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391 results for “Roughness”
Figure 7 from: Ruas C, Vaz-dos-Santos AM (2017) Age structure and growth of the rough scad, Trachurus lathami (Teleostei: Carangidae), in the Southeastern Brazilian Bight. Zoologia 34: 1-11. https://doi.org/10.3897/zoologia.34.e20475
Figure 7 - Trachurus lathami: von Bertalanffy growth curve fitted (line) to observed total lengths (points) by age (n = 278).
Figure 1 from: Ruas C, Vaz-dos-Santos AM (2017) Age structure and growth of the rough scad, Trachurus lathami (Teleostei: Carangidae), in the Southeastern Brazilian Bight. Zoologia 34: 1-11. https://doi.org/10.3897/zoologia.34.e20475
Figure 1 - Commercial landings of Trachurus lathami and Sardinella brasiliensis in the Southeastern Brazilian Bight (SEBB). Data of 2008, 2009 and 2010 are restricted to states of Paraná and São Paulo that representing 95% of the total landings. Data source: Valentini and Pezzutto 2006, MMA 2007a, b, 2008 UNIVALI 2009, 2010, 2011, Instituto de Pesca 2013.
Figure 4 from: Ruas C, Vaz-dos-Santos AM (2017) Age structure and growth of the rough scad, Trachurus lathami (Teleostei: Carangidae), in the Southeastern Brazilian Bight. Zoologia 34: 1-11. https://doi.org/10.3897/zoologia.34.e20475
Figure 4 - Trachurus lathami: length frequency distribution by period (dashed line indicates the average length of first maturity, L50 = 115 mm).
Figure 2 from: Lambert SM, Hutter CR, Scherz MD (2017) Diamond in the rough: a new species of fossorial diamond frog (Rhombophryne) from Ranomafana National Park, southeastern Madagascar. Zoosystematics and Evolution 93(1): 143-155. https://doi.org/10.3897/zse.93.10188
Figure 2 - Map of Ranomafana National Park and the type locality of Rhombophryne nilevina sp. n.. Map is a composite of Landsat 8 satellite imagery and a hillshade layer created from SRTM 1 Arc-Second Global digital elevation data. Data available from the U.S. Geological Survey.
Figure 5 from: Lambert SM, Hutter CR, Scherz MD (2017) Diamond in the rough: a new species of fossorial diamond frog (Rhombophryne) from Ranomafana National Park, southeastern Madagascar. Zoosystematics and Evolution 93(1): 143-155. https://doi.org/10.3897/zse.93.10188
Figure 5 - Comparative spectrograms (top), oscillograms (center) and power spectra (bottom) between the calls of (A) Rhombophryne nilevina sp. n. and (B) Rhombophryne testudo (from Vences et al. 2006). Spectrogram was created using a Hanning window size of 1024.
Figure 1 from: Lambert SM, Hutter CR, Scherz MD (2017) Diamond in the rough: a new species of fossorial diamond frog (Rhombophryne) from Ranomafana National Park, southeastern Madagascar. Zoosystematics and Evolution 93(1): 143-155. https://doi.org/10.3897/zse.93.10188
Figure 1 - Phylogenetic relationships between Rhombophryne species estimated using maximum likelhood in RaxML using the mitochondrial 16S rRNA barcode fragment. Rhombophryne nilevina sp. n. is highlighted with blue bold text. Outgroups are removed from the tree figure for aesthetic purposes.
Figure 4 from: Lambert SM, Hutter CR, Scherz MD (2017) Diamond in the rough: a new species of fossorial diamond frog (Rhombophryne) from Ranomafana National Park, southeastern Madagascar. Zoosystematics and Evolution 93(1): 143-155. https://doi.org/10.3897/zse.93.10188
Figure 4 - The osteology of Rhombophryne nilevina sp. n. Skull in (a) lateral, (b) dorsal, and (c) ventral view; and full skeleton in (d) dorsal and (e) ventral view. Abbreviations: angspl, angulosplenial; angspl.cp, angulosplenial coronoid process; col, columella; exoc, exoccipital; fpar, frontoparietal; fpar.dop, frontoparietal dorsal process; max, maxilla; max.pf, maxillary pars fascialis; mmk, mentomeckelian bone; npl, neopalatine; pmx, premaxilla; povom, postschoanal vomer; proot, prootic; prvom, prechoanal vomer; prsph.ap, parasphenoid alary process; prsph.cp, parasphenoid cultriform process; pter.ar, pterygoid anterior ramus; pter.vr, pterygoid ventral ramus; pter.mr, pterygoid medial ramus; qj, quadratojugal; qj.pvp, quadratojugal posteroventral process; smx, septomaxilla; spheth, sphenethmoid; sq, squamosal; sq.or, squamosal otic ramus; sq.zr, squamosal zygotic ramus.
Figure 3 from: Lambert SM, Hutter CR, Scherz MD (2017) Diamond in the rough: a new species of fossorial diamond frog (Rhombophryne) from Ranomafana National Park, southeastern Madagascar. Zoosystematics and Evolution 93(1): 143-155. https://doi.org/10.3897/zse.93.10188
Figure 3 - Photos in life of Rhombophryne nilevina sp. n. (a) Dorsolateralview of the holotype (KU 340893). (b) Dorsal view of the holotype. (c) Ventral view of the holotype. (d) Dorsolateral view of the paratype (CRH 799, UADBA-A Uncatalouged). (e) Dorsal view of the paratype. (f) Ventral view of the paratype.
Figure 2 from: Ruas C, Vaz-dos-Santos AM (2017) Age structure and growth of the rough scad, Trachurus lathami (Teleostei: Carangidae), in the Southeastern Brazilian Bight. Zoologia 34: 1-11. https://doi.org/10.3897/zoologia.34.e20475
Figure 2 - Map of the Southeastern Brazilian Bight (SEBB) showing the locations of fishing hauls with Trachurus lathami catches by period (n = 17, some points are overlapped in the map).
