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3 Transport laktozy Figurę 20-29 E. coli. H+ binds first to E-2 outside the celi, followed by lacto
3 Transport laktozy(1) Oxidative Figurę 20-29 Kinctic mechanism of Iactose pernicase in /:. coli. H
3 Transport laktozy Figurę 20-29 E. coli. H+ binds first to E-2 outside the celi, followed by lacto
Figurę 20 : Detection de mutations en mosatgue somatiguepar /es technigues d heterodupłex 9!
84 Un schema decrivant le cheminement du modele est represente en figurę 2.20. Dans le cadre de notr
FIGURĘ 20.13 Paralogous and Orthologous Sequences In this example, an ancestral gene duplicałed
2 clean FIGURĘ 20.14 Novel Gene Derived from Pre-Existing Modules (A) Modular evolution of a ne
FIGURĘ 20.14 Novel Gene Derived from Pre-Existing Modules (A) Modular evolution of a new gene m
REIDER PART 125 Chapter 4 Hand and Wrist 115 Figurę 4-20. A, B, and C, Volar aspcct of thc wrist. A
REIDER PART 200 260 Chaptf.r 7 Lower Leg, Foot, and Ankle Figurę 7-20. A, B, and C Medial aspect of
REIDER PART 249 Chapter 8_Cervical and Thoracic Spine 309 Chapter 8_Cervical and Thoracic Spine 309
6 clean subunit Cellulose synthase subunit subunit glucose Sucrose synthase Cytosol FIGURĘ 20-32 A
DSCF0352 Chaptor 0: Synchronous nMOS Logic (a) (b)- FIGURĘ 8.20 Dynamie register with load control.
globine FIGURĘ 20.11 Duplication Creates New Genes During evolution, the enłire ancestral globin gen
63901 oak sih2 24 24 Figurę 20. Two distinct types oflong sword from the Kragehul bog in Dcnmark,&n
fig20 Figurę 20 One possible Chain arrangement with shears and needle case
9 Transport Na K Figurę 20-19 kinctic schcmc for the active transport of Na ‘ and Kł by (Nał-K K
9 Transport Na K Figurę 20-19 kinctic schcmc for the active transport of Na ‘ and Kł by (Nał-K K
00241 tbbf0afd5fc79c2ad0c3ecbce2b5261 Statistical Process Monitoring 243 0 20 40 60 Batch Number 0
00260 c4d30ed1115a37efddd101f6f4dc5c 262Yander Wiel t = 2    5 10 20 40 Figurę 8. E

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