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qdgc Morocco
<p>QDGC tables delivered in geopackage file<br> - - - - - - - - - - - - - - - - - - - - - -<br> QDGC represents a way of making (almost) equal area squares covering a specific area to represent specific qualities of the area covered. The squares themselves are based on the degree squares covering earth. Around the equator we have 360 longitudinal lines , and from the north to the south pole we have 180 latitudinal lines. Together this gives us 64800 segments or tiles covering earth.<br> <br> <br> <br> <br> Within each geopackage file you will find a number of tables with these names:<br> <br> <br> <br> <br> -tbl_qdgc_01<br> -tbl_qdgc_02<br> -tbl_qdgc_03<br> -tbl_qdgc_04<br> -tbl_qdgc_05<br> -etc<br> <br> <br> <br> <br> The attributes for each table are:<br> <br> <br> <br> <br> qdgc Unique Quarter Degree Grid Cell reference string<br> area_reference Country<br> level_qdgc QDGC level<br> cellsize degrees decimal degree for the longitudal and latitudal length of the cell<br> lon_center Longitude center of the cell<br> lat_center Latitudal center of the cell<br> area_km2 Calculated area for the cell<br> geom Geometry<br> <br> <br> <br> <br> Metadata<br> --------<br> Geodata GCS_WGS_1984<br> Datum: D_WGS_1984<br> Prime Meridian: 0<br> <br> <br> <br> <br> Areas are calculated with different versions of Albers Equal Area Conic using the PostGIS function st_area. For the African continent I have used Africa Albers Equal Area Conic which will look like this:<br> - st_area(st_transform(geom, 102022))/1000000)<br> <br> <br> <br> <br> Licensing<br> ---------<br> Creative Commons Attribution 4.0 International<br> <br> <br> <br> <br> Conditions<br> ----------<br> Delivered to the user as-is. No guarantees. If you find errors, please tell me and I will try to fix it. Suggestions for improvements can be addressed to the github repository: https://github.com/ragnvald/qdgc<br> <br> <br> <br> <br> Thankyou<br> --------<br> The work has over the years been supported and received advice and moral support from many organisations and stakeholders. Here are some of them:<br> - Tanzania Wildlife Research Institute<br> - Dept of Biology, NTNU, Norway<br> - Norwegian Environment Agency<br> - Eivin Røskaft, Steven Prager, Howard Frederick, Julian Blanc, Honori Maliti, Paul Ramsey<br> <br> <br> <br> <br> References<br> ----------<br> * http://en.wikipedia.org/wiki/QDGC<br> * http://www.mindland.com/wp/projects/quarter-degree-grid-cells/about-qdgc/<br> * http://en.wikipedia.org/wiki/Lambert_azimuthal_equal-area_projection<br> * http://www.safe.com<br> <br> <br> <br> <br> <br> <br> <br> <br> Ragnvald Larsen<br> Trondheim 21th of January, 2021<br> <br> <br> <br> ragnvald@mindland.com<br> www.mindland.com</p>
FIGURE 2 in A new species of Aphelocheirus (Hemiptera: Heteroptera: Aphelocheiridae) from Morocco
FIGURE 2. Moulouya River, Berkane Province, near the old bridge connecting Berkane and Ras El Ma cities; the type locality of A. pemae n. sp.
Figure 17 in A new species of Halisaurus from the Late Cretaceous phosphates of Morocco, and the phylogenetical relationships of the Halisaurinae (Squamata: Mosasauridae)
Figure 17. Strict consensus tree of six most parsimonious trees (270 steps) showing the phylogenetic relationships of Halisaurus arambourgi sp. nov. and Halisaurinae among Mosasauridae.
Figure 16 in A new species of Halisaurus from the Late Cretaceous phosphates of Morocco, and the phylogenetical relationships of the Halisaurinae (Squamata: Mosasauridae)
Figure 16. Halisaurine skull reconstructions in dorsal view. A, Halisaurus platyspondylus (from Holmes & Sues, 2000); B, Halisaurus ortliebi (from Lingham-Soliar, 1996); C, Halisaurus arambourgi sp. nov.; D, Eonatator sternbergii (from Bardet & Pereda Suberbiola, 2001). Scale bar = 10 cm.
Figure 14 in A new species of Halisaurus from the Late Cretaceous phosphates of Morocco, and the phylogenetical relationships of the Halisaurinae (Squamata: Mosasauridae)
Figure 14. Comparisons of halisaurine quadrates in lateral (above) and posterior (below) views. A, Halisaurus platyspondylus (USNM 442450; from Holmes & Sues, 2000); B, Halisaurus ortliebi (IRSNB R 34; N.B. pers. observ.); C, Halisaurus arambourgi sp. nov. (private collection); D, Eonatator sternbergii (UPI R 163; N.B. pers. observ.). Scale bar = 2 cm.
