER
K L1 & Q3 K_L1Q3_AUGER
K L2 & L2 K_L2L2_AUGER
K L2 & L3 K_L2L3_AUGER
K L2 & M1 K_L2M1_AUGER
K L2 & M2 K_L2M2_AUGER
K L2 & M3 K_L2M3_AUGER
K L2 & M4 K_L2M4_AUGER
K L2 & M5 K_L2M5_AUGER
K L2 & N1 K_L2N1_AUGER
K L2 & N2 K_L2N2_AUGER
K L2 & N3 K_L2N3_AUGER
K L2 & N4 K_L2N4_AUGER
K L2 & N5 K_L2N5_AUGER
K L2 & N6 K_L2N6_AUGER
K L2 & N7 K_L2N7_AUGER
K L2 & O1 K_L2O1_AUGER
K L2 & O2 K_L2O2_AUGER
K L2 & O3 K_L2O3_AUGER
K L2 & O4 K_L2O4_AUGER
K L2 & O5 K_L2O5_AUGER
K L2 & O6 K_L2O6_AUGER
K L2 & O7 K_L2O7_AUGER
K L2 & P1 K_L2P1_AUGER
K L2 & P2 K_L2P2_AUGER
K L2 & P3 K_L2P3_AUGER
K L2 & P4 K_L2P4_AUGER
K L2 & P5 K_L2P5_AUGER
K L2 & Q1 K_L2Q1_AUGER
K L2 & Q2 K_L2Q2_AUGER
K L2 & Q3 K_L2Q3_AUGER
K L3 & L3 K_L3L3_AUGER
K L3 & M1 K_L3M1_AUGER
K L3 & M2 K_L3M2_AUGER
K L3 & M3 K_L3M3_AUGER
K L3 & M4 K_L3M4_AUGER
K L3 & M5 K_L3M5_AUGER
K L3 & N1 K_L3N1_AUGER
K L3 & N2 K_L3N2_AUGER
K L3 & N3 K_L3N3_AUGER
K L3 & N4 K_L3N4_AUGER
K L3 & N5 K_L3N5_AUGER
K L3 & N6 K_L3N6_AUGER
K L3 & N7 K_L3N7_AUGER
K L3 & O1 K_L3O1_AUGER
K L3 & O2 K_L3O2_AUGER
K L3 & O3 K_L3O3_AUGER
K L3 & O4 K_L3O4_AUGER
K L3 & O5 K_L3O5_AUGER
K L3 & O6 K_L3O6_AUGER
K L3 & O7 K_L3O7_AUGER
K L3 & P1 K_L3P1_AUGER
K L3 & P2 K_L3P2_AUGER
K L3 & P3 K_L3P3_AUGER
K L3 & P4 K_L3P4_AUGER
K L3 & P5 K_L3P5_AUGER
K L3 & Q1 K_L3Q1_AUGER
K L3 & Q2 K_L3Q2_AUGER
K L3 & Q3 K_L3Q3_AUGER
K M1 & M1 K_M1M1_AUGER
K M1 & M2 K_M1M2_AUGER
K M1 & M3 K_M1M3_AUGER
K M1 & M4 K_M1M4_AUGER
K M1 & M5 K_M1M5_AUGER
K M1 & N1 K_M1N1_AUGER
K M1 & N2 K_M1N2_AUGER
K M1 & N3 K_M1N3_AUGER
K M1 & N4 K_M1N4_AUGER
K M1 & N5 K_M1N5_AUGER
K M1 & N6 K_M1N6_AUGER
K M1 & N7 K_M1N7_AUGER
K M1 & O1 K_M1O1_AUGER
K M1 & O2 K_M1O2_AUGER
K M1 & O3 K_M1O3_AUGER
K M1 & O4 K_M1O4_AUGER
K M1 & O5 K_M1O5_AUGER
K M1 & O6 K_M1O6_AUGER
K M1 & O7 K_M1O7_AUGER
K M1 & P1 K_M1P1_AUGER
K M1 & P2 K_M1P2_AUGER
K M1 & P3 K_M1P3_AUGER
K M1 & P4 K_M1P4_AUGER
K M1 & P5 K_M1P5_AUGER
K M1 & Q1 K_M1Q1_AUGER
K M1 & Q2 K_M1Q2_AUGER
K M1 & Q3 K_M1Q3_AUGER
K M2 & M2 K_M2M2_AUGER
K M2 & M3 K_M2M3_AUGER
K M2 & M4 K_M2M4_AUGER
K M2 & M5 K_M2M5_AUGER
K M2 & N1 K_M2N1_AUGER
K M2 & N2 K_M2N2_AUGER
K M2 & N3 K_M2N3_AUGER
K M2 & N4 K_M2N4_AUGER
K M2 & N5 K_M2N5_AUGER
K M2 & N6 K_M2N6_AUGER
K M2 & N7 K_M2N7_AUGER
K M2 & O1 K_M2O1_AUGER
K M2 & O2 K_M2O2_AUGER
K M2 & O3 K_M2O3_AUGER
K M2 & O4 K_M2O4_AUGER
K M2 & O5 K_M2O5_AUGER
K M2 & O6 K_M2O6_AUGER
K M2 & O7 K_M2O7_AUGER
K M2 & P1 K_M2P1_AUGER
K M2 & P2 K_M2P2_AUGER
K M2 & P3 K_M2P3_AUGER
K M2 & P4 K_M2P4_AUGER
K M2 & P5 K_M2P5_AUGER
K M2 & Q1 K_M2Q1_AUGER
K M2 & Q2 K_M2Q2_AUGER
K M2 & Q3 K_M2Q3_AUGER
K M3 & M3 K_M3M3_AUGER
K M3 & M4 K_M3M4_AUGER
K M3 & M5 K_M3M5_AUGER
K M3 & N1 K_M3N1_AUGER
K M3 & N2 K_M3N2_AUGER
K M3 & N3 K_M3N3_AUGER
K M3 & N4 K_M3N4_AUGER
K M3 & N5 K_M3N5_AUGER
K M3 & N6 K_M3N6_AUGER
K M3 & N7 K_M3N7_AUGER
K M3 & O1 K_M3O1_AUGER
K M3 & O2 K_M3O2_AUGER
K M3 & O3 K_M3O3_AUGER
K M3 & O4 K_M3O4_AUGER
K M3 & O5 K_M3O5_AUGER
K M3 & O6 K_M3O6_AUGER
K M3 & O7 K_M3O7_AUGER
K M3 & P1 K_M3P1_AUGER
K M3 & P2 K_M3P2_AUGER
K M3 & P3 K_M3P3_AUGER
K M3 & P4 K_M3P4_AUGER
K M3 & P5 K_M3P5_AUGER
K M3 & Q1 K_M3Q1_AUGER
K M3 & Q2 K_M3Q2_AUGER
K M3 & Q3 K_M3Q3_AUGER
K M4 & M4 K_M4M4_AUGER
K M4 & M5 K_M4M5_AUGER
K M4 & N1 K_M4N1_AUGER
K M4 & N2 K_M4N2_AUGER
K M4 & N3 K_M4N3_AUGER
K M4 & N4 K_M4N4_AUGER
K M4 & N5 K_M4N5_AUGER
K M4 & N6 K_M4N6_AUGER
K M4 & N7 K_M4N7_AUGER
K M4 & O1 K_M4O1_AUGER
K M4 & O2 K_M4O2_AUGER
K M4 & O3 K_M4O3_AUGER
K M4 & O4 K_M4O4_AUGER
K M4 & O5 K_M4O5_AUGER
K M4 & O6 K_M4O6_AUGER
K M4 & O7 K_M4O7_AUGER
K M4 & P1 K_M4P1_AUGER
K M4 & P2 K_M4P2_AUGER
K M4 & P3 K_M4P3_AUGER
K M4 & P4 K_M4P4_AUGER
K M4 & P5 K_M4P5_AUGER
K M4 & Q1 K_M4Q1_AUGER
K M4 & Q2 K_M4Q2_AUGER
K M4 & Q3 K_M4Q3_AUGER
K M5 & M5 K_M5M5_AUGER
K M5 & N1 K_M5N1_AUGER
K M5 & N2 K_M5N2_AUGER
K M5 & N3 K_M5N3_AUGER
K M5 & N4 K_M5N4_AUGER
K M5 & N5 K_M5N5_AUGER
K M5 & N6 K_M5N6_AUGER
K M5 & N7 K_M5N7_AUGER
K M5 & O1 K_M5O1_AUGER
K M5 & O2 K_M5O2_AUGER
K M5 & O3 K_M5O3_AUGER
K M5 & O4 K_M5O4_AUGER
