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41 results for “Nama”

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zenodo32/100

Pemasangan Nama TPA dan Mesjid

<p>pemasangan papan nama mushollah Bilal Bin Rabah,&nbsp;&nbsp;Pemasangan papan nama TPA&nbsp;&nbsp;Al-Fattah,&nbsp;pemasangan papan nama Mesjid Syaikh Al-Matiri&nbsp;Kampung bendi,</p>

opencc-by-4.0Nov 2020View details →
zenodo32/100

Pemasangan Papan Nama Masjid

<p>Rabu, 28 Oktober 2020</p> <p>Mahasiswa melakukan pemasangan papan nama masjid di masjid Syaikh Al-Maitiri yang berada di Dusun Kampung Bendi.Proses pemasangan berjalan dengan baik dan selesai dipasang/terealisasikan.</p>

opencc-by-4.0Nov 2020View details →
zenodo32/100

Pemasangan Papan Nama Mushollah

<p>Selasa, 27 Oktober 2020</p> <p>Mahasiswa melakukan pemasangan papan nama mushollah yang berada di Dusun Kampung Bendi.Proses pemasangan berjalan dengan baik dan selesai dipasang/terealisasikan.</p>

opencc-by-4.0Nov 2020View details →
zenodo32/100

Pembuatan Tulisan Nama Setiap Batas Dusun

<p>Sabtu, 17 Oktober 2020</p> <p>Mahasiswa membuat tulisan/cetakan nama setiap batas dusun.Proses pembuatan tersebut berjalan dengan lancar dan selesai dibuat.</p>

opencc-by-4.0Nov 2020View details →
dryad32/100

Data from: Taphonomy of the Ediacaran fossil Pteridinium simplex preserved three-dimensionally in mass flow deposits, Nama Group, Namibia

Ediacara-type fossils are found in a diverse array of preservational styles, implying that multiple taphonomic mechanisms might have been responsible for their preservational expression. For many Ediacara fossils, the "death mask" model has been invoked as the primary taphonomic pathway. The key to this preservational regime is the replication or sealing of sediments around the degrading organisms by microbially induced precipitation of authigenic pyrite, leading toward fossil preservation along bedding planes. Nama-style preservation, on the other hand, captures Ediacaran organisms as molds and three-dimensional casts within coarse-grained mass flow beds, and has been previously regarded as showing little or no evidence of a microbial preservational influence. To further understand these two seemingly distinct taphonomic pathways, we investigated the three-dimensionally preserved Ediacaran fossil Pteridinium simplex from mass flow deposits of the upper Kliphoek Member, Dabis Formation, Kuibis Subgroup, southern Namibia. Our analysis, using a combination of petrographic and micro-analytical methods, shows that Pteridinium simplex vanes are replicated with minor pyrite, but are most often represented by open voids that can be filled with secondary carbonate material; clay minerals are also found in association with the vanes, but their origin remains unresolved. The scarcity of pyrite and the development of voids are likely related to oxidative weathering and it is possible that microbial activities and authigenic pyrite may have contributed to the preservation of Pteridinium simplex; however, any microbes growing on P. simplex vanes within mass flow deposits were unlikely to have formed thick mats as envisioned in the death mask model. Differential weathering of replicating minerals and precipitation of secondary minerals greatly facilitate fossil collection and morphological characterization by allowing Pteridinium simplex vanes to be parted from the massive hosting sandstone.

opencc-zeroDec 2012View details →
zenodo32/100

FIGURES 41–56. Nama richtersveldiana n in Soil insect research in South Africa. 1. A new genus of terricolous weevils with four new species from the Richtersveld National Park (Coleoptera: Curculionidae: Entiminae: Trachyphloeini)

FIGURES 41–56. Nama richtersveldiana n. sp., paratype. Sternum VIII of female (41); gonocoxites (45); spermatheca (49); aedagus (53). Nama pentamera n. sp., paratype. Sternum VIII of female (42); gonocoxites (46); spermatheca (50); aedagus (54). Nama iuliae n. sp., holotype, paratype. Sternum VIII of female (43); gonocoxites (47); spermatheca, fragment (51); aedagus (55). Nama erikae n. sp., paratype. Sternum VIII of female (44); gonocoxites (48); spermatheca (52); aedagus (56). Bars: Fig 53: 500 Μm; figs 41–48, 54–56: 250 Μm; figs 49–51: 100 Μm

opennotspecifiedDec 2013View details →
zenodo32/100

FIGURES 21–30. Nama iuliae n in Soil insect research in South Africa. 1. A new genus of terricolous weevils with four new species from the Richtersveld National Park (Coleoptera: Curculionidae: Entiminae: Trachyphloeini)

FIGURES 21–30. Nama iuliae n. sp., holotype. Body (21, 22); elytra (23); rostrum, dorsal (24), dorso-lateral (25), lateral (26); pronotum (27); fore tibia (28); ventrites (29); antenna (30). Bar: 1 mm.

