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355 results for “collapses”

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Colored collapse models from the non-interferometric perspective

<p>bounds.nb - Main program for the derivation of the bounds on the collaspe parameters for the colored CSL model</p>

opencc-by-4.0Oct 2018View details →
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Convective boundary mixing in a post-He core burning massive star model: Collapse and starlog data

<p>The starlog data and collapse profiles from the publication, Convective boundary mixing in a post-He core burning massive star model.&nbsp;</p> <p>The full directories including the MESA profiles can be found here:&nbsp;http://www.canfar.net/storage/list/nugrid/data/projects/Davis2019_CBM_M25</p>

opencc-by-4.0Feb 2019View details →
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Fig. 1 in Phloeotribus pruni (Coleoptera: Scolytidae) associated with peach (Prunus persica) collapse in Coatepec de Harinas, State of Mexico, Mexico

Fig. 1. Peach (Prunus persica) collapse associated with the attack of Phloeotribus pruni. (A) Initial peach collapse symptom. (B) Adult lateral view. (C) Head front view and antennae detail. (D) Phloeotribus pruni adult dorsal view.

opencc-by-4.0Jun 2018View details →
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Fig. 1 in Larval pheromone disrupts pre-excavation aggregation of Cactoblastis cactorum (Lepidoptera: Pyralidae) neonates precipitating colony collapse

Fig. 1. Percent survival of caterpillars in cohorts of Cactoblastis cactorum on plants sprayed with caterpillar extract (gray bar), solvent-only (white bar), or unsprayed (black bar) for 4 separate experiments. Experiment 1 = laboratory study; experiment 2 = greenhouse study; experiment 3 = field study 1; experiment 4 = field study 2.

opencc-by-4.0Sep 2019View details →
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Fig. 52 in Emergence and collapse of the Frasnian conodont and ammonoid communities in the Holy Cross Mountains, Poland

Fig. 52. Accumulations of goniatite conchs and other fossils in the latest Frasnian strata of the Holy Cross Mountais. A. Conchs of Archoceras varicosum (Drevermann, 1901) in a piece of the Upper Kellwasserkalk from Płucki (Pł−391). B. Conchs of Aulatornoceras belgicum (Matern, 1931) in association with Linguatornoceras sp. from the same bed. C. Acid etched sample Ko−142 from Kowala with similar but more homogenized association.

opencc-by-4.0Dec 2002View details →
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Fig. 43 in Emergence and collapse of the Frasnian conodont and ammonoid communities in the Holy Cross Mountains, Poland

Fig. 43. Variability of P1 (sp) elements of the latest Frasnian palmatolepidids. Scattergrams show ontogenetic changes of the angle between the dorsal process and the posterior lobe of the platform in sample Pł−391 from the Upper Kellwasserkalk at Płucki (Fig. 42) overdominated by Lagovilepis bogartensis (with rare Manticolepis winchelli documented with its M elements), associated Klapperilepis triangularis and sample Wtr−18 from Wietrznia where only M elements of Manticolepis (probably a relic population of M. gigas) have been found (Fig. 38A–H). The Pł−391 population variability is separately shown for adult elements (longer than 1 mm) with contours of extreme and modal morphologies added. Note that there is no apparent difference in the course of ontogeny and morphologic variability of platform shape between L. bogartensis and M. winchelli or M. gigas (despite fundamental differences in the apparatus organisation) whereas K. triangularis is different in all these respects (plus the dorsal process bending).

opencc-by-4.0Dec 2002View details →
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Fig. 41 in Emergence and collapse of the Frasnian conodont and ammonoid communities in the Holy Cross Mountains, Poland

Fig. 41. Palmatolepidid Lagovilepis bogartensis (Stauffer, 1938). A–J. Early population from the lower cephalopod limestone at Płucki, sample Pł−22; P1 (sp) elements ZPAL CXVI/656, 665, 1209, 657, 655, 1208 (A–F), P2 (oz) element ZPAL CXVI/658 (G), S0 (tr) element ZPAL CXVI/667 (H), S1 (lo) element ZPAL CXVI/668 (I), and M (ne) element ZPAL CXVI/663 (J). K–O. Late population from Kowala, samples Ko−149 (K, L, O) and Ko−151 (M, N); P1 (sp) elements ZPAL CXVI/491 and 492 (K, L), S3–4 (ke−hi) element ZPAL CXVI/1204 (M), and M (ne) elements ZPAL CXVI/1205 and 501 (N, O).

opencc-by-4.0Dec 2002View details →
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Fig. 37 in Emergence and collapse of the Frasnian conodont and ammonoid communities in the Holy Cross Mountains, Poland