K M5 & O5 K_M5O5_AUGER
K M5 & O6 K_M5O6_AUGER
K M5 & O7 K_M5O7_AUGER
K M5 & P1 K_M5P1_AUGER
K M5 & P2 K_M5P2_AUGER
K M5 & P3 K_M5P3_AUGER
K M5 & P4 K_M5P4_AUGER
K M5 & P5 K_M5P5_AUGER
K M5 & Q1 K_M5Q1_AUGER
K M5 & Q2 K_M5Q2_AUGER
K M5 & Q3 K_M5Q3_AUGER
L1 L2 & L2 L1_L2L2_AUGER
L1 L2 & L3 L1_L2L3_AUGER
L1 L2 & M1 L1_L2M1_AUGER
L1 L2 & M2 L1_L2M2_AUGER
L1 L2 & M3 L1_L2M3_AUGER
L1 L2 & M4 L1_L2M4_AUGER
L1 L2 & M5 L1_L2M5_AUGER
L1 L2 & N1 L1_L2N1_AUGER
L1 L2 & N2 L1_L2N2_AUGER
L1 L2 & N3 L1_L2N3_AUGER
L1 L2 & N4 L1_L2N4_AUGER
L1 L2 & N5 L1_L2N5_AUGER
L1 L2 & N6 L1_L2N6_AUGER
L1 L2 & N7 L1_L2N7_AUGER
L1 L2 & O1 L1_L2O1_AUGER
L1 L2 & O2 L1_L2O2_AUGER
L1 L2 & O3 L1_L2O3_AUGER
L1 L2 & O4 L1_L2O4_AUGER
L1 L2 & O5 L1_L2O5_AUGER
L1 L2 & O6 L1_L2O6_AUGER
L1 L2 & O7 L1_L2O7_AUGER
L1 L2 & P1 L1_L2P1_AUGER
L1 L2 & P2 L1_L2P2_AUGER
L1 L2 & P3 L1_L2P3_AUGER
L1 L2 & P4 L1_L2P4_AUGER
L1 L2 & P5 L1_L2P5_AUGER
L1 L2 & Q1 L1_L2Q1_AUGER
L1 L2 & Q2 L1_L2Q2_AUGER
L1 L2 & Q3 L1_L2Q3_AUGER
L1 L3 & L2 L1_L3L2_AUGER
L1 L3 & L3 L1_L3L3_AUGER
L1 L3 & M1 L1_L3M1_AUGER
L1 L3 & M2 L1_L3M2_AUGER
L1 L3 & M3 L1_L3M3_AUGER
L1 L3 & M4 L1_L3M4_AUGER
L1 L3 & M5 L1_L3M5_AUGER
L1 L3 & N1 L1_L3N1_AUGER
L1 L3 & N2 L1_L3N2_AUGER
L1 L3 & N3 L1_L3N3_AUGER
L1 L3 & N4 L1_L3N4_AUGER
L1 L3 & N5 L1_L3N5_AUGER
L1 L3 & N6 L1_L3N6_AUGER
L1 L3 & N7 L1_L3N7_AUGER
L1 L3 & O1 L1_L3O1_AUGER
L1 L3 & O2 L1_L3O2_AUGER
L1 L3 & O3 L1_L3O3_AUGER
L1 L3 & O4 L1_L3O4_AUGER
L1 L3 & O5 L1_L3O5_AUGER
L1 L3 & O6 L1_L3O6_AUGER
L1 L3 & O7 L1_L3O7_AUGER
L1 L3 & P1 L1_L3P1_AUGER
L1 L3 & P2 L1_L3P2_AUGER
L1 L3 & P3 L1_L3P3_AUGER
L1 L3 & P4 L1_L3P4_AUGER
L1 L3 & P5 L1_L3P5_AUGER
L1 L3 & Q1 L1_L3Q1_AUGER
L1 L3 & Q2 L1_L3Q2_AUGER
L1 L3 & Q3 L1_L3Q3_AUGER
L1 M1 & L2 L1_M1L2_AUGER
L1 M1 & L3 L1_M1L3_AUGER
L1 M1 & M1 L1_M1M1_AUGER
L1 M1 & M2 L1_M1M2_AUGER
L1 M1 & M3 L1_M1M3_AUGER
L1 M1 & M4 L1_M1M4_AUGER
L1 M1 & M5 L1_M1M5_AUGER
L1 M1 & N1 L1_M1N1_AUGER
L1 M1 & N2 L1_M1N2_AUGER
L1 M1 & N3 L1_M1N3_AUGER
L1 M1 & N4 L1_M1N4_AUGER
L1 M1 & N5 L1_M1N5_AUGER
L1 M1 & N6 L1_M1N6_AUGER
L1 M1 & N7 L1_M1N7_AUGER
L1 M1 & O1 L1_M1O1_AUGER
L1 M1 & O2 L1_M1O2_AUGER
L1 M1 & O3 L1_M1O3_AUGER
L1 M1 & O4 L1_M1O4_AUGER
L1 M1 & O5 L1_M1O5_AUGER
L1 M1 & O6 L1_M1O6_AUGER
L1 M1 & O7 L1_M1O7_AUGER
L1 M1 & P1 L1_M1P1_AUGER
L1 M1 & P2 L1_M1P2_AUGER
L1 M1 & P3 L1_M1P3_AUGER
L1 M1 & P4 L1_M1P4_AUGER
L1 M1 & P5 L1_M1P5_AUGER
L1 M1 & Q1 L1_M1Q1_AUGER
L1 M1 & Q2 L1_M1Q2_AUGER
L1 M1 & Q3 L1_M1Q3_AUGER
L1 M2 & L2 L1_M2L2_AUGER
L1 M2 & L3 L1_M2L3_AUGER
L1 M2 & M1 L1_M2M1_AUGER
L1 M2 & M2 L1_M2M2_AUGER
L1 M2 & M3 L1_M2M3_AUGER
L1 M2 & M4 L1_M2M4_AUGER
L1 M2 & M5 L1_M2M5_AUGER
L1 M2 & N1 L1_M2N1_AUGER
L1 M2 & N2 L1_M2N2_AUGER
L1 M2 & N3 L1_M2N3_AUGER
L1 M2 & N4 L1_M2N4_AUGER
L1 M2 & N5 L1_M2N5_AUGER
L1 M2 & N6 L1_M2N6_AUGER
L1 M2 & N7 L1_M2N7_AUGER
L1 M2 & O1 L1_M2O1_AUGER
L1 M2 & O2 L1_M2O2_AUGER
L1 M2 & O3 L1_M2O3_AUGER
L1 M2 & O4 L1_M2O4_AUGER
L1 M2 & O5 L1_M2O5_AUGER
L1 M2 & O6 L1_M2O6_AUGER
L1 M2 & O7 L1_M2O7_AUGER
L1 M2 & P1 L1_M2P1_AUGER
L1 M2 & P2 L1_M2P2_AUGER
L1 M2 & P3 L1_M2P3_AUGER
L1 M2 & P4 L1_M2P4_AUGER
L1 M2 & P5 L1_M2P5_AUGER
L1 M2 & Q1 L1_M2Q1_AUGER
L1 M2 & Q2 L1_M2Q2_AUGER
L1 M2 & Q3 L1_M2Q3_AUGER
L1 M3 & L2 L1_M3L2_AUGER
L1 M3 & L3 L1_M3L3_AUGER
L1 M3 & M1 L1_M3M1_AUGER
L1 M3 & M2 L1_M3M2_AUGER
L1 M3 & M3 L1_M3M3_AUGER
L1 M3 & M4 L1_M3M4_AUGER
L1 M3 & M5 L1_M3M5_AUGER
L1 M3 & N1 L1_M3N1_AUGER
L1 M3 & N2 L1_M3N2_AUGER
L1 M3 & N3 L1_M3N3_AUGER
L1 M3 & N4 L1_M3N4_AUGER
L1 M3 & N5 L1_M3N5_AUGER
L1 M3 & N6 L1_M3N6_AUGER
L1 M3 & N7 L1_M3N7_AUGER
L1 M3 & O1 L1_M3O1_AUGER
L1 M3 & O2 L1_M3O2_AUGER
L1 M3 & O3 L1_M3O3_AUGER
L1 M3 & O4 L1_M3O4_AUGER
L1 M3 & O5 L1_M3O5_AUGER
L1 M3 & O6 L1_M3O6_AUGER
L1 M3 & O7 L1_M3O7_AUGER
L1 M3 & P1 L1_M3P1_AUGER
L1 M3 & P2 L1_M3P2_AUGER
L1 M3 & P3 L1_M3P3_AUGER
L1 M3 & P4 L1_M3P4_AUGER
L1 M3 & P5 L1_M3P5_AUGER
L1 M3 & Q1 L1_M3Q1_AUGER
L1 M3 & Q2 L1_M3Q2_AUGER
L1 M3 & Q3 L1_M3Q3_AUGER
L1 M4 & L2 L1_M4L2_AUGER
L1 M4 & L3 L1_M4L3_AUGER
L1 M4 & M1 L1_M4M1_AUGER
