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Grundbegriffe Wirtschaft 1993
DOI: 10.1007/978-3-322-93140-5_8
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Cited by 5 publications
(7 citation statements)
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“…polymyxin B and colistin) [457] and entecavir [763]. Substrates MDP-rhodamine [506], muramyl dipeptide [506,736], glycyl-sarcosine [737], Tri-DAP [736], cefadroxil [737], valacyclovir [737] muramyl dipeptide [506,641], MDP-rhodamine [331,506], Tri-DAP [428,611,641], C12-iE-DAP [428], His-Leu-lopinavir [470], glycyl-sarcosine [55,332,641,659], valacyclovir [55] Endogenous substrates L-histidine [605,737], carnosine [533,605], glycyl-glycyl-glycine [737] L-histidine [55,401,470,734,775], carnosine [55,533,775], glycyl-glycyl-glycine [533] Stoichiometry PHT2 has not been analyzed systematically with respect to driving force, mode of transport, and substrate specificity. The pH dependence observed for transport of histidine [605] and the model peptides used, i.e., carnosine [605] and histidyl-leucine [605], suggest a similar mode of operation as PEPT1 and PEPT2 proteins.…”
Section: Commentsmentioning
confidence: 99%
“…polymyxin B and colistin) [457] and entecavir [763]. Substrates MDP-rhodamine [506], muramyl dipeptide [506,736], glycyl-sarcosine [737], Tri-DAP [736], cefadroxil [737], valacyclovir [737] muramyl dipeptide [506,641], MDP-rhodamine [331,506], Tri-DAP [428,611,641], C12-iE-DAP [428], His-Leu-lopinavir [470], glycyl-sarcosine [55,332,641,659], valacyclovir [55] Endogenous substrates L-histidine [605,737], carnosine [533,605], glycyl-glycyl-glycine [737] L-histidine [55,401,470,734,775], carnosine [55,533,775], glycyl-glycyl-glycine [533] Stoichiometry PHT2 has not been analyzed systematically with respect to driving force, mode of transport, and substrate specificity. The pH dependence observed for transport of histidine [605] and the model peptides used, i.e., carnosine [605] and histidyl-leucine [605], suggest a similar mode of operation as PEPT1 and PEPT2 proteins.…”
Section: Commentsmentioning
confidence: 99%
“…The concept was applied to the transport systems Si/I 2 , 134 Si/SiCl 4 , 134 Ga 2 O 3 /Cl 2 , 135 Ga 2 O 3 /H/Cl, 136 GaAs/ I 2 /H 2 , 134 Ge/I 2 , 137 Ge/H 2 O, 48 Ge/GeCl 4 , 138 In 2 O 3 /Cl 2 , 139 SnS 2 /I 2 , 140 Sb/SbCl 3 , 141 Sb/GaCl 3 , 141 Sb 2 S 3 /I 2 , 142 TiO 2 / XCl 4 (X ) Te, Se, C), 143 MnCl 2 /MCl 3 (M ) Al, Ga, In), 87 Fe/HCl, 134 Fe 2 O 3 /HCl, 134 Fe 2 O 3 /TeCl 4 , 144 FeS/ H/X (X ) Cl, Br, I), 145 FeS/MX 4 (M ) Ge, Sn; X ) Cl, I), 145 Ni/CO, 146 154 Co/Ni/GaI 3 /I 2 , 155 and Cu/Ag/I 2 . 156 By using the model of Krabbes et al 44,45 it is possible to calculate the transport rate n ˘(mol/s) of a solid based on the concept of the solubility in the gas phase with the formula where D h o stands for mean diffusion coefficient; T h , mean temperature; a, cross section of the ampule; p tot , total pressure; ∆l, length of the ampule; p j*, mean solvent balance pressure; and p j* K , balance pressures of the components A and B of the condensed phase or the solvent component L. For comments on the coefficient 1.8 × 10 -3 see section III.C.1.…”
Section: The Concept Of the Solubility Of A Condensed Phase In The Ga...mentioning
confidence: 99%
“…The concept was applied to the transport systems Si/I 2 , Si/SiCl 4 , Ga 2 O 3 /Cl 2 , Ga 2 O 3 /H/Cl, GaAs/I 2 /H 2 , Ge/I 2 , Ge/H 2 O, Ge/GeCl 4 , In 2 O 3 /Cl 2 , SnS 2 /I 2 , Sb/SbCl 3 , Sb/GaCl 3 , Sb 2 S 3 /I 2 , TiO 2 /XCl 4 (X = Te, Se, C), MnCl 2 /MCl 3 (M = Al, Ga, In), Fe/HCl, Fe 2 O 3 /HCl, Fe 2 O 3 /TeCl 4 , FeS/H/X (X = Cl, Br, I), FeS/MX 4 (M = Ge, Sn; X = Cl, I), Ni/CO, MoCl 3 /Cl 2 , Ag/I 2 , Ta 2 O 5 /S 2 , TaS 2 /S 2 , W/Cl 2 /Ar, ReO 2 /Re 2 O 7 /HCl, Pt/Cl 2 , M/GaCl 3 (M = Fe, Co, Ni), MCl 2 /Al 2 Cl 6 (M = Co, Ni, Cu), MCl 2 /Al 2 Cl 6 (M = Ca, Cr, Fe, Co, Ni, Cu, Pd), Co/Ni/GaI 3 /I 2 , and Cu/Ag/I 2 …”
Section: The Concept Of the Solubility Of A Condensed Phase In The Ga...mentioning
confidence: 99%
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“…The latter two compounds were the first anhydrous selenites which were structurally characterized, although compounds of the composition M 2 ðSeO 3 Þ 3 have been mentioned previously. They had been prepared either by thermal decomposition of selenite hydrates (5), acidic selenites (6) or by fusing M 2 O 3 and SeO 2 (6,7). However, these methods did not lead to single crystals so that only powder diffraction data are available.…”
Section: Introductionmentioning
confidence: 99%