Fig. 37. Palmatolepidid Manticolepis gigas (Miller and Youngquist, 1947) from the midFrasnian of Wietrznia II quarry, sample Wtr−5; P1 (sp) elements ZPAL CXVI/752, 753, 754, 751, and 750 (A–E), S1 (lo) element ZPAL CXVI/758 (F), S0 (tr) elements ZPAL CXVI/761 and 760 (G, H), P2 (oz) element ZPAL CXVI/755 and 762 (I, L), S3–4 (ke−hi) element ZPAL CXVI/759 (J), S2 (pl) element ZPAL CXVI/757 (K), and M (ne) element ZPAL CXVI/756 (M).

opencc-by-4.0Dec 2002View details →
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Fig. 27 in Emergence and collapse of the Frasnian conodont and ammonoid communities in the Holy Cross Mountains, Poland

Fig. 27. Late Ancyrodella from the late Frasnian of Płucki. A–F, K. Ancyrodella lobata Branson and Mehl, 1934 from the lower cephalopod limestone, sample Pł−22, P1 (sp) elements ZPAL CXVI/627, 625, 626, 624, 630, and 629 (A–F), and P2 (oz) element ZPAL CXVI/632 (K). G–J, L, M. Ancyrodella curvata Branson and Mehl, 1934 from the Upper Kellwasserkalk, sample Pł−391, P1 elements ZPAL CXVI/483, 1184, 484, 490, 632, 489, and 487 (G–I), M (ne) element ZPAL CXVI/490 (J), S3–4 (ke−hi) element ZPAL CXVI/489 (L), and S2 (pl) element ZPAL CXVI/487 (M). Magnifications shown by the bar scale in the upper left corner, except for G, J, L, M, and H with their own scales.

opencc-by-4.0Dec 2002View details →
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Fig. 33 in Emergence and collapse of the Frasnian conodont and ammonoid communities in the Holy Cross Mountains, Poland

Fig. 33. Palmatolepidids from the mid−Frasnian of Wietrznia. A–H. Kielcelepis ljashenkoae (Ovnatanova, 1976) from Wietrznia, sample Wtr−15; P1 (sp) elements ZPAL CXVI/1108 and 1120 (A, B), P2 (oz) element ZPAL CXVI/1109 (C), S0 (tr) element ZPAL CXVI/1122 (D), S1 (lo) element ZPAL CXVI /1110 (F), S2 (pl) elements ZPAL CXVI/1123 and 1102 (E–G), and S3–4 (ke−hi) element ZPAL CXVI/1124 (N). I–S. Kielcelepis hassi (Müller and Müller, 1957) from sample Wtr−16 (M, O, S) and Wtr−30 (I–L, N, P–R); S0 element ZPAL CXVI/ 1125 (M), P1 (sp) elements ZPAL CXVI/ 1130, 1128, 1127, and 1129 (I–L), M (ne) element ZPAL CXVI/1133 (N), S3–4 elements ZPAL CXVI/1126 and 1132 (O, Q), and P2 elements ZPAL CXVI/1135, 1131, and 1103 (P, R, S).

opencc-by-4.0Dec 2002View details →
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Fig. 26 in Emergence and collapse of the Frasnian conodont and ammonoid communities in the Holy Cross Mountains, Poland

Fig. 26. Variability and species distinctions of P1 (sp) elements in early Ancyrodella. Scattergrams of density of tuberculation quantified as a ratio of approximated platform area (platform length PL multiplied by its width W) to the number of denticles (except those of carina) and approximated area of the smooth surface on the ventral end of the platform (length of this area S multiplied by its lateral extend E) against element length which serves as an approximation of ontogenetic stage. Three successive samples from Wietrznia are represented by pairs of these scattergrams. That of sample Wtr−7 is A. rotundiloba (Bryant, 1921), sample Wtr−9 represents A. alata (Glenister and Klapper, 1966), and sample Wtr−13 A. rugosa Branson and Mehl, 1934.

opencc-by-4.0Dec 2002View details →
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Fig. 49 in Emergence and collapse of the Frasnian conodont and ammonoid communities in the Holy Cross Mountains, Poland

Fig. 49. Succession of palmatolepidid species in sections of the Frasnian and earliest Famennian representing probably relatively deeper (Płucki, Włochy) and shallower (Wietrznia) areas in the Holy Cross Mountains. Approximate percent contribution to samples shown by horizontal bars; provisional Ancyrodella−based zonation used to correlate sections (each lower zonal boundary defined on the evolutionary origin of its nominal species – they remain to be documented biometrically). Note that Klapperilepis triangularis and Conditolepis? linguiformis first appear in offshore areas and then expand to shallower environments. Also Lagovilepis bogartensis may be an open−sea species. Only K. praetriangularis survives the Frasnian–Famennian boundary event, probably being a relatively cold−water species. The record is too incomplete and punctuated to allow precise evolutionary studies but a general pattern of the evolution is shown with diagrammatic presentation of apparatuses.