L1 M4 & M2 L1_M4M2_AUGER
L1 M4 & M3 L1_M4M3_AUGER
L1 M4 & M4 L1_M4M4_AUGER
L1 M4 & M5 L1_M4M5_AUGER
L1 M4 & N1 L1_M4N1_AUGER
L1 M4 & N2 L1_M4N2_AUGER
L1 M4 & N3 L1_M4N3_AUGER
L1 M4 & N4 L1_M4N4_AUGER
L1 M4 & N5 L1_M4N5_AUGER
L1 M4 & N6 L1_M4N6_AUGER
L1 M4 & N7 L1_M4N7_AUGER
L1 M4 & O1 L1_M4O1_AUGER
L1 M4 & O2 L1_M4O2_AUGER
L1 M4 & O3 L1_M4O3_AUGER
L1 M4 & O4 L1_M4O4_AUGER
L1 M4 & O5 L1_M4O5_AUGER
L1 M4 & O6 L1_M4O6_AUGER
L1 M4 & O7 L1_M4O7_AUGER
L1 M4 & P1 L1_M4P1_AUGER
L1 M4 & P2 L1_M4P2_AUGER
L1 M4 & P3 L1_M4P3_AUGER
L1 M4 & P4 L1_M4P4_AUGER
L1 M4 & P5 L1_M4P5_AUGER
L1 M4 & Q1 L1_M4Q1_AUGER
L1 M4 & Q2 L1_M4Q2_AUGER
L1 M4 & Q3 L1_M4Q3_AUGER
L1 M5 & L2 L1_M5L2_AUGER
L1 M5 & L3 L1_M5L3_AUGER
L1 M5 & M1 L1_M5M1_AUGER
L1 M5 & M2 L1_M5M2_AUGER
L1 M5 & M3 L1_M5M3_AUGER
L1 M5 & M4 L1_M5M4_AUGER
L1 M5 & M5 L1_M5M5_AUGER
L1 M5 & N1 L1_M5N1_AUGER
L1 M5 & N2 L1_M5N2_AUGER
L1 M5 & N3 L1_M5N3_AUGER
L1 M5 & N4 L1_M5N4_AUGER
L1 M5 & N5 L1_M5N5_AUGER
L1 M5 & N6 L1_M5N6_AUGER
L1 M5 & N7 L1_M5N7_AUGER
L1 M5 & O1 L1_M5O1_AUGER
L1 M5 & O2 L1_M5O2_AUGER
L1 M5 & O3 L1_M5O3_AUGER
L1 M5 & O4 L1_M5O4_AUGER
L1 M5 & O5 L1_M5O5_AUGER
L1 M5 & O6 L1_M5O6_AUGER
L1 M5 & O7 L1_M5O7_AUGER
L1 M5 & P1 L1_M5P1_AUGER
L1 M5 & P2 L1_M5P2_AUGER
L1 M5 & P3 L1_M5P3_AUGER
L1 M5 & P4 L1_M5P4_AUGER
L1 M5 & P5 L1_M5P5_AUGER
L1 M5 & Q1 L1_M5Q1_AUGER
L1 M5 & Q2 L1_M5Q2_AUGER
L1 M5 & Q3 L1_M5Q3_AUGER
L2 L3 & L3 L2_L3L3_AUGER
L2 L3 & M1 L2_L3M1_AUGER
L2 L3 & M2 L2_L3M2_AUGER
L2 L3 & M3 L2_L3M3_AUGER
L2 L3 & M4 L2_L3M4_AUGER
L2 L3 & M5 L2_L3M5_AUGER
L2 L3 & N1 L2_L3N1_AUGER
L2 L3 & N2 L2_L3N2_AUGER
L2 L3 & N3 L2_L3N3_AUGER
L2 L3 & N4 L2_L3N4_AUGER
L2 L3 & N5 L2_L3N5_AUGER
L2 L3 & N6 L2_L3N6_AUGER
L2 L3 & N7 L2_L3N7_AUGER
L2 L3 & O1 L2_L3O1_AUGER
L2 L3 & O2 L2_L3O2_AUGER
L2 L3 & O3 L2_L3O3_AUGER
L2 L3 & O4 L2_L3O4_AUGER
L2 L3 & O5 L2_L3O5_AUGER
L2 L3 & O6 L2_L3O6_AUGER
L2 L3 & O7 L2_L3O7_AUGER
L2 L3 & P1 L2_L3P1_AUGER
L2 L3 & P2 L2_L3P2_AUGER
L2 L3 & P3 L2_L3P3_AUGER
L2 L3 & P4 L2_L3P4_AUGER
L2 L3 & P5 L2_L3P5_AUGER
L2 L3 & Q1 L2_L3Q1_AUGER
L2 L3 & Q2 L2_L3Q2_AUGER
L2 L3 & Q3 L2_L3Q3_AUGER
L2 M1 & M1 L2_M1M1_AUGER
L2 M1 & M2 L2_M1M2_AUGER
L2 M1 & M3 L2_M1M3_AUGER
L2 M1 & M4 L2_M1M4_AUGER
L2 M1 & M5 L2_M1M5_AUGER
L2 M1 & N1 L2_M1N1_AUGER
L2 M1 & N2 L2_M1N2_AUGER
L2 M1 & N3 L2_M1N3_AUGER
L2 M1 & N4 L2_M1N4_AUGER
L2 M1 & N5 L2_M1N5_AUGER
L2 M1 & N6 L2_M1N6_AUGER
L2 M1 & N7 L2_M1N7_AUGER
L2 M1 & O1 L2_M1O1_AUGER
L2 M1 & O2 L2_M1O2_AUGER
L2 M1 & O3 L2_M1O3_AUGER
L2 M1 & O4 L2_M1O4_AUGER
L2 M1 & O5 L2_M1O5_AUGER
L2 M1 & O6 L2_M1O6_AUGER
L2 M1 & O7 L2_M1O7_AUGER
L2 M1 & P1 L2_M1P1_AUGER
L2 M1 & P2 L2_M1P2_AUGER
L2 M1 & P3 L2_M1P3_AUGER
L2 M1 & P4 L2_M1P4_AUGER
L2 M1 & P5 L2_M1P5_AUGER
L2 M1 & Q1 L2_M1Q1_AUGER
L2 M1 & Q2 L2_M1Q2_AUGER
L2 M1 & Q3 L2_M1Q3_AUGER
L2 M2 & L3 L2_M2L3_AUGER
L2 M2 & M1 L2_M2M1_AUGER
L2 M2 & M2 L2_M2M2_AUGER
L2 M2 & M3 L2_M2M3_AUGER
L2 M2 & M4 L2_M2M4_AUGER
L2 M2 & M5 L2_M2M5_AUGER
L2 M2 & N1 L2_M2N1_AUGER
L2 M2 & N2 L2_M2N2_AUGER
L2 M2 & N3 L2_M2N3_AUGER
L2 M2 & N4 L2_M2N4_AUGER
L2 M2 & N5 L2_M2N5_AUGER
L2 M2 & N6 L2_M2N6_AUGER
L2 M2 & N7 L2_M2N7_AUGER
L2 M2 & O1 L2_M2O1_AUGER
L2 M2 & O2 L2_M2O2_AUGER
L2 M2 & O3 L2_M2O3_AUGER
L2 M2 & O4 L2_M2O4_AUGER
L2 M2 & O5 L2_M2O5_AUGER
L2 M2 & O6 L2_M2O6_AUGER
L2 M2 & O7 L2_M2O7_AUGER
L2 M2 & P1 L2_M2P1_AUGER
L2 M2 & P2 L2_M2P2_AUGER
L2 M2 & P3 L2_M2P3_AUGER
L2 M2 & P4 L2_M2P4_AUGER
L2 M2 & P5 L2_M2P5_AUGER
L2 M2 & Q1 L2_M2Q1_AUGER
L2 M2 & Q2 L2_M2Q2_AUGER
L2 M2 & Q3 L2_M2Q3_AUGER
L2 M3 & L3 L2_M3L3_AUGER
L2 M3 & M1 L2_M3M1_AUGER
L2 M3 & M2 L2_M3M2_AUGER
L2 M3 & M3 L2_M3M3_AUGER
L2 M3 & M4 L2_M3M4_AUGER
L2 M3 & M5 L2_M3M5_AUGER
L2 M3 & N1 L2_M3N1_AUGER
L2 M3 & N2 L2_M3N2_AUGER
L2 M3 & N3 L2_M3N3_AUGER
L2 M3 & N4 L2_M3N4_AUGER
L2 M3 & N5 L2_M3N5_AUGER
L2 M3 & N6 L2_M3N6_AUGER
L2 M3 & N7 L2_M3N7_AUGER
L2 M3 & O1 L2_M3O1_AUGER
L2 M3 & O2 L2_M3O2_AUGER
L2 M3 & O3 L2_M3O3_AUGER
L2 M3 & O4 L2_M3O4_AUGER
L2 M3 & O5 L2_M3O5_AUGER
L2 M3 & O6 L2_M3O6_AUGER
L2 M3 & O7 L2_M3O7_AUGER
