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36 results for “Ternate”
ANALISIS KESALAHAN DALAM MENYELESAIKAN SOAL EKSPONEN TERHADAP SISWA KELAS IX SMP NEGERI 3 KOTA TERNATE
<p><span>T</span><span>ujuan penelitian ini adalah untuk mengetahui jenis-jenis kesalahan dan faktor-faktor kesalahan dalam menyelesaikan soal eksponen yang dilakukan siswa. Metode yang<span> </span>digunakan dalam penelitian ini ialah pendekatan kualitatif. Dengan penedekatan kualitatif, peneliti bertindak sebagai instrumen utama sehingga dapat berinteraksi langsung dengan siswa yang menjadi responden dalam penelitian ini agar dapat mengetahui lebih dalam mengenai hal-hal yang berhubungan dengan kesalahan siswa. Penelitian ini dilaksanakan di SMP Negeri 3 Kota Ternate, dengan yang akan dijadikan responden ialah siswa kelas IX A yang berjumlah 29 siswa, akan tetapi sewaktu penelitian ini dilaksanakan hanya terdapat 25 siswa yang hadir. Berdasarkan analisis terhadap hasil tes dan wawancara pada siswa mengenai kesalahan-kesalahan yang dilakukan dalam menyelesaikan soal-soal eksponen, dapat diuraikan sebagai berikut: (1.) Berdasarkan hasil tes<span> </span>dan wawancara yang dilakukan peneliti dengan siswa diketahui bahwa siswa <span> </span>melakukan kesalahan notasi dan melakukan kesalahan operasi</span><span> sebanyak 13 siswa</span><span>. (2.) Kesalahan yang dilakukan siswa </span><span>adalah</span><span> kesalahan konsep dan kesalahan notasi</span><span> sebanyak 21</span><span>. (3.) Kesalahan yang dilakukan siswa </span><span>adalah </span><span>kesalahan konsep dan ceroboh</span><span>, sebnyak 24. </span><span><span> </span>(4.) Kesalahan yang dilakukan siswa adalah kesalahan operasi. (5.) Kesalahan yang dilakukan siswa kesalahan kecerobohan </span><span>sebanyak 21 siswa.</span></p>
Meningkatkan Hasil Belaja Siswa Kelas VIII SMP Islam Kastela Kota Ternate Melalui Penerapan Model Pembelajaran Kooperatif Tipe CTL (Contextual Teaching And Learning)
<p><span>T</span><span>ujuan </span><span>penelitian ini yaitu </span><span>untuk mengetahui peningkatan pembelajaran kooperatif<span> </span>tipe<span> </span><em>CTL<span> </span>(Contextual<span> </span>Teaching<span> </span>And<span> </span>Learning)<span> </span></em>yang<span> </span>dilakukan<span> </span>oleh<span> </span>guru<span> </span>terhadap</span><span> peserta didik</span><span>.<span> </span>pada<span> </span>materi</span><span> Usaha dan Enegri</span><span>.<span> </span>Metode yang digunakan dalam penelitian ini adalah Penelitian Tindakan Kelas<span> </span>(PTK) yang terdiri dari dua siklus. Siklus I dilaksanakan dalam dua kali tindakan</span><span> </span><span>dan siklus II juga dilakukan dalam dua kali tindakan.<span> </span>Tahapan<span> </span>pelaksanaan<span> </span>penelitian<span> </span>tindakan<span> </span>kelas<span> </span>(PTK)<span> </span>meliputi<span> </span>perencanaan,<span> </span>pelaksanaan, Pengamatan, dan refleksi. Hasil penelitian ini menunjukan bahwa<span> </span>penerapan pembelajaran<span> </span><em>CTL (Contextual Teaching And Learning)<span> </span></em>pada siklus I<span> </span>terdapat nilai rata –rata 56,60% dari 25 </span><span>peserta didik</span><span> di siklus ini </span><span>peserta didik</span><span> belum memenuhi<span> </span>kriteria ketuntasa</span><span>n</span><span> sedangkan pada siklus II nilai rata-rata<span> </span>(77,20%) mengalami<span> </span>ketuntasan<span> </span>sehingga<span> </span>dapat<span> </span>disimpulkan<span> </span>bahwa<span> </span>penerapan<span> </span>model<span> </span>pembelajaran<span> </span>kooperatif tipe <em>CTL </em>dapat meningkatkan hasil belajar Peserta didik<span> </span>Kelas VIII<span> </span>SMP<span> </span></span><span>Islam Kasetela </span><span>Kota<span> </span>Ternate</span></p>