Figures 5-6 from: Ruas C, Vaz-dos-Santos AM (2017) Age structure and growth of the rough scad, Trachurus lathami (Teleostei: Carangidae), in the Southeastern Brazilian Bight. Zoologia 34: 1-11. https://doi.org/10.3897/zoologia.34.e20475
Figures 5-6 - Trachurus lathami: (5) Box plot of ring radius (whiskers = minimum and maximum, box = interquartile range, bar = mean). (6) Constancy graph showing the position of rings radius (R) against total length (TL) (n = 278).
Figure 7 from: Ruas C, Vaz-dos-Santos AM (2017) Age structure and growth of the rough scad, Trachurus lathami (Teleostei: Carangidae), in the Southeastern Brazilian Bight. Zoologia 34: 1-11. https://doi.org/10.3897/zoologia.34.e20475
Figure 7 - Trachurus lathami: von Bertalanffy growth curve fitted (line) to observed total lengths (points) by age (n = 278).
Figure 1 from: Ruas C, Vaz-dos-Santos AM (2017) Age structure and growth of the rough scad, Trachurus lathami (Teleostei: Carangidae), in the Southeastern Brazilian Bight. Zoologia 34: 1-11. https://doi.org/10.3897/zoologia.34.e20475
Figure 1 - Commercial landings of Trachurus lathami and Sardinella brasiliensis in the Southeastern Brazilian Bight (SEBB). Data of 2008, 2009 and 2010 are restricted to states of Paraná and São Paulo that representing 95% of the total landings. Data source: Valentini and Pezzutto 2006, MMA 2007a, b, 2008 UNIVALI 2009, 2010, 2011, Instituto de Pesca 2013.
Figure 3 from: Ruas C, Vaz-dos-Santos AM (2017) Age structure and growth of the rough scad, Trachurus lathami (Teleostei: Carangidae), in the Southeastern Brazilian Bight. Zoologia 34: 1-11. https://doi.org/10.3897/zoologia.34.e20475
Figure 3 - Trachurus lathami: external surface of a left otolith showing measurements (OL = otolith length and OH = otolith height) and ring analysis (M and L are rings formed before the first annual one; more details in the text). Scale bar: 1 mm.
Figure 4 from: Ruas C, Vaz-dos-Santos AM (2017) Age structure and growth of the rough scad, Trachurus lathami (Teleostei: Carangidae), in the Southeastern Brazilian Bight. Zoologia 34: 1-11. https://doi.org/10.3897/zoologia.34.e20475
Figure 4 - Trachurus lathami: length frequency distribution by period (dashed line indicates the average length of first maturity, L50 = 115 mm).
Figures 8-11 from: Ruas C, Vaz-dos-Santos AM (2017) Age structure and growth of the rough scad, Trachurus lathami (Teleostei: Carangidae), in the Southeastern Brazilian Bight. Zoologia 34: 1-11. https://doi.org/10.3897/zoologia.34.e20475
Figures 8-11 - Trachurus lathami: space-time distribution of age groups in the Southeastern Brazilian Bight during (8) summer of 2008 (January-February), (9) spring of 2008 (November), (10) spring of 2009 (September-October) and (11) summer of 2010 (February–March).
Data for 'The Surface roughness of large craters on Mercury'
<p>A zip file containing the data for 'The surface roughness of large craters on Mercury'.</p>
Experimental investigation on effects of loading rate, surface roughness and normal stress on repeating stick-slip behaviors
<p>TEST DATA</p>
Experimental Investigation of Surface Roughness Effects and Transition on Wind Turbine Performance
<p>Aerodynamic experiments have been executed in the wind tunnel and on a wind turbine blade to measure the impact of roughness on the airfoil characteristics and the associated effect on rotor performance and to establish the transition location on a rotating blade. The wind tunnel tests have been performed in the low-speed, low-turbulence wind tunnel of TUDelft. The wind turbine tests were carried out at ECN&rsquo;s Wind Turbine Test Site. Roughness simulation material has been installed on the airfoil leading edge to measure the impact on airfoil performance. Microphones were mounted on the airfoil surface to detect the boundary layer laminar to turbulent transition position both on the wind tunnel model and on the wind turbine blade.</p>
Fig. 129 in Diamonds in the rough: Ibotyporanga (Araneae, Pholcidae) spiders in semi-arid Neotropical environments
Fig. 129. Density plot of the distance from access routes (in km) of the points of occurrence (black bars) of species of Ibotyporanga Mello-Leitão, 1944, compared to the expected distance (blue bars) based on 200 random points sorted at a 20 km radius. Dashed lines represent the mean values (shown with the standard deviation beside them) for each class. Records of I. naideae Mello-Leitão, 1944 were excluded from this analysis.
Fig. 128 in Diamonds in the rough: Ibotyporanga (Araneae, Pholcidae) spiders in semi-arid Neotropical environments
Fig. 128. Ibotyporanga canudos Huber sp. nov. A–C. Female abdomens, ventral views, females from Brazil, Bahia, SE of Lagoa do Boi (A), ZFMK Ar 24387, Bahia, 25 km WNW of Morro do Chapéu (B), ZFMK Ar 24385, and from Bahia, 4 km SW of Andorinha (C), ZFMK Ar 24388. D–E. Cleared female genitalia, ventral and dorsal views, same specimen as in A. F. Cleared female genitalia, ventral view, same specimen as in B. G. Cleared female genitalia, ventral view, same specimen as in C. Abbreviation: es = expandable membranous sac. Scale lines: 0.3 mm.
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Allen Brain Atlas
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