L2 M3 & P1 L2_M3P1_AUGER
L2 M3 & P2 L2_M3P2_AUGER
L2 M3 & P3 L2_M3P3_AUGER
L2 M3 & P4 L2_M3P4_AUGER
L2 M3 & P5 L2_M3P5_AUGER
L2 M3 & Q1 L2_M3Q1_AUGER
L2 M3 & Q2 L2_M3Q2_AUGER
L2 M3 & Q3 L2_M3Q3_AUGER
L2 M4 & L3 L2_M4L3_AUGER
L2 M4 & M1 L2_M4M1_AUGER
L2 M4 & M2 L2_M4M2_AUGER
L2 M4 & M3 L2_M4M3_AUGER
L2 M4 & M4 L2_M4M4_AUGER
L2 M4 & M5 L2_M4M5_AUGER
L2 M4 & N1 L2_M4N1_AUGER
L2 M4 & N2 L2_M4N2_AUGER
L2 M4 & N3 L2_M4N3_AUGER
L2 M4 & N4 L2_M4N4_AUGER
L2 M4 & N5 L2_M4N5_AUGER
L2 M4 & N6 L2_M4N6_AUGER
L2 M4 & N7 L2_M4N7_AUGER
L2 M4 & O1 L2_M4O1_AUGER
L2 M4 & O2 L2_M4O2_AUGER
L2 M4 & O3 L2_M4O3_AUGER
L2 M4 & O4 L2_M4O4_AUGER
L2 M4 & O5 L2_M4O5_AUGER
L2 M4 & O6 L2_M4O6_AUGER
L2 M4 & O7 L2_M4O7_AUGER
L2 M4 & P1 L2_M4P1_AUGER
L2 M4 & P2 L2_M4P2_AUGER
L2 M4 & P3 L2_M4P3_AUGER
L2 M4 & P4 L2_M4P4_AUGER
L2 M4 & P5 L2_M4P5_AUGER
L2 M4 & Q1 L2_M4Q1_AUGER
L2 M4 & Q2 L2_M4Q2_AUGER
L2 M4 & Q3 L2_M4Q3_AUGER
L2 M5 & L3 L2_M5L3_AUGER
L2 M5 & M1 L2_M5M1_AUGER
L2 M5 & M2 L2_M5M2_AUGER
L2 M5 & M3 L2_M5M3_AUGER
L2 M5 & M4 L2_M5M4_AUGER
L2 M5 & M5 L2_M5M5_AUGER
L2 M5 & N1 L2_M5N1_AUGER
L2 M5 & N2 L2_M5N2_AUGER
L2 M5 & N3 L2_M5N3_AUGER
L2 M5 & N4 L2_M5N4_AUGER
L2 M5 & N5 L2_M5N5_AUGER
L2 M5 & N6 L2_M5N6_AUGER
L2 M5 & N7 L2_M5N7_AUGER
L2 M5 & O1 L2_M5O1_AUGER
L2 M5 & O2 L2_M5O2_AUGER
L2 M5 & O3 L2_M5O3_AUGER
L2 M5 & O4 L2_M5O4_AUGER
L2 M5 & O5 L2_M5O5_AUGER
L2 M5 & O6 L2_M5O6_AUGER
L2 M5 & O7 L2_M5O7_AUGER
L2 M5 & P1 L2_M5P1_AUGER
L2 M5 & P2 L2_M5P2_AUGER
L2 M5 & P3 L2_M5P3_AUGER
L2 M5 & P4 L2_M5P4_AUGER
L2 M5 & P5 L2_M5P5_AUGER
L2 M5 & Q1 L2_M5Q1_AUGER
L2 M5 & Q2 L2_M5Q2_AUGER
L2 M5 & Q3 L2_M5Q3_AUGER
L3 M1 & M1 L3_M1M1_AUGER
L3 M1 & M2 L3_M1M2_AUGER
L3 M1 & M3 L3_M1M3_AUGER
L3 M1 & M4 L3_M1M4_AUGER
L3 M1 & M5 L3_M1M5_AUGER
L3 M1 & N1 L3_M1N1_AUGER
L3 M1 & N2 L3_M1N2_AUGER
L3 M1 & N3 L3_M1N3_AUGER
L3 M1 & N4 L3_M1N4_AUGER
L3 M1 & N5 L3_M1N5_AUGER
L3 M1 & N6 L3_M1N6_AUGER
L3 M1 & N7 L3_M1N7_AUGER
L3 M1 & O1 L3_M1O1_AUGER
L3 M1 & O2 L3_M1O2_AUGER
L3 M1 & O3 L3_M1O3_AUGER
L3 M1 & O4 L3_M1O4_AUGER
L3 M1 & O5 L3_M1O5_AUGER
L3 M1 & O6 L3_M1O6_AUGER
L3 M1 & O7 L3_M1O7_AUGER
L3 M1 & P1 L3_M1P1_AUGER
L3 M1 & P2 L3_M1P2_AUGER
L3 M1 & P3 L3_M1P3_AUGER
L3 M1 & P4 L3_M1P4_AUGER
L3 M1 & P5 L3_M1P5_AUGER
L3 M1 & Q1 L3_M1Q1_AUGER
L3 M1 & Q2 L3_M1Q2_AUGER
L3 M1 & Q3 L3_M1Q3_AUGER
L3 M2 & M1 L3_M2M1_AUGER
L3 M2 & M2 L3_M2M2_AUGER
L3 M2 & M3 L3_M2M3_AUGER
L3 M2 & M4 L3_M2M4_AUGER
L3 M2 & M5 L3_M2M5_AUGER
L3 M2 & N1 L3_M2N1_AUGER
L3 M2 & N2 L3_M2N2_AUGER
L3 M2 & N3 L3_M2N3_AUGER
L3 M2 & N4 L3_M2N4_AUGER
L3 M2 & N5 L3_M2N5_AUGER
L3 M2 & N6 L3_M2N6_AUGER
L3 M2 & N7 L3_M2N7_AUGER
L3 M2 & O1 L3_M2O1_AUGER
L3 M2 & O2 L3_M2O2_AUGER
L3 M2 & O3 L3_M2O3_AUGER
L3 M2 & O4 L3_M2O4_AUGER
L3 M2 & O5 L3_M2O5_AUGER
L3 M2 & O6 L3_M2O6_AUGER
L3 M2 & O7 L3_M2O7_AUGER
L3 M2 & P1 L3_M2P1_AUGER
L3 M2 & P2 L3_M2P2_AUGER
L3 M2 & P3 L3_M2P3_AUGER
L3 M2 & P4 L3_M2P4_AUGER
L3 M2 & P5 L3_M2P5_AUGER
L3 M2 & Q1 L3_M2Q1_AUGER
L3 M2 & Q2 L3_M2Q2_AUGER
L3 M2 & Q3 L3_M2Q3_AUGER
L3 M3 & M1 L3_M3M1_AUGER
L3 M3 & M2 L3_M3M2_AUGER
L3 M3 & M3 L3_M3M3_AUGER
L3 M3 & M4 L3_M3M4_AUGER
L3 M3 & M5 L3_M3M5_AUGER
L3 M3 & N1 L3_M3N1_AUGER
L3 M3 & N2 L3_M3N2_AUGER
L3 M3 & N3 L3_M3N3_AUGER
L3 M3 & N4 L3_M3N4_AUGER
L3 M3 & N5 L3_M3N5_AUGER
L3 M3 & N6 L3_M3N6_AUGER
L3 M3 & N7 L3_M3N7_AUGER
L3 M3 & O1 L3_M3O1_AUGER
L3 M3 & O2 L3_M3O2_AUGER
L3 M3 & O3 L3_M3O3_AUGER
L3 M3 & O4 L3_M3O4_AUGER
L3 M3 & O5 L3_M3O5_AUGER
L3 M3 & O6 L3_M3O6_AUGER
L3 M3 & O7 L3_M3O7_AUGER
L3 M3 & P1 L3_M3P1_AUGER
L3 M3 & P2 L3_M3P2_AUGER
L3 M3 & P3 L3_M3P3_AUGER
L3 M3 & P4 L3_M3P4_AUGER
L3 M3 & P5 L3_M3P5_AUGER
L3 M3 & Q1 L3_M3Q1_AUGER
L3 M3 & Q2 L3_M3Q2_AUGER
L3 M3 & Q3 L3_M3Q3_AUGER
L3 M4 & M1 L3_M4M1_AUGER
L3 M4 & M2 L3_M4M2_AUGER
L3 M4 & M3 L3_M4M3_AUGER
L3 M4 & M4 L3_M4M4_AUGER
L3 M4 & M5 L3_M4M5_AUGER
L3 M4 & N1 L3_M4N1_AUGER
L3 M4 & N2 L3_M4N2_AUGER
L3 M4 & N3 L3_M4N3_AUGER
L3 M4 & N4 L3_M4N4_AUGER
L3 M4 & N5 L3_M4N5_AUGER
L3 M4 & N6 L3_M4N6_AUGER
L3 M4 & N7 L3_M4N7_AUGER
L3 M4 & O1 L3_M4O1_AUGER