Distribution. Sulawesi and adjacent Is (Buton, Kabaena, Muna, Peleng, Lembeh, and on some of the Togian Is); thought to be extinct on Selayar I. Pigs have been widely domesticated through the Indonesian archipelago and beyond. This primarily involved the Eurasian Wild Pig (S. scrofa), but also S. celebensis, the only other species of pig successfully domesticated. Mitochondrial DNA studies of the dispersion of these domesticated forms agree on three major dispersal events, two involving S. scrofa and one S. celebensis. Evidence supports an early human-mediated translocation of S. celebensis to Flores and Timor and two later, separate human-mediated dispersals of domestic pig through islands of SE Asia into Oceania. In addition to Flores and Timor, S. celebensis is also thought to occur in its domesticated form on Halmahera, Lendu, Roti, and Savur Is, and even on Simeulue and Nias Is to the W of Sumatra and far from its island of origin, Sulawesi. In the Moluccas, and possibly elsewhere in this region, introduced S. celebensis are thought to have hybridized with other introduced pigs of S. scrofa derivation, and apparent hybrids between these species are now reported to survive on a number of islands, including Salawatti, Great Kei, Dobu, Seram, Ambon, Bacan, Ternate, Morotai, and New Guinea. It is also reported that in the 19" century the sows of domestic pigs in Sulawesi frequently mated with wild animals, after which they returned to their villages. in Suidae
Distribution. Sulawesi and adjacent Is (Buton, Kabaena, Muna, Peleng, Lembeh, and on some of the Togian Is); thought to be extinct on Selayar I. Pigs have been widely domesticated through the Indonesian archipelago and beyond. This primarily involved the Eurasian Wild Pig (S. scrofa), but also S. celebensis, the only other species of pig successfully domesticated. Mitochondrial DNA studies of the dispersion of these domesticated forms agree on three major dispersal events, two involving S. scrofa and one S. celebensis. Evidence supports an early human-mediated translocation of S. celebensis to Flores and Timor and two later, separate human-mediated dispersals of domestic pig through islands of SE Asia into Oceania. In addition to Flores and Timor, S. celebensis is also thought to occur in its domesticated form on Halmahera, Lendu, Roti, and Savur Is, and even on Simeulue and Nias Is to the W of Sumatra and far from its island of origin, Sulawesi. In the Moluccas, and possibly elsewhere in this region, introduced S. celebensis are thought to have hybridized with other introduced pigs of S. scrofa derivation, and apparent hybrids between these species are now reported to survive on a number of islands, including Salawatti, Great Kei, Dobu, Seram, Ambon, Bacan, Ternate, Morotai, and New Guinea. It is also reported that in the 19" century the sows of domestic pigs in Sulawesi frequently mated with wild animals, after which they returned to their villages.
Subspecies and Distribution. M.a.aterPeters,1866—Sulawesi(includingPelengI),SulaIs(Sanana),andMoluccas(Halmahera,Ternate,Bacan,Buru,Ambon,andSeramIs). M. a. nugax G. M. Allen & Coolidge, 1940 — Vietnam, WC Thailand, Peninsular Malaysia, Nias I, N Borneo (Sabah), and the Philippines in Luzon and the Calamian Group (Culion I). in Vespertilionidae
Subspecies and Distribution. M.a.aterPeters,1866—Sulawesi(includingPelengI),SulaIs(Sanana),andMoluccas(Halmahera,Ternate,Bacan,Buru,Ambon,andSeramIs). M. a. nugax G. M. Allen & Coolidge, 1940 — Vietnam, WC Thailand, Peninsular Malaysia, Nias I, N Borneo (Sabah), and the Philippines in Luzon and the Calamian Group (Culion I).
