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compunt materials update
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@ -7,31 +7,35 @@ namespace catima{
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if(id>0 && id<ELEMENT_DENSITY_MAXZ){
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return Material(0,id,element_density(id),0.0);
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}
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switch(id){
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case material::PLASTIC : return Material({{0,1,10},{0,6,9}},1.032);
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case material::AIR : return Material({{0,7,0.7810}, {0,8,0.2095},{0,18,0.0095}},0.0012);
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case material::CH2 : return Material({{0,6,1}, {0,1,2}},0.94);
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case material::LH2 : return Material({{0,1,1}},0.0708);
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case material::LD2 : return Material({{2.014,1,1}},0.162);
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case material::WATER : return Material({{0,1,2},{0,8,1}},1.0);
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case material::DIAMOND: return Material(0,6,3.52,0.0);
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case material::GLASS : return Material({{0,14,1},{0,8,2}},2.4 );
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case material::ALMG3: return Material(0,13,2.67,0.0);
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case material::ARCO2_30: return Material({{0,18,7},{0,8,6},{0,6,3}}, 0.00171);
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case material::CF4 : return Material({{0,6,1},{0,9,4}}, 0.00372 );
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case material::ISOBUTANE:return Material({{0,6,4}, {0,1,10}},0.00251);
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case material::KAPTON : return Material({{0,1,10}, {0,6,22},{0,7,2},{0,8,5}},1.42);
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case material::MYLAR : return Material({{0,6,5}, {0,1,4},{0,8,2}},1.38);
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case material::NAF : return Material({{0,11,1}, {0,9,1}},2.56);
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case material::P10: return Material({{0,18,9},{0,6,1},{0,1,4}}, 0.00166);
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case material::POLYOLEFIN: return Material({{0,1,16},{0,6,10}}, 0.9);
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case material::CMO2: return Material({{0,96,1},{0,8,2}}, 12.0);
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case material::SUPRASIL : return Material({{0,14,1},{0,8,2}},2.2 );
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case material::HAVAR : return Material({{0,27,42},{0,24,40},{0,28,13},{0,26,19},{0,74,1}},8.3);
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case material::STEEL : return Material({{0,26,74},{0,24,18},{0,28,8}},8.0);
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return get_compound(static_cast<material>(id));
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}
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Material get_compound(material m){
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switch(m){
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case material::Plastics: return Material({{0,1,10},{0,6,9}},1.032);
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case material::Air: return Material({{0,7,0.781},{0,8,0.2095},{0,18,0.0095}},0.0012);
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case material::CH2: return Material({{0,6,1},{0,1,2}},0.94);
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case material::LH2: return Material({{0,1,1}},0.0708);
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case material::LD2: return Material({{2.01355,1,1}},0.162);
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case material::Water: return Material({{0,1,2},{0,8,1}},1);
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case material::Diamond: return Material({{0,6,1}},3.52);
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case material::Glass: return Material({{0,14,1},{0,8,2}},2.4);
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case material::ALMG3: return Material({{0,13,1}},2.67);
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case material::ArCO2_30: return Material({{0,18,7},{0,8,6},{0,6,3}},0.00171);
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case material::CF4: return Material({{0,6,1},{0,9,4}},0.00372);
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case material::Isobutane: return Material({{0,6,4},{0,1,10}},0.00251);
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case material::Kapton: return Material({{0,1,10},{0,6,22},{0,7,2},{0,8,5}},1.42);
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case material::Mylar: return Material({{0,6,5},{0,1,4},{0,8,2}},1.38);
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case material::NaF: return Material({{0,11,1},{0,9,1}},2.56);
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case material::P10: return Material({{0,18,9},{0,6,1},{0,1,4}},0.00166);
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case material::PolyOlefin: return Material({{0,8,10},{0,1,16}},0.9);
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case material::CmO2: return Material({{0,96,1},{0,8,2}},12);
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case material::Suprasil: return Material({{0,14,1},{0,8,2}},2.2);
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case material::HAVAR: return Material({{0,27,42},{0,24,20},{0,28,13},{0,74,3},{0,42,2},{0,26,20}},8.3);
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case material::Steel: return Material({{0,26,74},{0,24,18},{0,28,8}},8);
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default:break;
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}
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return Material();
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}
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}
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} // namespace catima
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@ -4,33 +4,36 @@
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namespace catima{
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//namespace material{
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enum material{
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PLASTIC = 201,
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AIR = 202,
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CH2,
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LH2,
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LD2,
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WATER,
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DIAMOND,
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GLASS,
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ALMG3,
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ARCO2_30,
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CF4,
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ISOBUTANE,
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KAPTON,
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MYLAR,
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NAF,
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P10,
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POLYOLEFIN,
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CMO2,
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SUPRASIL,
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HAVAR,
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STEEL = 221
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enum class material{
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Plastics = 201,
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Air = 202,
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CH2 = 203,
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LH2 = 204,
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LD2 = 205,
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Water = 206,
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Diamond = 207,
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Glass = 208,
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ALMG3 = 209,
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ArCO2_30 = 210,
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CF4 = 211,
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Isobutane = 212,
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Kapton = 213,
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Mylar = 214,
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NaF = 215,
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P10 = 216,
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PolyOlefin = 217,
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CmO2 = 218,
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Suprasil = 219,
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HAVAR = 220,
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Steel = 221
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};
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Material get_compound(material m);
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Material get_material(int id);
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inline Material get_material(material m){
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return get_compound(m);
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};
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//}
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Material get_material(int);
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}
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#endif
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@ -330,7 +330,7 @@ const lest::test specification[] =
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},
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CASE("default material calculations"){
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catima::Projectile p{12,6,6,350};
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auto air = catima::get_material(catima::material::AIR);
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auto air = catima::get_material(catima::material::Air);
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air.thickness(0.500);
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auto res = catima::calculate(p(350),air);
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EXPECT(res.Eout == approx(345.6).epsilon(1e-2));
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@ -70,7 +70,7 @@ const lest::test specification[] =
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EXPECT(m.density() == 2.0);
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EXPECT(m.M() == 12.0107);
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m = catima::get_material(catima::material::WATER);
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m = catima::get_material(catima::material::Water);
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EXPECT(m.get_element(0).first.A == 1.00794);
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EXPECT(m.get_element(0).first.Z == 1);
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EXPECT(m.get_element(1).first.A == 15.9994);
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