opennotspecifiedDec 2013View details →
zenodo32/100

FIGURES 31–40. Nama erikae n in Soil insect research in South Africa. 1. A new genus of terricolous weevils with four new species from the Richtersveld National Park (Coleoptera: Curculionidae: Entiminae: Trachyphloeini)

FIGURES 31–40. Nama erikae n. sp., paratype. Body (31, 32); elytra (33); rostrum, dorsal (34), dorso-lateral (35), lateral (36); pronotum (37); fore tibia (38); ventrites (39); antenna (40). Bar: 1 mm.

opennotspecifiedDec 2013View details →
zenodo32/100

FIGURES 11–20. Nama pentamera n in Soil insect research in South Africa. 1. A new genus of terricolous weevils with four new species from the Richtersveld National Park (Coleoptera: Curculionidae: Entiminae: Trachyphloeini)

FIGURES 11–20. Nama pentamera n. sp., paratype. Body (11, 12); elytra (13); rostrum, dorsal (14), dorso-lateral (15), lateral (16); pronotum (17); fore tibia (18); ventrites (19); antenna (20). Bar: 1 mm.

opennotspecifiedDec 2013View details →
zenodo32/100

FIGURES 1–10. Nama richtersveldiana n in Soil insect research in South Africa. 1. A new genus of terricolous weevils with four new species from the Richtersveld National Park (Coleoptera: Curculionidae: Entiminae: Trachyphloeini)

FIGURES 1–10. Nama richtersveldiana n. sp., paratype. Body (1, 2); elytra (3); rostrum, dorsal (4), dorso-lateral (5), lateral (6); pronotum (7); apex of fore tibia (8); ventrites (9); antenna (10). Bar: 1 mm.

opennotspecifiedDec 2013View details →
zenodo32/100

On following pages 20 Crete Pıpıstre le (Prpısrrelus crencas) 21 Hanaks Pıpıstre Ie Pıpıstrs us hanak 22 Nathus u Pıpıstrel e Pıpıstne us namas » 23 Made ra Ppı tre le Hpvsrre us maderensrs) 24 Kuh s Pıpı tre le Pıpıstrelus kuh r) 25 Dusky Ppıstrele Pıpıstre us hespendus) 26 Rusty Pıpı tre e Ffipısrıs us ıuslıcus) 27 Tny Pp: trele Pıpıstra us nanu us) 28 Ae en Pıpıstre e (Hpıstre us nexspectatus) 29 Mount Gargue Pıpı tre e ñpısrra usaem) 30 Dares Salaam Ppıstre e Pıpısrrs us permxms) 31 Receys Ppı trele Pıpıstra us raœyr) 32 Dhofar Pıp trele Hpısrrs us dhofarenssb 33 Japanese Ppıstre e Pıpıstre us abramus) 34 Endo Ppı tre e Pıpıstrısl us sudor) 35 Sturdees Pıpıstrele Pıpıstre us snırdeeı) 36 Javan Pıpıstrele (Pıpıstre us ¡avamcusl 37 ndıan Pıp trele Hpıstrel us command/a) 38 Kelaans Pıp stre e Hpısrrs usceylonıcııs) 39 Lea tPıpıstrelle Pıpıstral us tenus) 40 Mount Popa Hpıstrelle Ftpıstre usparercuus) 41 Narrcıwwınged Ppstrele (Pıpısrre us stenopterus) 42 Mnahessa Pıpıstre e ñpısrre us mnahassae) 43 Greater Papuan Hp: trele Pıpısrrelus nus) 44 Lessef Papuan Pıpı trelle (Hpısrre us pıpuanus) 45 New Gu nee Pıpıstrelle (Pıpısrrelusangulams) 46 Wattss Ppıstfe Ie (Hpısrrul us watts!) 47 Northern Pıpıstre Ie Pıpıstra us westmsi 48 Forest Pıpısuelle Rpıstralusadamsı) in Vespertilionidae

On following pages 20 Crete Pıpıstre le (Prpısrrelus crencas) 21 Hanaks Pıpıstre Ie Pıpıstrs us hanak 22 Nathus u Pıpıstrel e Pıpıstne us namas » 23 Made ra Ppı tre le Hpvsrre us maderensrs) 24 Kuh s Pıpı tre le Pıpıstrelus kuh r) 25 Dusky Ppıstrele Pıpıstre us hespendus) 26 Rusty Pıpı tre e Ffipısrıs us ıuslıcus) 27 Tny Pp: trele Pıpıstra us nanu us) 28 Ae en Pıpıstre e (Hpıstre us nexspectatus) 29 Mount Gargue Pıpı tre e ñpısrra usaem) 30 Dares Salaam Ppıstre e Pıpısrrs us permxms) 31 Receys Ppı trele Pıpıstra us raœyr) 32 Dhofar Pıp trele Hpısrrs us dhofarenssb 33 Japanese Ppıstre e Pıpıstre us abramus) 34 Endo Ppı tre e Pıpıstrısl us sudor) 35 Sturdees Pıpıstrele Pıpıstre us snırdeeı) 36 Javan Pıpıstrele (Pıpıstre us ¡avamcusl 37 ndıan Pıp trele Hpıstrel us command/a) 38 Kelaans Pıp stre e Hpısrrs usceylonıcııs) 39 Lea tPıpıstrelle Pıpıstral us tenus) 40 Mount Popa Hpıstrelle Ftpıstre usparercuus) 41 Narrcıwwınged Ppstrele (Pıpısrre us stenopterus) 42 Mnahessa Pıpıstre e ñpısrre us mnahassae) 43 Greater Papuan Hp: trele Pıpısrrelus nus) 44 Lessef Papuan Pıpı trelle (Hpısrre us pıpuanus) 45 New Gu nee Pıpıstrelle (Pıpısrrelusangulams) 46 Wattss Ppıstfe Ie (Hpısrrul us watts!) 47 Northern Pıpıstre Ie Pıpıstra us westmsi 48 Forest Pıpısuelle Rpıstralusadamsı)

