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Scanning election micrograph

Fig. 13. Scanning election micrograph of polyacrylonitrile fibrils formed by spraying a 0.05 wt % polyacrylonitrile in dimetbylform amide solution into CO2 through a 50-//m inner diameter, 18-cm-long no22le at a temperature of 40°C, density of 0.66 g/mL, and solution flow rate of 0.36 ml,/min (118). Fig. 13. Scanning election micrograph of polyacrylonitrile fibrils formed by spraying a 0.05 wt % polyacrylonitrile in dimetbylform amide solution into CO2 through a 50-//m inner diameter, 18-cm-long no22le at a temperature of 40°C, density of 0.66 g/mL, and solution flow rate of 0.36 ml,/min (118).
Fig. 1.438 Scanning election micrograph of the pore structure of the PMAA membrane from a starting composition of 7%/3%/90% PMAA/MAA/water and quenched at 80°C for 3 min (Reproduced with permission from Saxena, 2001)... Fig. 1.438 Scanning election micrograph of the pore structure of the PMAA membrane from a starting composition of 7%/3%/90% PMAA/MAA/water and quenched at 80°C for 3 min (Reproduced with permission from Saxena, 2001)...
Fig. 8.58 Scanning election micrographs, showing secondary micro-fracture about bridging grains indicating the intensity of interface traction forces [54]. With kind permission of John Wiley and Sons... Fig. 8.58 Scanning election micrographs, showing secondary micro-fracture about bridging grains indicating the intensity of interface traction forces [54]. With kind permission of John Wiley and Sons...
Fig. 4.7 Scanning election micrograph of zinc electrodeposited onto a graphite surface from a solution containing 2.5 M ZnBr2 primary electrolyte, 1 M MEP and 12 g of ethylene glycol additive under a current density of 20 mA cm for 3 min... Fig. 4.7 Scanning election micrograph of zinc electrodeposited onto a graphite surface from a solution containing 2.5 M ZnBr2 primary electrolyte, 1 M MEP and 12 g of ethylene glycol additive under a current density of 20 mA cm for 3 min...
Fig. 13 Scanning election micrographs of (a) spray-dried nanoparticulate budesonide and... Fig. 13 Scanning election micrographs of (a) spray-dried nanoparticulate budesonide and...
Fig. 14.6 Scanning election micrograph of bacterial eellulose and wood pulp, (a) Bacterial cellulose, (b) Wood pulp. Bars (a) 2 pm (b) 200 pm, respectively... Fig. 14.6 Scanning election micrograph of bacterial eellulose and wood pulp, (a) Bacterial cellulose, (b) Wood pulp. Bars (a) 2 pm (b) 200 pm, respectively...
Figure S Scanning electron micrograph of alginate Figure 6 Scanning election... Figure S Scanning electron micrograph of alginate Figure 6 Scanning election...
Fig. 3.13 Images of halloysite clay, (a) Transmission election micrograph of tubes dispersed in water and dried on a copper grid (b) Scanning electron micrograph of dry HNT powder (Wei et al. 2014) Reproduced with permission of The Royal Society of Chemistry ]... Fig. 3.13 Images of halloysite clay, (a) Transmission election micrograph of tubes dispersed in water and dried on a copper grid (b) Scanning electron micrograph of dry HNT powder (Wei et al. 2014) Reproduced with permission of The Royal Society of Chemistry ]...

See other pages where Scanning election micrograph is mentioned: [Pg.1851]    [Pg.10]    [Pg.12]    [Pg.297]    [Pg.78]    [Pg.500]    [Pg.1851]    [Pg.10]    [Pg.12]    [Pg.297]    [Pg.78]    [Pg.500]    [Pg.110]    [Pg.1054]   
See also in sourсe #XX -- [ Pg.21 , Pg.215 ]




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