L3 M4 & O2 L3_M4O2_AUGER
L3 M4 & O3 L3_M4O3_AUGER
L3 M4 & O4 L3_M4O4_AUGER
L3 M4 & O5 L3_M4O5_AUGER
L3 M4 & O6 L3_M4O6_AUGER
L3 M4 & O7 L3_M4O7_AUGER
L3 M4 & P1 L3_M4P1_AUGER
L3 M4 & P2 L3_M4P2_AUGER
L3 M4 & P3 L3_M4P3_AUGER
L3 M4 & P4 L3_M4P4_AUGER
L3 M4 & P5 L3_M4P5_AUGER
L3 M4 & Q1 L3_M4Q1_AUGER
L3 M4 & Q2 L3_M4Q2_AUGER
L3 M4 & Q3 L3_M4Q3_AUGER
L3 M5 & M1 L3_M5M1_AUGER
L3 M5 & M2 L3_M5M2_AUGER
L3 M5 & M3 L3_M5M3_AUGER
L3 M5 & M4 L3_M5M4_AUGER
L3 M5 & M5 L3_M5M5_AUGER
L3 M5 & N1 L3_M5N1_AUGER
L3 M5 & N2 L3_M5N2_AUGER
L3 M5 & N3 L3_M5N3_AUGER
L3 M5 & N4 L3_M5N4_AUGER
L3 M5 & N5 L3_M5N5_AUGER
L3 M5 & N6 L3_M5N6_AUGER
L3 M5 & N7 L3_M5N7_AUGER
L3 M5 & O1 L3_M5O1_AUGER
L3 M5 & O2 L3_M5O2_AUGER
L3 M5 & O3 L3_M5O3_AUGER
L3 M5 & O4 L3_M5O4_AUGER
L3 M5 & O5 L3_M5O5_AUGER
L3 M5 & O6 L3_M5O6_AUGER
L3 M5 & O7 L3_M5O7_AUGER
L3 M5 & P1 L3_M5P1_AUGER
L3 M5 & P2 L3_M5P2_AUGER
L3 M5 & P3 L3_M5P3_AUGER
L3 M5 & P4 L3_M5P4_AUGER
L3 M5 & P5 L3_M5P5_AUGER
L3 M5 & Q1 L3_M5Q1_AUGER
L3 M5 & Q2 L3_M5Q2_AUGER
L3 M5 & Q3 L3_M5Q3_AUGER
M1 M2 & M2 M1_M2M2_AUGER
M1 M2 & M3 M1_M2M3_AUGER
M1 M2 & M4 M1_M2M4_AUGER
M1 M2 & M5 M1_M2M5_AUGER
M1 M2 & N1 M1_M2N1_AUGER
M1 M2 & N2 M1_M2N2_AUGER
M1 M2 & N3 M1_M2N3_AUGER
M1 M2 & N4 M1_M2N4_AUGER
M1 M2 & N5 M1_M2N5_AUGER
M1 M2 & N6 M1_M2N6_AUGER
M1 M2 & N7 M1_M2N7_AUGER
M1 M2 & O1 M1_M2O1_AUGER
M1 M2 & O2 M1_M2O2_AUGER
M1 M2 & O3 M1_M2O3_AUGER
M1 M2 & O4 M1_M2O4_AUGER
M1 M2 & O5 M1_M2O5_AUGER
M1 M2 & O6 M1_M2O6_AUGER
M1 M2 & O7 M1_M2O7_AUGER
M1 M2 & P1 M1_M2P1_AUGER
M1 M2 & P2 M1_M2P2_AUGER
M1 M2 & P3 M1_M2P3_AUGER
M1 M2 & P4 M1_M2P4_AUGER
M1 M2 & P5 M1_M2P5_AUGER
M1 M2 & Q1 M1_M2Q1_AUGER
M1 M2 & Q2 M1_M2Q2_AUGER
M1 M2 & Q3 M1_M2Q3_AUGER
M1 M3 & M2 M1_M3M2_AUGER
M1 M3 & M3 M1_M3M3_AUGER
M1 M3 & M4 M1_M3M4_AUGER
M1 M3 & M5 M1_M3M5_AUGER
M1 M3 & N1 M1_M3N1_AUGER
M1 M3 & N2 M1_M3N2_AUGER
M1 M3 & N3 M1_M3N3_AUGER
M1 M3 & N4 M1_M3N4_AUGER
M1 M3 & N5 M1_M3N5_AUGER
M1 M3 & N6 M1_M3N6_AUGER
M1 M3 & N7 M1_M3N7_AUGER
M1 M3 & O1 M1_M3O1_AUGER
M1 M3 & O2 M1_M3O2_AUGER
M1 M3 & O3 M1_M3O3_AUGER
M1 M3 & O4 M1_M3O4_AUGER
M1 M3 & O5 M1_M3O5_AUGER
M1 M3 & O6 M1_M3O6_AUGER
M1 M3 & O7 M1_M3O7_AUGER
M1 M3 & P1 M1_M3P1_AUGER
M1 M3 & P2 M1_M3P2_AUGER
M1 M3 & P3 M1_M3P3_AUGER
M1 M3 & P4 M1_M3P4_AUGER
M1 M3 & P5 M1_M3P5_AUGER
M1 M3 & Q1 M1_M3Q1_AUGER
M1 M3 & Q2 M1_M3Q2_AUGER
M1 M3 & Q3 M1_M3Q3_AUGER
M1 M4 & M2 M1_M4M2_AUGER
M1 M4 & M3 M1_M4M3_AUGER
M1 M4 & M4 M1_M4M4_AUGER
M1 M4 & M5 M1_M4M5_AUGER
M1 M4 & N1 M1_M4N1_AUGER
M1 M4 & N2 M1_M4N2_AUGER
M1 M4 & N3 M1_M4N3_AUGER
M1 M4 & N4 M1_M4N4_AUGER
M1 M4 & N5 M1_M4N5_AUGER
M1 M4 & N6 M1_M4N6_AUGER
M1 M4 & N7 M1_M4N7_AUGER
M1 M4 & O1 M1_M4O1_AUGER
M1 M4 & O2 M1_M4O2_AUGER
M1 M4 & O3 M1_M4O3_AUGER
M1 M4 & O4 M1_M4O4_AUGER
M1 M4 & O5 M1_M4O5_AUGER
M1 M4 & O6 M1_M4O6_AUGER
M1 M4 & O7 M1_M4O7_AUGER
M1 M4 & P1 M1_M4P1_AUGER
M1 M4 & P2 M1_M4P2_AUGER
M1 M4 & P3 M1_M4P3_AUGER
M1 M4 & P4 M1_M4P4_AUGER
M1 M4 & P5 M1_M4P5_AUGER
M1 M4 & Q1 M1_M4Q1_AUGER
M1 M4 & Q2 M1_M4Q2_AUGER
M1 M4 & Q3 M1_M4Q3_AUGER
M1 M5 & M2 M1_M5M2_AUGER
M1 M5 & M3 M1_M5M3_AUGER
M1 M5 & M4 M1_M5M4_AUGER
M1 M5 & M5 M1_M5M5_AUGER
M1 M5 & N1 M1_M5N1_AUGER
M1 M5 & N2 M1_M5N2_AUGER
M1 M5 & N3 M1_M5N3_AUGER
M1 M5 & N4 M1_M5N4_AUGER
M1 M5 & N5 M1_M5N5_AUGER
M1 M5 & N6 M1_M5N6_AUGER
M1 M5 & N7 M1_M5N7_AUGER
M1 M5 & O1 M1_M5O1_AUGER
M1 M5 & O2 M1_M5O2_AUGER
M1 M5 & O3 M1_M5O3_AUGER
M1 M5 & O4 M1_M5O4_AUGER
M1 M5 & O5 M1_M5O5_AUGER
M1 M5 & O6 M1_M5O6_AUGER
M1 M5 & O7 M1_M5O7_AUGER
M1 M5 & P1 M1_M5P1_AUGER
M1 M5 & P2 M1_M5P2_AUGER
M1 M5 & P3 M1_M5P3_AUGER
M1 M5 & P4 M1_M5P4_AUGER
M1 M5 & P5 M1_M5P5_AUGER
M1 M5 & Q1 M1_M5Q1_AUGER
M1 M5 & Q2 M1_M5Q2_AUGER
M1 M5 & Q3 M1_M5Q3_AUGER
M2 M3 & M3 M2_M3M3_AUGER
M2 M3 & M4 M2_M3M4_AUGER
M2 M3 & M5 M2_M3M5_AUGER
M2 M3 & N1 M2_M3N1_AUGER
M2 M3 & N2 M2_M3N2_AUGER
M2 M3 & N3 M2_M3N3_AUGER
M2 M3 & N4 M2_M3N4_AUGER
M2 M3 & N5 M2_M3N5_AUGER
M2 M3 & N6 M2_M3N6_AUGER
M2 M3 & N7 M2_M3N7_AUGER
M2 M3 & O1 M2_M3O1_AUGER
M2 M3 & O2 M2_M3O2_AUGER
M2 M3 & O3 M2_M3O3_AUGER