opencc-by-4.0Dec 2002View details →
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Fig. 15 in Emergence and collapse of the Frasnian conodont and ammonoid communities in the Holy Cross Mountains, Poland

Fig. 15. Playfordia primitiva (Bischoff and Ziegler, 1957) from the early Frasnian of Wietrznia Iquarry, sample Wtr−9; elements ZPAL CXVI/1061 (A), 1062 (B), and 1060 (C).

opencc-by-4.0Dec 2002View details →
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Fig. 11 in Emergence and collapse of the Frasnian conodont and ammonoid communities in the Holy Cross Mountains, Poland

Fig. 11. The prioniodinid Pluckidina slupiensis sp. nov. from the early Frasnian of Włochy (sample Wł−R/A1) in the Holy Cross Mountains, P1 (sp) elements ZPAL CXVI/871 and 874 (A, B), P2 (oz) elements ZPAL CXVI/875 and 872 (C, D), S1 (lo) elements ZPAL CXVI/879 and 876 (E, F), S4 (hi) element ZPAL CXVI/880 (G), S2 (pl) elements ZPAL CXVI/877 and 878 (H, I; H holotype), S0 (tr) element ZPAL CXVI/873 (J), and M (ne) element ZPAL CXVI/881 (K).

opencc-by-4.0Dec 2002View details →
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Fig. 56 in Emergence and collapse of the Frasnian conodont and ammonoid communities in the Holy Cross Mountains, Poland

Fig. 56. Suture and growth lines and septal geometry of Frasnian goniatites from the Holy Cross Mountains. A, B. Acanthoclymenia genundewa (Clarke, 1898), suture lines of specimens ZPAL AmVII/1686 from Ściegnia and ZPAL AmVII/969 from Laskowa Góra (Kostomłoty).C–H. Koenenites lamellosus (Sandberger and Sandberger, 1856), suture lines and septum in lateral view of specimens ZPAL AmVII/1685 (also septal geometry, H) and 1687 from Ściegnia, ZPAL AmVII/970 from Laskowa, 1683 from Ściegnia, and ZPAL AmVII/1947 from Zamkowa Góra at Chęciny. I. Manticoceras lamed (Sandberger and Sandberger, 1850), specimen ZPAL AmVII/1558 from the lower cephalopod horizon at Płucki.J, K. Manticoceras adorfense (Wedekind, 1913) from the Upper Kellwasserkalk at Płucki, suture line and septal geometry of specimen ZPAL AmVII/1561 and growth line of ZPAL AmVII/1530.L, M. Archoceras varicosum (Drevermann, 1901) from the Upper Kellwasserkalk at Płucki, suture, growth line, and septal geometry of specimen ZPAL AmVII/1484. N–P. Aulatornoceras belgicum (Matern, 1931) from the Upper Kellwasserkalk at Płucki, suture, growth line, and septal geometry of specimens ZPAL AmVII/1504, 1512, and 1505.Q, R. Linguatornoceras sp. from the lower cephalopod horizon at Płucki, suture, growth line, and septal geometry of specimens ZPAL AmVII/1504, 1512, and 1505.S–U. Linguatornoceras sp. from the Upper Kellwasserkalk at Płucki, suture, growth lines and septal geometry of specimens ZPAL AmVII/1377, 1382, 1383, and 1523. V, X. Manticoceras drevermanni (Wedekind, 1913) from the Upper Kellwasserkalk at Płucki, suture, growth line, and septal geometry of specimens ZPALAmVII/1429, 610, and 1520. Y–AC. Crickites holzapfeli Wedekind, 1913 from the Upper Kellwasserkalk at Płucki, suture and growth lines of specimens ZPAL AmVII/1520, 1527, 606, and 1531 (also septal geometry). Scale given when suture was traced from single more or less complete septum, composite drawings out of scale.

opencc-by-4.0Dec 2002View details →
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Fig. 29 in Emergence and collapse of the Frasnian conodont and ammonoid communities in the Holy Cross Mountains, Poland

Fig. 29. Klapperina from the early Frasnian of the Holy Cross Mountains. A–E. Klapperina sp. from Wietrznia, sample Wtr−9, P1 (sp) elements ZPAL CXVI/1083, 1082, and 1081 (A–C), P2 (oz) element ZPAL CXVI/ 1093 (D), and S2 (pl) element ZPAL CXVI/ 1084 (E). F. Klapperina sp. indet. from Włochy, sample Wł−R/A1, P1 (sp) element ZPAL CXVI/916.

opencc-by-4.0Dec 2002View details →
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Fig. 10 in Emergence and collapse of the Frasnian conodont and ammonoid communities in the Holy Cross Mountains, Poland