Figure 6 in A new species of Halisaurus from the Late Cretaceous phosphates of Morocco, and the phylogenetical relationships of the Halisaurinae (Squamata: Mosasauridae)
Figure 6. Halisaurus arambourgi sp. nov. OCP DEK/GE 101, incomplete disarticulated skeleton, Late Cretaceous (Maastrichtian), Oulad Abdoun Basin, Morocco. Scale bar = 10 cm.
Figure 11 in A new species of Halisaurus from the Late Cretaceous phosphates of Morocco, and the phylogenetical relationships of the Halisaurinae (Squamata: Mosasauridae)
Figure 11. Halisaurus arambourgi sp. nov. A, OCP DEK/GE 100, pectoral girdle; B, OCP DEK/GE 101, pelvic girdle, Late Cretaceous (Maastrichtian), Oulad Abdoun Basin, Morocco, interpretative drawings. Abbreviations: am, anterior margin; As, astragalus; Co, coracoid; F, fibula; f, foramen; Fe, femur; gl, glenoid; Il, ilium; m, metapod; p, phalanx; Pa, parietal; pm, posterior margin; Pu, pubis; R, radius; Sc, scapula; T, tibia. Scale bar = 10 cm.
Figure 10 in A new species of Halisaurus from the Late Cretaceous phosphates of Morocco, and the phylogenetical relationships of the Halisaurinae (Squamata: Mosasauridae)
Figure 10. Halisaurus arambourgi sp. nov. A, OCP DEK/GE 100, pectoral girdle; B, OCP DEK/GE 101, pelvic girdle, Late Cretaceous (Maastrichtian), Oulad Abdoun Basin, Morocco. Scale bar = 10 cm.
Figure 1. A in A new species of Halisaurus from the Late Cretaceous phosphates of Morocco, and the phylogenetical relationships of the Halisaurinae (Squamata: Mosasauridae)
Figure 1. A, map showing the main phosphatic basins of Morocco; B, geographical occurrence of Halisaurus arambourgi sp. nov. in the Sidi Daoui zone of the Oulad Abdoun Basin; C, stratigraphical occurrence of the new species into the synthetic Maastrichtian phosphatic series of the Oulad Abdoun Basin. Abbreviations: Li, limestones; Ma, marls; Ph, phosphates.
Figure 15 in A new species of Halisaurus from the Late Cretaceous phosphates of Morocco, and the phylogenetical relationships of the Halisaurinae (Squamata: Mosasauridae)
Figure 15. Reconstruction of the skull and mandible of Halisaurus arambourgi in left lateral view. Scale bar = 10 cm.
Figure 13 in A new species of Halisaurus from the Late Cretaceous phosphates of Morocco, and the phylogenetical relationships of the Halisaurinae (Squamata: Mosasauridae)
Figure 13. Halisaurus arambourgi sp. nov. A, OCP DEK/GE 103, right humerus, radius and ulna in flexor view; B, OCP DEK/GE 100, right humerus in flexor view; C, OCP DEK/GE 102, right humerus in extensor view, Late Cretaceous (Maastrichtian), Oulad Abdoun Basin, Morocco, interpretative drawings. Abbreviations: dc, deltoid crest; ect, ectepicondylar process; eg, ectepicondylar groove; ent, entepicondylar process; pc, pectoral crest; pgp, postglenoid process; R, radius; s, scar; U, ulna. Scale bar = 5 cm.
Figure 9 in A new species of Halisaurus from the Late Cretaceous phosphates of Morocco, and the phylogenetical relationships of the Halisaurinae (Squamata: Mosasauridae)
Figure 9. Halisaurus arambourgi sp. nov. A, OCP DEK/GE 100, basicranium in anterodorsal view; B, OCP DEK/GE 102, basioccipital in ventral view; C–H, private collection, right quadrate in dorsal (C), ventral (D), lateral (E), medial (F), anterior (G) and posterior (H) views, Late Cretaceous (Maastrichtian), Oulad Abdoun Basin, Morocco, interpretative drawings. Abbreviations: co, condyle; bsp, basisphenoid; bt, basal tubera; ist, infrastapedial process; opi, opisthotic; pro, prootic; soc, supraoccipital; sp, stapedial pit; sst, suprastapedial process; ta, tympanic ala; tc, tympanic crest; tm, tympanic meatus. Scale bars = 2 cm.
Figure 12 in A new species of Halisaurus from the Late Cretaceous phosphates of Morocco, and the phylogenetical relationships of the Halisaurinae (Squamata: Mosasauridae)
Figure 12. Halisaurus arambourgi sp. nov. A, OCP DEK/GE 103, right humerus, radius and ulna in flexor view; B, OCP DEK/GE 100, right humerus in flexor view; C, OCP DEK/GE 102, right humerus in extensor view, Late Cretaceous (Maastrichtian), Oulad Abdoun Basin, Morocco. Scale bar = 5 cm.
