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Pengaruh Pola Asuh Terhadap Pemerolehan Bahasa Anak Dian Nur Aini; Insania Tyas Ningrum; Fitrianti; Muhardila Fauziah
MERDEKA : Jurnal Ilmiah Multidisiplin Vol. 1 No. 3 (2024): Februari
Publisher : PT PUBLIKASI INSPIRASI INDONESIA

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.62017/merdeka.v1i3.929

Abstract

Pola asuh orang tua sangatlah penting dalam masa tumbuh kembang seorang anak baik itu dari segi fisik maupun segi pemerolehan bahasanya. Anak yang diasuh oleh orang tua lengkap akan berbeda dengan anak yang diasuh oleh orang tua tunggal (single dad atau single mom). Latar belakang penelitian ini dilakukan untuk mengetahui pengaruh pola asuh yang diberikan ibu Suharti (single parent) kepada anaknya yang bernama Naura. Jenis metode yang digunakan yaitu penelitian kualitatif deskriptif dengan pengumpulan data melalui teknik wawancara. Untuk analisis data yang digunakan adalah pencatatan data, reduksi data, penyajian data dan mengambil kesimpulan. Adapun hasil yang didapatkan yaitu mengenai pola asuh Bu Suharti terhadap anaknya Naura. Kemudian terdapat pemerolehan bahasa Naura di usianya yang menginjak 7 tahun. Dampak yang ditimbulkan dari pola asuh yang diterapkan oleh single parent akan berpengaruh pada perkembangan anak.
Penerapan Model The Power of Two Berbantuan Media Surprise Box untuk Meningkatkan Hasil Belajar Pendidikan Agama Islam dan Budi Pekerti Fitrianti; Kartini; Nilam Permatasari Munir
Nasir: Jurnal Pendidikan Islam Vol. 3 No. 2 (2025)
Publisher : Pusat Studi Penelitian dan Evaluasi Pembelajaran

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.59698/nasir.v3i2.502

Abstract

Penelitian ini bertujuan untuk meningkatkan hasil belajar peserta didik kelas IV SDN 45 Padang Alipan Kota Palopo pada mata pelajaran Pendidikan Agama Islam dan Budi Pekerti melalui penerapan model pembelajaran The Power of Two berbantuan media Surprise Box. Jenis penelitian yang digunakan adalah penelitian tindakan kelas (PTK) dengan model Kemmis & McTaggart yang dilaksanakan dalam dua siklus. Subjek penelitian adalah 31 peserta didik kelas IV. Teknik pengumpulan data meliputi tes, observasi, dan dokumentasi, sedangkan analisis data menggunakan pendekatan kuantitatif dan kualitatif. Hasil penelitian menunjukkan peningkatan aktivitas peserta didik dari siklus I dengan rata-rata 12 (60%) kategori kurang baik menjadi 16,33 (81,67%) kategori sangat baik pada siklus II. Hasil belajar peserta didik juga meningkat dari nilai rata-rata 72 dengan ketuntasan 74,19% pada siklus I menjadi 76 dengan ketuntasan 84% pada siklus II. Penelitian ini membuktikan bahwa kombinasi model The Power of Two dengan media Surprise Box efektif meningkatkan aktivitas dan hasil belajar peserta didik pada materi mengenal shalat Jum'at, Dhuha, dan Tahajud.
Utilization of Pineapple Leaf Fiber-Derived CMC to Reduce Filtration Loss and Extend Thickening Time in Oil Well Cementing Fitrianti; Muhammad Alwi Pranata; Owwen Tri Handoko
Scientific Contributions Oil and Gas Vol 48 No 4 (2025)
Publisher : Testing Center for Oil and Gas LEMIGAS

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.29017/scog.v48i4.1950

Abstract

Cementing operations in oil and gas wells require precise control of cement slurry properties to ensure successful zonal isolation. Two critical parameters—fluid loss control and setting time—significantly influence cement performance. Carboxymethyl cellulose (CMC) has been widely employed to regulate these properties; however, commercial CMC presents cost challenges for large-scale operations. This investigation evaluates the effectiveness of CMC which is synthesized from the waste of pineapple leaf fiber as an alternative additive for Class G drilling cement. The high cellulose content (69.5-71.5%) in pineapple leaf fibers indicates its potential as a cost-effective source of CMC that is compared to conventional agricultural wastes. CMC was extracted from pineapple leaves through alkaline delignification and chemical modification. The slurry of class G cement was formulated with varying CMC concentrations ranging from 0% to 0.4% by weight of cement (BWOC). Fluid loss was measured by using LPLT filter press following API standards, while setting characteristics were evaluated at 40°C and 60°C by using an atmospheric consistometer. Filtrate volumes decreased from 214.69 ml to 153.94 ml as CMC concentration increased from 0.1% to 0.3% BWOC, with all values conforming to API specifications (150-250 ml) for primary cementing. Commercial CMC from literature demonstrates comparable filtrate volumes of 160-180 ml at similar concentrations. Setting time was extended from 329 to 362 minutes at 40°C and from 188 to 266 minutes at 60°C with 0% to 0.4% CMC addition. Temperature significantly influenced hydration kinetics, with elevated temperatures accelerating cement setting regardless of CMC concentration. Pineapple leaf-derived CMC demonstrates comparable performance to commercial additives in controlling fluid loss and extending setting time in the systems of Class G cement. The optimal concentration of 0.3% BWOC provides adequate fluid loss control while maintaining acceptable setting characteristics. Further validation under high-pressure, high-temperature (HPHT) conditions and field-scale implementations are recommended.
Synchronization of Storage Tank Volume, Disposal Well Volume and Electric Submersible Pump (ESP) Pump Capacity in Disposal Well Field A Musnal, Ali; Fitrianti
Journal of Renewable Energy and Mechanics Vol. 4 No. 02 (2021): Journal of Renewable Energy and Mechanics (REM)
Publisher : UIR PRESS

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.25299/rem.2021.7643

Abstract

In producing oil, one of the common problems faced by oil and gas companies is the production of a lot of water. Increased water production causes the storage tank to be unable to accommodate the produced water. To overcome the excess water production, some of the water is injected back into the well. In Field A, an innovation has been made for a water injection pump with the driving force coming from the Electrical Submersible Pump (ESP) pump. The working principle of this ESP pump is to drain water from the disposal well to the injection well. Therefore, in order for the injection to run optimally, synchronization is carried out starting from the water entering the holding tank, the flow rate in the Disposal well and the pump capacity (ESP) for injecting from the holding well to the injection well. The amount of water flow rate injected through the ESP pump is 9,500 BWPD. For this reason, the capacity of the ESP pump as an injection pump is calculated. First, determine the water level in the tank to control the amount of flow that enters the reservoir well. Based on the results of the research that has been done, the water level in the holding tank to get a flow rate of 9,500 BWPD is 4.11 ft. And the results of the calculation of water will be injected using an ESP pump with a number of stages 22 with the TRW Reda Pump Devision pump type. The water will be channeled to the injection well with a type of galvanized iron pipe with a diameter of the main pipe (mainline) of 6 inches. From the disposal well, it flows with a 4 inch pipe as far as 45.93 ft and a 2 inch pipe as far as 2214.57 ft for well 07. As for wells 60, the flowline size is 4 inches as far as 708.66 ft and 2 inches as far as 987.53 ft.