Subspecies and Distribution. K.p.pictaPallas,1767—India(Rajasthan,Gujarat,Maharashtra,Goa,Karnataka,AndhraPradesh,Kerala,TamilNadu,Sikkim,WestBengal,Odisha,andAssam),SriLanka,CNepal,Bangladesh,Myanmar,Thailand,Laos,Vietnam,Cambodia,PeninsularMalaysia,Sumatra,Java,BaliI,LombokI,andMoluccas(Halmahera,Ternate,andAmbonIs). K. p. bellissima Thomas, 1906 — SE China (Guizhou, Guangxi, Guangdong, and Jiangxi), including Hainan I. in Vespertilionidae
Subspecies and Distribution. K.p.pictaPallas,1767—India(Rajasthan,Gujarat,Maharashtra,Goa,Karnataka,AndhraPradesh,Kerala,TamilNadu,Sikkim,WestBengal,Odisha,andAssam),SriLanka,CNepal,Bangladesh,Myanmar,Thailand,Laos,Vietnam,Cambodia,PeninsularMalaysia,Sumatra,Java,BaliI,LombokI,andMoluccas(Halmahera,Ternate,andAmbonIs). K. p. bellissima Thomas, 1906 — SE China (Guizhou, Guangxi, Guangdong, and Jiangxi), including Hainan I.
Subspecies and Distribution. P. b. breviceps Waterhouse, 1839 — E mainland Australia in New South Wales, Victoria, and South Australia, extending into SE South Australia; also Tasmania (where may be introduced). P. b. ariel Gould, 1842 — N Western Australia through N Northern Territory, including Tiwi Is and Groote Eylandt. Pb. longicaudatus Longman, 1924 — N & E Queensland, including Normanby I (off Russell River, S of Cairns). P. b. papuanus Thomas, 1888 — Moluccas (Halmahera, Ternate I, Bacan Is, Gebe I, Kai Besar I); and New Guinea, including West Papuan Is (Misool, Salawati), Adi I (off S Bomberai = Fakfak Peninsula), islands in Cenderawasih (= Geelvink) Bay (Yapen, Numfoor), islands off N coast (Bagabag, Bam, Blup Blup, Kadovar, Karkar, Koil, Vokeo, Wei), Bismarck Archipelago (New Britain, Duke of York), and islands off SE peninsula (Fergusson, Goodenough, Sudest, Woodlark, Misima, Normanby). in Petauridae
Subspecies and Distribution. P. b. breviceps Waterhouse, 1839 — E mainland Australia in New South Wales, Victoria, and South Australia, extending into SE South Australia; also Tasmania (where may be introduced). P. b. ariel Gould, 1842 — N Western Australia through N Northern Territory, including Tiwi Is and Groote Eylandt. Pb. longicaudatus Longman, 1924 — N & E Queensland, including Normanby I (off Russell River, S of Cairns). P. b. papuanus Thomas, 1888 — Moluccas (Halmahera, Ternate I, Bacan Is, Gebe I, Kai Besar I); and New Guinea, including West Papuan Is (Misool, Salawati), Adi I (off S Bomberai = Fakfak Peninsula), islands in Cenderawasih (= Geelvink) Bay (Yapen, Numfoor), islands off N coast (Bagabag, Bam, Blup Blup, Kadovar, Karkar, Koil, Vokeo, Wei), Bismarck Archipelago (New Britain, Duke of York), and islands off SE peninsula (Fergusson, Goodenough, Sudest, Woodlark, Misima, Normanby).
Subspecies and Distribution. P.o.ornatusGray,1860—EtipofNSulawesi,andthelargerNorthMoluccanIs(Halmahera,Bacan,andMorotai). P. o. matabiru Flannery & Boeadi, 1995 — smaller North Moluccan Is (Ternate and Tidore). in Phalangeridae
Subspecies and Distribution. P.o.ornatusGray,1860—EtipofNSulawesi,andthelargerNorthMoluccanIs(Halmahera,Bacan,andMorotai). P. o. matabiru Flannery & Boeadi, 1995 — smaller North Moluccan Is (Ternate and Tidore).
Distribution. Talaud Is (Karakelong), Sangihe Is (Sangihe and Siau), Sulawesi (including Togian Is, Banggai Is, Kabaena, Muna, Buton, and Hoga Is), Sula Is (Mangole and Sanana), and C Moluccas (Morotai, Halmahera, Bacan, and smaller Ternate and Bau Is). in Pteropodidae
Distribution. Talaud Is (Karakelong), Sangihe Is (Sangihe and Siau), Sulawesi (including Togian Is, Banggai Is, Kabaena, Muna, Buton, and Hoga Is), Sula Is (Mangole and Sanana), and C Moluccas (Morotai, Halmahera, Bacan, and smaller Ternate and Bau Is).