Figure 3 in A new species of Halisaurus from the Late Cretaceous phosphates of Morocco, and the phylogenetical relationships of the Halisaurinae (Squamata: Mosasauridae)
Figure 3. Halisaurus arambourgi sp. nov., MNHN PMC 14, holotype, disarticulated cranium and associated vertebrae, Late Cretaceous (Maastrichtian), Oulad Abdoun Basin, Morocco, interpretative drawings. A, cranium in dorsal view; B, cranium in ventral view; C, cervical and dorsal vertebrae in ventral view; D, dorsal and isolated caudal vertebrae in ventral view. Abbreviations (and for Figs 5, 7): AA, atlas-axis; An, angular; Ar, articular; As, astragalum; Bc, basicranium; C, cervical vertebrae; Ca, caudal vertebrae; Co, coronoid; Cr, coracoid; D, dorsal vertebrae; De, dentary; F, fibula; Fe, femur; Fr, frontal; Hu, humerus; Il, ilium; Is, ischium; Ju, jugal; M, metapods; Mx, maxilla; P, pygal vertebrae; Pa, parietal; Pfr, prefrontal; Ph, phalanx; Pl, palatine; Pmx, premaxilla; Pofr, postorbitofrontal; Pt, pterygoid; Pu, pubis; Q, quadrate; Ra, radius; Sa, surangular; Sc, scapula; Sp, splenial; Sq, squamosal; St, supratemporal; T, tibia; V, indeterminated vertebrae. Scale bar = 10 cm.
Figure 7 in A new species of Halisaurus from the Late Cretaceous phosphates of Morocco, and the phylogenetical relationships of the Halisaurinae (Squamata: Mosasauridae)
Figure 7. Halisaurus arambourgi sp. nov. OCP DEK/GE 101, incomplete disarticulated skeleton, Late Cretaceous (Maastrichtian), Oulad Abdoun Basin, Morocco, interpretative drawings. Abbreviations as in Fig. 3. Scale bar = 10 cm.
Figure 2 in A new species of Halisaurus from the Late Cretaceous phosphates of Morocco, and the phylogenetical relationships of the Halisaurinae (Squamata: Mosasauridae)
Figure 2. Halisaurus arambourgi sp. nov., MNHN PMC 14, holotype, disarticulated cranium and associated vertebrae, Late Cretaceous (Maastrichtian), Oulad Abdoun Basin, Morocco. A, cranium in dorsal view; B, cranium in ventral view; C, cervical and dorsal vertebrae in ventral view; D, dorsal and isolated caudal vertebrae in ventral view. Scale bar = 10 cm.
Figure 8 in A new species of Halisaurus from the Late Cretaceous phosphates of Morocco, and the phylogenetical relationships of the Halisaurinae (Squamata: Mosasauridae)
Figure 8. Halisaurus arambourgi sp. nov. A, OCP DEK/GE 100, basicranium in anterodorsal view; B, OCP DEK/GE 102, basioccipital in ventral view; C–H, private collection, right quadrate in dorsal (C), ventral (D), lateral (E), medial (F), anterior (G) and posterior (H) views, Late Cretaceous (Maastrichtian), Oulad Abdoun Basin, Morocco. Scale bars = 2 cm.
Transport Starter Data Kit: Historical socio-transport data for Morocco
<p>This Transport Starter Data Kit contains historical annual data (1990–2021) on passenger and freight activity, segregated by mode and fuel. Additionally, historical data on energy intensities, load factors, vehicle stock, population (total, urban, rural, growth), and GDP (total, agriculture, construction, mining, manufacturing, service, energy, growth) are included in the kit, within the 'Data' tab. The historical data can be used as a foundation for transport-energy modelling and/or to identify areas of improvement. This data was verified through consultation with relevant stakeholders before publishing. The definition used for each vehicle mode is found in the 'Definitions' tab, and the description of each data observation status is found in the 'Notes' tab. All data sources are linked where possible.</p>
Fig. 7 in Exploring the limits of morphospace: Ontogeny and ecology of late Viséan ammonoids from the Tafilalt, Morocco
Fig. 7. Morphospace (UWI, umbilical width index; WER, whorl expansion rate; CWI, conch width index) with data of 3015 species of Palaeozoic ammonoids with additional points of the ammonoids from the early late Viséan of the Tafilalt (Morocco). Note that data points of juveniles (empty symbols) of Calygirtyoceras darkaouaense and Goniatites lazarus lie at the edge or outside of the cloud of 3015 species. Graph produced using JMP 11.
Fig. 5 in Exploring the limits of morphospace: Ontogeny and ecology of late Viséan ammonoids from the Tafilalt, Morocco
Fig. 5. Ammonoids from the early late Viséan, 12 km SE of Dar Kaoua (Tafilalt, Morocco). A, C. Calygirtyoceras darkaouaense Korn, Klug, and Mapes, 1999. A. PIMUZ 31516 (A1), Goniatites lazarus with a juvenile specimen in oblique-ventral (A2), lateral (A3), and ventral (A4) views. C. PIMUZ 31513, fragmentary adult in lateral view (C1), cross section (C2). B. Entogonites bucheri sp. nov., PIMUZ 31509, holotype in lateral (B1) and ventral (B2) views. All specimens whitened with NH4Cl-sublimate.
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