deWitFig03.pdf   6/15/09          5:04:33 PM




                          Cf-4                                           ...
FisherFig01.pdf   8/8/08     9:10:38 AM




                                                                              ...
HorwichFig06.pdf   4/9/07   4:29:04 PM




                                                                     GroES
    ...
MahowaldFig01.pdf   6/15/09                      4:15:18 PM




                                  a Observed Fe




      ...
FrenchFig13.pdf                    6/15/09         4:05:57 PM




                                       a    PAR-817     ...
UchicFig01.pdf   6/15/09       4:01:33 PM




                                                                            ...
UchicFig07.pdf                                    6/15/09   4:01:38 PM




                                               ...
KatzFig09.pdf   6/15/09       3:59:48 PM




                                                                          β-c...
BirdFig05.pdf     4/13/09     5:17:02 PM




           MiV1ctg2
                10 k                                   20...
HuganirFig02.pdf   6/25/07   3:07:27 PM




                                                       Dendrite
              ...
FrimlFig02.pdf   6/12/08   1:32:08 PM




                                                      Polar distribution of PINs...
WegstFig05.pdf   5/7/08   4:44:19 PM




                                                                         CFRP
   ...
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Annual Reviews

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Annual Reviews

  1. 1. deWitFig03.pdf 6/15/09 5:04:33 PM Cf-4 Cf-9 Avr-induced K+ K+ K+ Avr4 H+ ROS Ca2+ ATPase K+ ATPase ATPase Oxidative Avr9 PR burst HABs PR Syntaxin CITRX PLC DGK ACIK1 VAP27 P PR PIP2 DAG PA P CITRX Hsp90 NADPH ? oxidase Ca2+ H+ H+ Ca2+ 2+ H+ ? Ca EDS1 IP3 CC MAPKKK P CDPKs NRC1 MAPKK P P Cytosol ? Hsp90 RAR1 ? MAPK1-3 ? P TFs SGT1 Salicyclic acid Defense responses ACS TFs Vacuole P P Cell wall reinforcement PR PR Phytoalexins Nucleus PR proteins PR Ca2+ Ca2+ 2+ Ethylene Hypersensitive response Ca
  2. 2. FisherFig01.pdf 8/8/08 9:10:38 AM VK 825/826 GC 140 MC 709 GC 185 MC 798 GB 382 GC 228 MC 885 GB 543 GB 424 GC 272 MC 929 GB 535 GB 544 GB 425 GC 354 MC 853 GC415 GC 204 GC286 GB 388 GC 232 GC 233 GC 533 GC 234 0 200 400 600 800 1000 1200 1400 1600 1800 2000 2200 2400 2600 2800 3000 3200 Depth contours (m)
  3. 3. HorwichFig06.pdf 4/9/07 4:29:04 PM GroES Y71 L309 E257 E257 E255 K225 D253 E252 GroEL K277 apical F281 D283 R284 K364 Y360 D83 D359 equatorial K380 F44 E386
  4. 4. MahowaldFig01.pdf 6/15/09 4:15:18 PM a Observed Fe 0.002 0.01 0.02 0.04 0.10 0.20 1 2 10 20 100 Fe (g m–2 yr–1) b Total model Fe c Scatter diagram 102 North America 101 North Atlantic South America, Africa, Atlantic 100 Europe Model (g m–2 yr–1) North Paci c, Asia, North Indian 10–1 South Paci c, South Indian 10–2 10–3 10–4 10–5 10–5 10–4 10–3 10–2 10–1 100 101 102 Observation (g m yr )–2 –1