Subspecies and Distribution. E.s.spelaecaDobson,1871—NW,S&NEIndia(Uttarakhand,AndhraPradesh,Karnata-ka,Kerala,TamilNadu,Sikkim,Assam,Meghalaya,Nagaland,Manipur,andMizoram),WNepal,Myanmar,SChina(YunnanandSWGuangxi),Indochina,MalayPeninsula,Sumatra,andJava;alsoonAndamanIsandTiomanI. E.s.glandiferaLawrence,1939—LesserSundaIs(Bali,Lombok,Sumba,Timor),Philip-pines(includingPalawanI),SSulawesi(includingMunaI),andSulaIs(Sanana). E.s.rosenbergiiJentink,1889—NSulawesiandNMoluccas(Halmahera,Ternate,Tidore,andBacanIs). E. s. winnyae Maharadatunkamsi & Kitchener, 1997 — Borneo. in Pteropodidae
Subspecies and Distribution. E.s.spelaecaDobson,1871—NW,S&NEIndia(Uttarakhand,AndhraPradesh,Karnata-ka,Kerala,TamilNadu,Sikkim,Assam,Meghalaya,Nagaland,Manipur,andMizoram),WNepal,Myanmar,SChina(YunnanandSWGuangxi),Indochina,MalayPeninsula,Sumatra,andJava;alsoonAndamanIsandTiomanI. E.s.glandiferaLawrence,1939—LesserSundaIs(Bali,Lombok,Sumba,Timor),Philip-pines(includingPalawanI),SSulawesi(includingMunaI),andSulaIs(Sanana). E.s.rosenbergiiJentink,1889—NSulawesiandNMoluccas(Halmahera,Ternate,Tidore,andBacanIs). E. s. winnyae Maharadatunkamsi & Kitchener, 1997 — Borneo.
Distribution. Morotai, Halmahera, and Bacan Is, Moluccas, Indonesia, and perhaps surrounding islands in entire archipelago (e.g. Ternate). in Muridae
Distribution. Morotai, Halmahera, and Bacan Is, Moluccas, Indonesia, and perhaps surrounding islands in entire archipelago (e.g. Ternate).
Figure A3 from: de Gier W, Fransen CHJM (2018) Odontonia plurellicola sp. n. and Odontonia bagginsi sp. n., two new ascidian-associated shrimp from Ternate and Tidore, Indonesia, with a phylogenetic reconstruction of the genus (Crustacea, Decapoda, Palaemonidae). ZooKeys 765: 123-160. https://doi.org/10.3897/zookeys.765.25277
Figure A3 Variety in dactylar morphology of all currently known Odontonia species (setae omitted). Note the amount of distal scales, presence of an additional and accessory tooth, size of the dactylus, and the presence of denticles. A O. compacta (Bruce, 1996) B O. bagginsi sp. n. C O. katoi (Kubo, 1940) D O. maldivensis Fransen, 2006 E O. rufopunctata Fransen, 2002 F O. seychellensis Fransen, 2002 G O. sibogae (Bruce, 1972) H O. simplicipes (Bruce, 1996) I O. plurellicola sp. n.
Figure A2 from: de Gier W, Fransen CHJM (2018) Odontonia plurellicola sp. n. and Odontonia bagginsi sp. n., two new ascidian-associated shrimp from Ternate and Tidore, Indonesia, with a phylogenetic reconstruction of the genus (Crustacea, Decapoda, Palaemonidae). ZooKeys 765: 123-160. https://doi.org/10.3897/zookeys.765.25277
Figure A2 Variety in antennular peduncle. Note the well-developed ventromedial tooth in A, B, C and the amount of plumose hairs in B and C. A O. katoi (Kubo, 1940) B O. plurellicola sp. n. C O. sibogae (Bruce, 1972).
Figure 9 from: de Gier W, Fransen CHJM (2018) Odontonia plurellicola sp. n. and Odontonia bagginsi sp. n., two new ascidian-associated shrimp from Ternate and Tidore, Indonesia, with a phylogenetic reconstruction of the genus (Crustacea, Decapoda, Palaemonidae). ZooKeys 765: 123-160. https://doi.org/10.3897/zookeys.765.25277
Figure 9 Odontonia bagginsi sp. n., ovigerous female PoCL 3.40 mm (MZB Cru 4733). A anterior appendages, dorsal view B anterior appendages, lateral view. Scale bar: 1 mm.