Fig. 10. The Frasnian prioniodinid Pluckidina kielcensis sp. nov. from the early Frasnian of Wietrznia (sample Wtr−9), Holy Cross Mountains, P1 (sp) element ZPAL CXVI/1063 (A, holotype), P2 (oz) element ZPAL CXVI/1064 (B), S2 (pl) element ZPAL CXVI/1066 (C), S0 (tr) element ZPAL CXVI/1065 (D), S1 (lo) element ZPAL CXVI/1067 (E), S3 (ke) element ZPAL CXVI/1068 (F), S4 (hi) element ZPAL CXVI/1069 (G), and M (ne) element ZPAL CXVI/1070 (H).

opencc-by-4.0Dec 2002View details →
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Fig. 9 in Emergence and collapse of the Frasnian conodont and ammonoid communities in the Holy Cross Mountains, Poland

Fig. 9. The prioniodinid Dyminodina gen. nov. from the Frasnian of the Holy Cross Mountains. A–I, O–Q. Dyminodina planidentata sp. nov. A–I. Lower cephalopod limestone at Płucki population (sample Pł−22), P1 (sp) element ZPAL CXVI/598 (A), P2 (oz) element ZPAL CXVI/599 (B), S0 (tr) element ZPAL CXVI/601 (C), S2 (pl) element ZPAL CXVI/604 (D), S1 (lo) element ZPAL CXVI/602 (E), S4 (hi) element ZPAL CXVI/603 (F), and M (ne) element ZPAL CXVI/606 (G; holotype). O–Q. Early Frasnian population from Wietrznia (sample Wtr−5), S4 element ZPAL CXVI/712 (P), and M (ne) element ZPAL CXVI/713 (Q). H–J. Dyminodina anterodenticulata sp. nov. from the Upper Kellwasserkalk at Płucki (sample Pł−391), P1 element ZPAL CXVI/391 (H), M (ne) elements ZPAL CXVI/390 (I; holotype), and P2 element ZPAL CXVI/402 (J). K–Q. Dyminodina kovalensis sp. nov. from the topmost Frasnian at the Kowala Quarry, sample Ko−151, P1 element ZPAL CXVI/1191 (K), P2 element ZPAL CXVI/1192 (L), S4 (hi) element ZPAL CXVI/1196 (M), S2 element ZPAL CXVI/1194 (N), S0 (tr) element ZPAL CXVI/1193 (O), S2 (pl) element ZPAL CXVI/1195 (P), M element ZPAL CXVI/ 1197 (Q; holotype).

opencc-by-4.0Dec 2002View details →
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Fig. 54 in Emergence and collapse of the Frasnian conodont and ammonoid communities in the Holy Cross Mountains, Poland

Fig. 54. Non−gephuroceratid goniatites from the Upper Kellwasserkalk at Płucki. A–H. Archoceras varicosum (Drevermann, 1901), specimens ZPAL AmVII/1471, 626, 1478, 1477, 1479, 1473, 617, and unnumbered SEM picture. I–M. Aulatornoceras belgicum (Matern, 1931), specimens ZPALAmVII/616, 1510, 1505, 1506, and 628; note variation in conch proportions and ontogenetic changes in conch evoluteness. N–S. Linguatornoceras sp., specimens ZPAL AmVII/1380, 1727, 1725, 1374, 1376, and 1403; note variation in relative conch width. All × 2, except for H which is × 20 and P which is × 1.5.

opencc-by-4.0Dec 2002View details →
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Fig. 7. The prioniodinid Ligonodina pectinata Bassler, 1925 in Emergence and collapse of the Frasnian conodont and ammonoid communities in the Holy Cross Mountains, Poland

Fig. 7. The prioniodinid Ligonodina pectinata Bassler, 1925 from the Frasnian of the Holy Cross Mountains. A, C, H, I. Late Frasnian population from the lower cephalopod limestone at Płucki (sample Pł−22); P1 (sp) element ZPAL CXVI/ 621 (A), S0 (tr) elements ZPAL CXVI/618 and 617 (C, I), and S4 (hi) element ZPAL CXVI/622 (H). B, E, F, I, J. Population from the mid−Frasnian of Wietrznia (sample Wtr−5), S1 (lo) element ZPAL CXVI/698 (B, I), P2 (oz) element ZPAL CXVI/695 (E), S2 (pl) element ZPAL CXVI/704 (F), and S4 element ZPAL CXVI/699 (J). D, L. Population from the mid−Frasnian of Wietrznia (sample Wtr−13), S2 element ZPAL CXVI/830 (D) and M (ne) element ZPAL CXVI/832 (L). G, K. Population from the early Frasnian of Włochy (sample Wł R/A1), S0 element ZPAL CXVI/866 (G) and M (ne) element ZPAL CXVI/870 (K).

opencc-by-4.0Dec 2002View details →

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International Brain Laboratory public data

The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.

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Last verified 2026-04-29Open record