opennotspecifiedOct 2019View details →
zenodo32/100

Distribution. Occurs throughout the semi-arid Succulent Karoo and Nama Karoo biomes within parts of Northern Cape, Western Cape, and Eastern Cape provinces, South Africa. in Muridae

Distribution. Occurs throughout the semi-arid Succulent Karoo and Nama Karoo biomes within parts of Northern Cape, Western Cape, and Eastern Cape provinces, South Africa.

opennotspecifiedNov 2017View details →
dryad32/100

Data from: Taphonomy of the Ediacaran fossil Pteridinium simplex preserved three-dimensionally in mass flow deposits, Nama Group, Namibia

Open the record for dataset details and reuse information.

publicNov 2013View details →
zenodo28/100

Figure 3 from: Musfiroh I, Megawati G, Diah Herawati DM, Nama Putra O, Sylvia Nurrasjid E (2023) Molecular dynamic of omega-3 compounds as an anti-obesity agent into GPR-120 receptor. Pharmacia 70(4): 1541-1548. https://doi.org/10.3897/pharmacia.70.e115501

Figure 3 A. Visualization of interactions between docosahexaenoic acid and receptors (GPR120 (4GRV)) and B. Visualization of molecular docking between the receptor GPR120 (4GRV) and docosahexaenoic acid.

opencc-by-4.0Dec 2023View details →
zenodo28/100

Figure 2 from: Musfiroh I, Megawati G, Diah Herawati DM, Nama Putra O, Sylvia Nurrasjid E (2023) Molecular dynamic of omega-3 compounds as an anti-obesity agent into GPR-120 receptor. Pharmacia 70(4): 1541-1548. https://doi.org/10.3897/pharmacia.70.e115501

Figure 2 A. Visualization of interactions between Neurotensin 8–13 and receptors (4GRV) and B. Visualization of molecular docking between the receptor 4GRV and natural ligand.

opencc-by-4.0Dec 2023View details →
zenodo28/100

Figure 1 from: Musfiroh I, Megawati G, Diah Herawati DM, Nama Putra O, Sylvia Nurrasjid E (2023) Molecular dynamic of omega-3 compounds as an anti-obesity agent into GPR-120 receptor. Pharmacia 70(4): 1541-1548. https://doi.org/10.3897/pharmacia.70.e115501

Figure 1 A. Neurotensin receptor (4GRV) and B. Overlay of the docked pose of Neurotensin 8–13 with the co-crystallized ligand 4GRV.

opencc-by-4.0Dec 2023View details →
zenodo28/100

Figure 4 from: Musfiroh I, Megawati G, Diah Herawati DM, Nama Putra O, Sylvia Nurrasjid E (2023) Molecular dynamic of omega-3 compounds as an anti-obesity agent into GPR-120 receptor. Pharmacia 70(4): 1541-1548. https://doi.org/10.3897/pharmacia.70.e115501

Figure 4 RMSD (a) and RMSF (b) value of docosahexaenoic acid (blue), eicosapentaenoic acid (maroon), and heneicosapentaenoic acid (green).

opencc-by-4.0Dec 2023View details →
zenodo28/100

Figure 5 from: Musfiroh I, Megawati G, Diah Herawati DM, Nama Putra O, Sylvia Nurrasjid E (2023) Molecular dynamic of omega-3 compounds as an anti-obesity agent into GPR-120 receptor. Pharmacia 70(4): 1541-1548. https://doi.org/10.3897/pharmacia.70.e115501

Figure 5 SASA plot of docosahexaenoic acid (blue), eicosapentaenoic acid (maroon), and heneicosapentaenoic acid (green).

opencc-by-4.0Dec 2023View details →
zenodo28/100

Distribution. Upper and Lower Karoo of the Nama Karoo biome, South Africa. in Macroscelididae

Distribution. Upper and Lower Karoo of the Nama Karoo biome, South Africa.

opennotspecifiedJul 2018View details →
zenodo28/100

Dataset for: Magnetic Mineralogy and Paleomagnetic Record of the Nama Group: Implications for Large-Scale Remagnetization of West Gondwanaland and Ediacaran Geomagnetic Instability

Open the record for dataset details and reuse information.

opencc-by-4.0Oct 2024View details →

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