M2 M3 & O4 M2_M3O4_AUGER
M2 M3 & O5 M2_M3O5_AUGER
M2 M3 & O6 M2_M3O6_AUGER
M2 M3 & O7 M2_M3O7_AUGER
M2 M3 & P1 M2_M3P1_AUGER
M2 M3 & P2 M2_M3P2_AUGER
M2 M3 & P3 M2_M3P3_AUGER
M2 M3 & P4 M2_M3P4_AUGER
M2 M3 & P5 M2_M3P5_AUGER
M2 M3 & Q1 M2_M3Q1_AUGER
M2 M3 & Q2 M2_M3Q2_AUGER
M2 M3 & Q3 M2_M3Q3_AUGER
M2 M4 & M3 M2_M4M3_AUGER
M2 M4 & M4 M2_M4M4_AUGER
M2 M4 & M5 M2_M4M5_AUGER
M2 M4 & N1 M2_M4N1_AUGER
M2 M4 & N2 M2_M4N2_AUGER
M2 M4 & N3 M2_M4N3_AUGER
M2 M4 & N4 M2_M4N4_AUGER
M2 M4 & N5 M2_M4N5_AUGER
M2 M4 & N6 M2_M4N6_AUGER
M2 M4 & N7 M2_M4N7_AUGER
M2 M4 & O1 M2_M4O1_AUGER
M2 M4 & O2 M2_M4O2_AUGER
M2 M4 & O3 M2_M4O3_AUGER
M2 M4 & O4 M2_M4O4_AUGER
M2 M4 & O5 M2_M4O5_AUGER
M2 M4 & O6 M2_M4O6_AUGER
M2 M4 & O7 M2_M4O7_AUGER
M2 M4 & P1 M2_M4P1_AUGER
M2 M4 & P2 M2_M4P2_AUGER
M2 M4 & P3 M2_M4P3_AUGER
M2 M4 & P4 M2_M4P4_AUGER
M2 M4 & P5 M2_M4P5_AUGER
M2 M4 & Q1 M2_M4Q1_AUGER
M2 M4 & Q2 M2_M4Q2_AUGER
M2 M4 & Q3 M2_M4Q3_AUGER
M2 M5 & M3 M2_M5M3_AUGER
M2 M5 & M4 M2_M5M4_AUGER
M2 M5 & M5 M2_M5M5_AUGER
M2 M5 & N1 M2_M5N1_AUGER
M2 M5 & N2 M2_M5N2_AUGER
M2 M5 & N3 M2_M5N3_AUGER
M2 M5 & N4 M2_M5N4_AUGER
M2 M5 & N5 M2_M5N5_AUGER
M2 M5 & N6 M2_M5N6_AUGER
M2 M5 & N7 M2_M5N7_AUGER
M2 M5 & O1 M2_M5O1_AUGER
M2 M5 & O2 M2_M5O2_AUGER
M2 M5 & O3 M2_M5O3_AUGER
M2 M5 & O4 M2_M5O4_AUGER
M2 M5 & O5 M2_M5O5_AUGER
M2 M5 & O6 M2_M5O6_AUGER
M2 M5 & O7 M2_M5O7_AUGER
M2 M5 & P1 M2_M5P1_AUGER
M2 M5 & P2 M2_M5P2_AUGER
M2 M5 & P3 M2_M5P3_AUGER
M2 M5 & P4 M2_M5P4_AUGER
M2 M5 & P5 M2_M5P5_AUGER
M2 M5 & Q1 M2_M5Q1_AUGER
M2 M5 & Q2 M2_M5Q2_AUGER
M2 M5 & Q3 M2_M5Q3_AUGER
M3 M4 & M4 M3_M4M4_AUGER
M3 M4 & M5 M3_M4M5_AUGER
M3 M4 & N1 M3_M4N1_AUGER
M3 M4 & N2 M3_M4N2_AUGER
M3 M4 & N3 M3_M4N3_AUGER
M3 M4 & N4 M3_M4N4_AUGER
M3 M4 & N5 M3_M4N5_AUGER
M3 M4 & N6 M3_M4N6_AUGER
M3 M4 & N7 M3_M4N7_AUGER
M3 M4 & O1 M3_M4O1_AUGER
M3 M4 & O2 M3_M4O2_AUGER
M3 M4 & O3 M3_M4O3_AUGER
M3 M4 & O4 M3_M4O4_AUGER
M3 M4 & O5 M3_M4O5_AUGER
M3 M4 & O6 M3_M4O6_AUGER
M3 M4 & O7 M3_M4O7_AUGER
M3 M4 & P1 M3_M4P1_AUGER
M3 M4 & P2 M3_M4P2_AUGER
M3 M4 & P3 M3_M4P3_AUGER
M3 M4 & P4 M3_M4P4_AUGER
M3 M4 & P5 M3_M4P5_AUGER
M3 M4 & Q1 M3_M4Q1_AUGER
M3 M4 & Q2 M3_M4Q2_AUGER
M3 M4 & Q3 M3_M4Q3_AUGER
M3 M5 & M4 M3_M5M4_AUGER
M3 M5 & M5 M3_M5M5_AUGER
M3 M5 & N1 M3_M5N1_AUGER
M3 M5 & N2 M3_M5N2_AUGER
M3 M5 & N3 M3_M5N3_AUGER
M3 M5 & N4 M3_M5N4_AUGER
M3 M5 & N5 M3_M5N5_AUGER
M3 M5 & N6 M3_M5N6_AUGER
M3 M5 & N7 M3_M5N7_AUGER
M3 M5 & O1 M3_M5O1_AUGER
M3 M5 & O2 M3_M5O2_AUGER
M3 M5 & O3 M3_M5O3_AUGER
M3 M5 & O4 M3_M5O4_AUGER
M3 M5 & O5 M3_M5O5_AUGER
M3 M5 & O6 M3_M5O6_AUGER
M3 M5 & O7 M3_M5O7_AUGER
M3 M5 & P1 M3_M5P1_AUGER
M3 M5 & P2 M3_M5P2_AUGER
M3 M5 & P3 M3_M5P3_AUGER
M3 M5 & P4 M3_M5P4_AUGER
M3 M5 & P5 M3_M5P5_AUGER
M3 M5 & Q1 M3_M5Q1_AUGER
M3 M5 & Q2 M3_M5Q2_AUGER
M3 M5 & Q3 M3_M5Q3_AUGER
M4 M5 & M5 M4_M5M5_AUGER
M4 M5 & N1 M4_M5N1_AUGER
M4 M5 & N2 M4_M5N2_AUGER
M4 M5 & N3 M4_M5N3_AUGER
M4 M5 & N4 M4_M5N4_AUGER
M4 M5 & N5 M4_M5N5_AUGER
M4 M5 & N6 M4_M5N6_AUGER
M4 M5 & N7 M4_M5N7_AUGER
M4 M5 & O1 M4_M5O1_AUGER
M4 M5 & O2 M4_M5O2_AUGER
M4 M5 & O3 M4_M5O3_AUGER
M4 M5 & O4 M4_M5O4_AUGER
M4 M5 & O5 M4_M5O5_AUGER
M4 M5 & O6 M4_M5O6_AUGER
M4 M5 & O7 M4_M5O7_AUGER
M4 M5 & P1 M4_M5P1_AUGER
M4 M5 & P2 M4_M5P2_AUGER
M4 M5 & P3 M4_M5P3_AUGER
M4 M5 & P4 M4_M5P4_AUGER
M4 M5 & P5 M4_M5P5_AUGER
M4 M5 & Q1 M4_M5Q1_AUGER
M4 M5 & Q2 M4_M5Q2_AUGER
M4 M5 & Q3 M4_M5Q3_AUGER

NIST compound catalog macros

The functions GetCompoundDataNISTByIndex and GetCompoundDataNISTByName provide access to the compositions of a large number of commonly used compounds, obtained from the NIST website. The following table has two columns: the first for the macros that are intended to be used as argument to GetCompoundDataNISTByIndex, while the second contains the names that should be provided to the GetCompoundDataNISTByName function, as well as the cross section functions with the _CP suffix. The list of names in the second column is identical to the array of strings that can be queried using GetCompoundDataNISTList.