Figure A1 from: de Gier W, Fransen CHJM (2018) Odontonia plurellicola sp. n. and Odontonia bagginsi sp. n., two new ascidian-associated shrimp from Ternate and Tidore, Indonesia, with a phylogenetic reconstruction of the genus (Crustacea, Decapoda, Palaemonidae). ZooKeys 765: 123-160. https://doi.org/10.3897/zookeys.765.25277
Figure A1 Variety in rostrum morphology and anterolateral angle variety in three Odontonia species. Note that A and B have a terminal tooth on the rostrum, while C has no teeth. A O. katoi (Kubo, 1940) B O. rufopunctata Fransen, 2002 C O. simplicipes (Bruce, 1996).
Figure 8 from: de Gier W, Fransen CHJM (2018) Odontonia plurellicola sp. n. and Odontonia bagginsi sp. n., two new ascidian-associated shrimp from Ternate and Tidore, Indonesia, with a phylogenetic reconstruction of the genus (Crustacea, Decapoda, Palaemonidae). ZooKeys 765: 123-160. https://doi.org/10.3897/zookeys.765.25277
Figure 8 Odontonia bagginsi sp. n., ovigerous female PoCL 3.40 mm (MZB Cru 4733). Dorsal aspect. Scale bar: 3 mm.
Figure 6 from: de Gier W, Fransen CHJM (2018) Odontonia plurellicola sp. n. and Odontonia bagginsi sp. n., two new ascidian-associated shrimp from Ternate and Tidore, Indonesia, with a phylogenetic reconstruction of the genus (Crustacea, Decapoda, Palaemonidae). ZooKeys 765: 123-160. https://doi.org/10.3897/zookeys.765.25277
Figure 6 Odontonia plurellicola sp. n., ovigerous female PoCL 1.50 mm (RMNH.CRUS.D.53554). A third pereiopod B dactylus third pereiopod C dactylus fifth pereiopod.
Figure 5 from: de Gier W, Fransen CHJM (2018) Odontonia plurellicola sp. n. and Odontonia bagginsi sp. n., two new ascidian-associated shrimp from Ternate and Tidore, Indonesia, with a phylogenetic reconstruction of the genus (Crustacea, Decapoda, Palaemonidae). ZooKeys 765: 123-160. https://doi.org/10.3897/zookeys.765.25277
Figure 5 Odontonia plurellicola sp. n., ovigerous female PoCL 1.50 mm (RMNH.CRUS.D.53554). A major second pereiopod, chela B major second pereiopod C first pereiopod. Scale bars: 0.5 mm (A); 1 mm (B, C).
Figure 2 from: de Gier W, Fransen CHJM (2018) Odontonia plurellicola sp. n. and Odontonia bagginsi sp. n., two new ascidian-associated shrimp from Ternate and Tidore, Indonesia, with a phylogenetic reconstruction of the genus (Crustacea, Decapoda, Palaemonidae). ZooKeys 765: 123-160. https://doi.org/10.3897/zookeys.765.25277
Figure 2 Odontonia plurellicola sp. n. ovigerous female PoCL 1.50 mm (RMNH.CRUS.D.53554). A anterior appendages, lateral view, setae omitted B telson, dorsal view C distal part of abdomen, lateral view D telson, dorsal view, detail of apex.
Figure 16 from: de Gier W, Fransen CHJM (2018) Odontonia plurellicola sp. n. and Odontonia bagginsi sp. n., two new ascidian-associated shrimp from Ternate and Tidore, Indonesia, with a phylogenetic reconstruction of the genus (Crustacea, Decapoda, Palaemonidae). ZooKeys 765: 123-160. https://doi.org/10.3897/zookeys.765.25277
Figure 16 SEM photos dactylus third pereiopod. A Odontonia bagginsi sp. n. B O. sibogae (Bruce, 1972) C O. katoi (Kubo, 1940) D O. rufopunctata Fransen, 2002 E O. seychellensis Fransen, 2002 F O. plurellicola sp. n. G O. maldivensis Fransen, 2006.
Figure 15 from: de Gier W, Fransen CHJM (2018) Odontonia plurellicola sp. n. and Odontonia bagginsi sp. n., two new ascidian-associated shrimp from Ternate and Tidore, Indonesia, with a phylogenetic reconstruction of the genus (Crustacea, Decapoda, Palaemonidae). ZooKeys 765: 123-160. https://doi.org/10.3897/zookeys.765.25277
Figure 15 Colour patterns. A–D Odontonia plurellicola sp. n. (RMNH.CRUS.D.53554). A–C individuals inside Plurella sp. D outside host E Odontonia bagginsi sp. n. (MZB Cru 4733), outside host.
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