  5. 5. FrenchFig13.pdf 6/15/09 4:05:57 PM a PAR-817 b TArF-Pi6-001 15 15 10 10 Delta to dry exposure Delta to dry exposure 5 5 (nm, degrees) (nm, degrees) 0 0 –5 –5 –10 –10 –15 –15 Water Water IF132 IF132 IF169 IF169 Water Water IF132 IF132 IF169 IF169 Pre Post Pre Post Pre Post Pre Post Pre Post Pre Post c Water Immersion CH Resist 15 Middle CD Resist thickness 10 Sidewall angle Delta to dry exposure 5 (nm, degrees) 0 –5 –10 –15 Water Water IF132 IF132 IF169 IF169 Pre Post Pre Post Pre Post
  6. 6. UchicFig01.pdf 6/15/09 4:01:33 PM P a b Voice coil φ R>>L0 D Capacitive ∆L displacement sensor u' u' θ Diamond L0 at punch h0 Sample Slip zone c d 2 m 2 m
  7. 7. UchicFig07.pdf 6/15/09 4:01:38 PM a b 10–2 Normalized stress (τbNi / Ksbmetal) Normalized stress (τbNi / Ksbmetal) 10–2 τ/K ~ D–0.84 τ/K ~ D–0.43 τ/K ~ D–0.62 10–3 10–3 10–4 10–5 10–4 0.1 1 10 1 10 Simulation cell size ( m) Simulation cell size ( m) Ni, <41-3>, 2 × 1012 m–2 (Reference 33) ρ0 = 2 1012 m–2 Ni, <41-3>, 1 × 1013 m–2 (Reference 33) ρ0 = 1 1013 m–2 Ni, <41-3>, 7 × 1011 m–2 (Reference 33) ρ0 = 7 1011 m–2 Ni, <001>, 1012 – 5 × 1013 m–2 (Reference 83) Ni, <123>, 2 × 1013 m–2 (Reference 82)
  8. 8. KatzFig09.pdf 6/15/09 3:59:48 PM β-citronellol (R)-(+) / (S)-(–) Carvone (R)-(–) / (S)-(+) O S S S S S S 1 BOC O PTA or PTG O HN H PTO SiO2 O OAc Si AcO O L-phenylalanine G AcO S S S S O D-glucose AcO O O S S S S BOC 1 PTA H NH O O O OAc PTG O O D-glucose OAc OAc L-phenylalanine AcO
  9. 9. BirdFig05.pdf 4/13/09 5:17:02 PM MiV1ctg2 10 k 20 k 30 k 40 k Minc00164 Minc00166 Minc00167 Minc00168 Minc00169b Minc00171 Minc00173 Minc00174 Minc00165 Minc00169a Minc00172 83% 98% 94% MiV1ctg67 99% 92% 97% 10 k 20 k 30 k 40 k 50 k Minc03283 Minc03284 Minc03286 96% Minc03287 98% Minc03288 Minc03290 Minc03290 Minc03285 64% 100% Minc03289 90% 97% 64% 83% MiV1ctg757 20 k 10 k 0k Minc14050 Minc14049 Minc14048 Minc14047a Minc14046 Minc14047b
  10. 10. HuganirFig02.pdf 6/25/07 3:07:27 PM Dendrite Golgi outpost Neuronal activity Polyribosome AMPAR mRNA Microtubules mGluR1/5 Synapse NMDAR subunit AMPAR subunit Synaptic vesicle Neurotransmitter ER and Golgi Nucleus Soma
  11. 11. FrimlFig02.pdf 6/12/08 1:32:08 PM Polar distribution of PINs PIN3 PIN7 PIN2 PIN2 PIN1 PIN1 PIN2 PIN2 PIN4 PIN2 PIN3 PIN7 PIN4 Epidermis Cortex Endodermis Stele Quiescent center Columella Lateral cap PIN3
  12. 12. WegstFig05.pdf 5/7/08 4:44:19 PM CFRP CFRP Swartzia 50 Snakewood Pernambuco Woods for violin bows CFRP Bamboo Young's modulus (GPa) (violin bow) Woods for Woods for 20 xylophonebows violin bars Woods for wind instruments Woods for Woods for wind 10 soundboards instruments Woods for violin 5 backs and ribs 0.002 0.005 0.01 Loss coefficient

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