NIST compound catalog macro NIST compound catalog name
NIST_COMPOUND_A_150_TISSUE_EQUIVALENT_PLASTIC A-150 Tissue-Equivalent Plastic
NIST_COMPOUND_ACETONE Acetone
NIST_COMPOUND_ACETYLENE Acetylene
NIST_COMPOUND_ADENINE Adenine
NIST_COMPOUND_ADIPOSE_TISSUE_ICRP Adipose Tissue (ICRP)
NIST_COMPOUND_AIR_DRY_NEAR_SEA_LEVEL Air, Dry (near sea level)
NIST_COMPOUND_ALANINE Alanine
NIST_COMPOUND_ALUMINUM_OXIDE Aluminum Oxide
NIST_COMPOUND_AMBER Amber
NIST_COMPOUND_AMMONIA Ammonia
NIST_COMPOUND_ANILINE Aniline
NIST_COMPOUND_ANTHRACENE Anthracene
NIST_COMPOUND_B_100_BONE_EQUIVALENT_PLASTIC B-100 Bone-Equivalent Plastic
NIST_COMPOUND_BAKELITE Bakelite
NIST_COMPOUND_BARIUM_FLUORIDE Barium Fluoride
NIST_COMPOUND_BARIUM_SULFATE Barium Sulfate
NIST_COMPOUND_BENZENE Benzene
NIST_COMPOUND_BERYLLIUM_OXIDE Beryllium oxide
NIST_COMPOUND_BISMUTH_GERMANIUM_OXIDE Bismuth Germanium oxide
NIST_COMPOUND_BLOOD_ICRP Blood (ICRP)
NIST_COMPOUND_BONE_COMPACT_ICRU Bone, Compact (ICRU)
NIST_COMPOUND_BONE_CORTICAL_ICRP Bone, Cortical (ICRP)
NIST_COMPOUND_BORON_CARBIDE Boron Carbide
NIST_COMPOUND_BORON_OXIDE Boron Oxide
NIST_COMPOUND_BRAIN_ICRP Brain (ICRP)
NIST_COMPOUND_BUTANE Butane
NIST_COMPOUND_N_BUTYL_ALCOHOL N-Butyl Alcohol
NIST_COMPOUND_C_552_AIR_EQUIVALENT_PLASTIC C-552 Air-Equivalent Plastic
NIST_COMPOUND_CADMIUM_TELLURIDE Cadmium Telluride
NIST_COMPOUND_CADMIUM_TUNGSTATE Cadmium Tungstate
NIST_COMPOUND_CALCIUM_CARBONATE Calcium Carbonate
NIST_COMPOUND_CALCIUM_FLUORIDE Calcium Fluoride
NIST_COMPOUND_CALCIUM_OXIDE Calcium Oxide
NIST_COMPOUND_CALCIUM_SULFATE Calcium Sulfate
NIST_COMPOUND_CALCIUM_TUNGSTATE Calcium Tungstate
NIST_COMPOUND_CARBON_DIOXIDE Carbon Dioxide
NIST_COMPOUND_CARBON_TETRACHLORIDE Carbon Tetrachloride
NIST_COMPOUND_CELLULOSE_ACETATE_CELLOPHANE Cellulose Acetate, Cellophane
NIST_COMPOUND_CELLULOSE_ACETATE_BUTYRATE Cellulose Acetate Butyrate
NIST_COMPOUND_CELLULOSE_NITRATE Cellulose Nitrate
NIST_COMPOUND_CERIC_SULFATE_DOSIMETER_SOLUTION Ceric Sulfate Dosimeter Solution
NIST_COMPOUND_CESIUM_FLUORIDE Cesium Fluoride
NIST_COMPOUND_CESIUM_IODIDE Cesium Iodide
NIST_COMPOUND_CHLOROBENZENE Chlorobenzene
NIST_COMPOUND_CHLOROFORM Chloroform
NIST_COMPOUND_CONCRETE_PORTLAND Concrete, Portland
NIST_COMPOUND_CYCLOHEXANE Cyclohexane
NIST_COMPOUND_12_DDIHLOROBENZENE 1,2-Ddihlorobenzene
NIST_COMPOUND_DICHLORODIETHYL_ETHER Dichlorodiethyl Ether
NIST_COMPOUND_12_DICHLOROETHANE 1,2-Dichloroethane
NIST_COMPOUND_DIETHYL_ETHER Diethyl Ether
NIST_COMPOUND_NN_DIMETHYL_FORMAMIDE N,N-Dimethyl Formamide
NIST_COMPOUND_DIMETHYL_SULFOXIDE Dimethyl Sulfoxide
NIST_COMPOUND_ETHANE Ethane
NIST_COMPOUND_ETHYL_ALCOHOL Ethyl Alcohol
NIST_COMPOUND_ETHYL_CELLULOSE Ethyl Cellulose
NIST_COMPOUND_ETHYLENE Ethylene
NIST_COMPOUND_EYE_LENS_ICRP Eye Lens (ICRP)
NIST_COMPOUND_FERRIC_OXIDE Ferric Oxide
NIST_COMPOUND_FERROBORIDE Ferroboride
NIST_COMPOUND_FERROUS_OXIDE Ferrous Oxide
NIST_COMPOUND_FERROUS_SULFATE_DOSIMETER_SOLUTION Ferrous Sulfate Dosimeter Solution
NIST_COMPOUND_FREON_12 Freon-12
NIST_COMPOUND_FREON_12B2 Freon-12B2
NIST_COMPOUND_FREON_13 Freon-13
NIST_COMPOUND_FREON_13B1 Freon-13B1
NIST_COMPOUND_FREON_13I1 Freon-13I1
NIST_COMPOUND_GADOLINIUM_OXYSULFIDE Gadolinium Oxysulfide
NIST_COMPOUND_GALLIUM_ARSENIDE Gallium Arsenide
NIST_COMPOUND_GEL_IN_PHOTOGRAPHIC_EMULSION Gel in Photographic Emulsion
NIST_COMPOUND_GLASS_PYREX Glass, Pyrex
NIST_COMPOUND_GLASS_LEAD Glass, Lead
NIST_COMPOUND_GLASS_PLATE Glass, Plate
NIST_COMPOUND_GLUCOSE Glucose
NIST_COMPOUND_GLUTAMINE Glutamine
NIST_COMPOUND_GLYCEROL Glycerol
NIST_COMPOUND_GUANINE Guanine
NIST_COMPOUND_GYPSUM_PLASTER_OF_PARIS Gypsum, Plaster of Paris
NIST_COMPOUND_N_HEPTANE N-Heptane
NIST_COMPOUND_N_HEXANE N-Hexane
NIST_COMPOUND_KAPTON_POLYIMIDE_FILM Kapton Polyimide Film
NIST_COMPOUND_LANTHANUM_OXYBROMIDE Lanthanum Oxybromide
NIST_COMPOUND_LANTHANUM_OXYSULFIDE Lanthanum Oxysulfide
NIST_COMPOUND_LEAD_OXIDE Lead Oxide
NIST_COMPOUND_LITHIUM_AMIDE Lithium Amide
NIST_COMPOUND_LITHIUM_CARBONATE Lithium Carbonate
NIST_COMPOUND_LITHIUM_FLUORIDE Lithium Fluoride
NIST_COMPOUND_LITHIUM_HYDRIDE Lithium Hydride
NIST_COMPOUND_LITHIUM_IODIDE Lithium Iodide
NIST_COMPOUND_LITHIUM_OXIDE Lithium Oxide
NIST_COMPOUND_LITHIUM_TETRABORATE Lithium Tetraborate
NIST_COMPOUND_LUNG_ICRP Lung (ICRP)
NIST_COMPOUND_M3_WAX M3 Wax
NIST_COMPOUND_MAGNESIUM_CARBONATE Magnesium Carbonate
NIST_COMPOUND_MAGNESIUM_FLUORIDE Magnesium Fluoride
NIST_COMPOUND_MAGNESIUM_OXIDE Magnesium Oxide
NIST_COMPOUND_MAGNESIUM_TETRABORATE Magnesium Tetraborate
NIST_COMPOUND_MERCURIC_IODIDE Mercuric Iodide
NIST_COMPOUND_METHANE Methane
NIST_COMPOUND_METHANOL Methanol
NIST_COMPOUND_MIX_D_WAX Mix D Wax
NIST_COMPOUND_MS20_TISSUE_SUBSTITUTE MS20 Tissue Substitute
NIST_COMPOUND_MUSCLE_SKELETAL Muscle, Skeletal
NIST_COMPOUND_MUSCLE_STRIATED Muscle, Striated
NIST_COMPOUND_MUSCLE_EQUIVALENT_LIQUID_WITH_SUCROSE Muscle-Equivalent Liquid, with Sucrose
NIST_COMPOUND_MUSCLE_EQUIVALENT_LIQUID_WITHOUT_SUCROSE Muscle-Equivalent Liquid, without Sucrose
NIST_COMPOUND_NAPHTHALENE Naphthalene
NIST_COMPOUND_NITROBENZENE Nitrobenzene
NIST_COMPOUND_NITROUS_OXIDE Nitrous Oxide
NIST_COMPOUND_NYLON_DU_PONT_ELVAMIDE_8062 Nylon, Du Pont ELVAmide 8062
NIST_COMPOUND_NYLON_TYPE_6_AND_TYPE_66 Nylon, type 6 and type 6/6
NIST_COMPOUND_NYLON_TYPE_610 Nylon, type 6/10
NIST_COMPOUND_NYLON_TYPE_11_RILSAN Nylon, type 11 (Rilsan)
NIST_COMPOUND_OCTANE_LIQUID Octane, Liquid
NIST_COMPOUND_PARAFFIN_WAX Paraffin Wax
NIST_COMPOUND_N_PENTANE N-Pentane
NIST_COMPOUND_PHOTOGRAPHIC_EMULSION Photographic Emulsion
NIST_COMPOUND_PLASTIC_SCINTILLATOR_VINYLTOLUENE_BASED Plastic Scintillator (Vinyltoluene based)
NIST_COMPOUND_PLUTONIUM_DIOXIDE Plutonium Dioxide
NIST_COMPOUND_POLYACRYLONITRILE Polyacrylonitrile
NIST_COMPOUND_POLYCARBONATE_MAKROLON_LEXAN Polycarbonate (Makrolon, Lexan)
NIST_COMPOUND_POLYCHLOROSTYRENE Polychlorostyrene
NIST_COMPOUND_POLYETHYLENE Polyethylene
NIST_COMPOUND_POLYETHYLENE_TEREPHTHALATE_MYLAR Polyethylene Terephthalate (Mylar)
NIST_COMPOUND_POLYMETHYL_METHACRALATE_LUCITE_PERSPEX Polymethyl Methacralate (Lucite, Perspex)
NIST_COMPOUND_POLYOXYMETHYLENE Polyoxymethylene
NIST_COMPOUND_POLYPROPYLENE Polypropylene
NIST_COMPOUND_POLYSTYRENE Polystyrene
NIST_COMPOUND_POLYTETRAFLUOROETHYLENE_TEFLON Polytetrafluoroethylene (Teflon)
NIST_COMPOUND_POLYTRIFLUOROCHLOROETHYLENE Polytrifluorochloroethylene
NIST_COMPOUND_POLYVINYL_ACETATE Polyvinyl Acetate
NIST_COMPOUND_POLYVINYL_ALCOHOL Polyvinyl Alcohol
NIST_COMPOUND_POLYVINYL_BUTYRAL Polyvinyl Butyral
NIST_COMPOUND_POLYVINYL_CHLORIDE Polyvinyl Chloride
NIST_COMPOUND_POLYVINYLIDENE_CHLORIDE_SARAN Polyvinylidene Chloride, Saran
NIST_COMPOUND_POLYVINYLIDENE_FLUORIDE Polyvinylidene Fluoride
NIST_COMPOUND_POLYVINYL_PYRROLIDONE Polyvinyl Pyrrolidone
NIST_COMPOUND_POTASSIUM_IODIDE Potassium Iodide
NIST_COMPOUND_POTASSIUM_OXIDE Potassium Oxide
NIST_COMPOUND_PROPANE Propane
NIST_COMPOUND_PROPANE_LIQUID Propane, Liquid
NIST_COMPOUND_N_PROPYL_ALCOHOL N-Propyl Alcohol
NIST_COMPOUND_PYRIDINE Pyridine
NIST_COMPOUND_RUBBER_BUTYL Rubber, Butyl
NIST_COMPOUND_RUBBER_NATURAL Rubber, Natural
NIST_COMPOUND_RUBBER_NEOPRENE Rubber, Neoprene
NIST_COMPOUND_SILICON_DIOXIDE Silicon Dioxide
NIST_COMPOUND_SILVER_BROMIDE Silver Bromide
NIST_COMPOUND_SILVER_CHLORIDE Silver Chloride
NIST_COMPOUND_SILVER_HALIDES_IN_PHOTOGRAPHIC_EMULSION Silver Halides in Photographic Emulsion
NIST_COMPOUND_SILVER_IODIDE Silver Iodide
NIST_COMPOUND_SKIN_ICRP Skin (ICRP)
NIST_COMPOUND_SODIUM_CARBONATE Sodium Carbonate
NIST_COMPOUND_SODIUM_IODIDE Sodium Iodide
NIST_COMPOUND_SODIUM_MONOXIDE Sodium Monoxide
NIST_COMPOUND_SODIUM_NITRATE Sodium Nitrate
NIST_COMPOUND_STILBENE Stilbene
NIST_COMPOUND_SUCROSE Sucrose
NIST_COMPOUND_TERPHENYL Terphenyl
NIST_COMPOUND_TESTES_ICRP Testes (ICRP)
NIST_COMPOUND_TETRACHLOROETHYLENE Tetrachloroethylene
NIST_COMPOUND_THALLIUM_CHLORIDE Thallium Chloride
NIST_COMPOUND_TISSUE_SOFT_ICRP Tissue, Soft (ICRP)
NIST_COMPOUND_TISSUE_SOFT_ICRU_FOUR_COMPONENT Tissue, Soft (ICRU four-component)
NIST_COMPOUND_TISSUE_EQUIVALENT_GAS_METHANE_BASED Tissue-Equivalent GAS (Methane based)
NIST_COMPOUND_TISSUE_EQUIVALENT_GAS_PROPANE_BASED Tissue-Equivalent GAS (Propane based)
NIST_COMPOUND_TITANIUM_DIOXIDE Titanium Dioxide
NIST_COMPOUND_TOLUENE Toluene
NIST_COMPOUND_TRICHLOROETHYLENE Trichloroethylene
NIST_COMPOUND_TRIETHYL_PHOSPHATE Triethyl Phosphate
NIST_COMPOUND_TUNGSTEN_HEXAFLUORIDE Tungsten Hexafluoride
NIST_COMPOUND_URANIUM_DICARBIDE Uranium Dicarbide
NIST_COMPOUND_URANIUM_MONOCARBIDE Uranium Monocarbide
NIST_COMPOUND_URANIUM_OXIDE Uranium Oxide
NIST_COMPOUND_UREA Urea
NIST_COMPOUND_VALINE Valine
NIST_COMPOUND_VITON_FLUOROELASTOMER Viton Fluoroelastomer
NIST_COMPOUND_WATER_LIQUID Water, Liquid
NIST_COMPOUND_WATER_VAPOR Water Vapor
NIST_COMPOUND_XYLENE Xylene

Radionuclide macros

The functions GetRadioNuclideDataByIndex and GetRadioNuclideDataByName provide access to the X-ray and gamma intensity profiles of several commonly used radionuclides, obtained from the website of the Lawrence Berkeley National Laboratory. The following table has two columns: the first for the macros that are intended to be used as argument to GetRadioNuclideDataByIndex, while the second contains the names that should be provided to the GetRadioNuclideDataByName function. The list of names in the second column is identical to the array of strings that can be queried using GetRadioNuclideDataList.

Radionuclide macros Radionuclide name
RADIO_NUCLIDE_55FE 55Fe
RADIO_NUCLIDE_57CO 57Co
RADIO_NUCLIDE_109CD 109Cd
RADIO_NUCLIDE_125I 125I
RADIO_NUCLIDE_137CS 137Cs
RADIO_NUCLIDE_133BA 133Ba
RADIO_NUCLIDE_153GD 153Gd
RADIO_NUCLIDE_238PU 238Pu
RADIO_NUCLIDE_241AM 241Am
RADIO_NUCLIDE_244CM 244Cm