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Design and Validity of Physics Teaching Materials Based on Cognitive Conflict Integrated Virtual Laboratory in Atomic Nucleus Tisa Febri Delvia; Fatni Mufit; Mugni Bustari
PILLAR OF PHYSICS EDUCATION Vol 14, No 1 (2021)
Publisher : Universitas Negeri Padang

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (513.189 KB) | DOI: 10.24036/10354171074

Abstract

Curiculum.2013 requires.the students to be able to improve.the understanding of a.concepts. But it stil not realizet One of the solutions of this problem is to make physics teaching.materials based on cognitive conflicts on atomic nucleus to improve students’ conceptual understanding. The purpose.of this a research is to produce a valid cognitive conflict-based teaching material design. The type of research is Design / Development Research usingn the Plomp model. However, this research is limited to theaPreliminary.Research and Prototype.Phase. The first step is Preliminary Research by analyzing needs and context by conducting journal analysis and interviews with physics teachers in schools. The second step of the Prototype.Phase is the development stage by making the design of teaching materials, conducting validation by researchers (self evaluation) and experts review. From the results.of.the Preliminary Research stage, it was found that in the atomic nucleus theory there were still many misconceptions, there were no teaching materials that integrated models and there was a lack of guidelines for conducting virtual laboratory. In the Prototype Phase, it was found that the results ofathe design of teaching materials is based on cognitive conflict that were developed had passed the self-validation and experts validation tests with a very valid validity level with an averaga value of 0.87. With the acquisition of this value, the design of physics teaching materials based on cognitive conflict is declaredjfeasible.to be used in the learning processin order to improve the conceptual understandingof the students.
Validitas dan praktikalitas lks fisika materi kalor dan teori kinetik gas bermuatan literasi baru untuk kelas XI SMA Syarafina R; Fatni Mufit; asrizal A
PILLAR OF PHYSICS EDUCATION Vol 13, No 1 (2020)
Publisher : Universitas Negeri Padang

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (684.417 KB) | DOI: 10.24036/8164171074

Abstract

The 21st .Century demands that1human resources are responsive and alert to face competitionr. The 2013 revised 2017 curriculum is an effort to welcome 21st century life, aimed at developing critical thinking skills, creative, collaborating and communicating. However, the reality in the field of student literacy at school is still low and literacy activities in learning are not going well. The solution to overcome these problems is to develop worksheets to improve new literacy. The purpose of this study determines the validity and practicality of the use of physics worksheet.This type of research were conducted by Research and Development (R&D). The object of this research is the LKS physics of heat material and the kinetic theory of the gas which is limited to one class XI. The data source of this research is the validator team including the physics lecturer of FMIPA and the students of class XI MIPA 1 of SMAN 1 Nan Sabaris as student worksheet users. Data7collection instruments used were: validity sheets, practicality sheets.8Data analysis technique used is descriptive analysis of the validity and practicality of the product.4Based on data analysis, two research results were presented. First, the student worksheet is very valid with a validity value of 89,66. Second, the use of physics worksheets is very practical with practicality accordingoto students 89.77. So, it was concluded that the student worksheet physics of heat material and the kinetic theory of gas are valid and practical used in learning physics to improve the new literacy of class XI high school students.
Analisa ukuran bulir mineral magnetik pada lindi tpa sampah kota padang menggunakan metoda Anhysteretic Remanent Magnetization (ARM) (Analysis of magnetic mineral grain size on leachate of Padang city waste landfill using the Anhysteretic Remanent Magnetization (ARM) method) Risaldi Putra; - Mahrizal; Fatni Mufit
PILLAR OF PHYSICS Vol 6 (2015)
Publisher : Department of Physics – Universitas Negeri Padang UNP

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (1276.24 KB) | DOI: 10.24036/1942171074

Abstract

Padang city has landfill located in Air Dingin Village Balai Gadang  Koto Tangah Subdistrict of Padang. This landfill has some leachates  that assumed there is seepage from leachate pond to the river and drain. The results observation present that the river is decomposed and its color is changed so it obliged to research about Pollutants of Landfill (TPA) Padang City Mineral Magnetic Basis. The purpose of the research is to determinate grain size and mineral magnetic domain in Leachates of Landfill (TPA) Padang City by using ARM (Anhysteretic Remanent Magnetization) Method. The samples research were 6 samples that taken from leachate pond, the river, and drain at landfill (TPA) area. Measuring instruments that utilized were Ekman Grab, Susceptibility Meter, Molsfin AF demagnetizer, PARM ( Partial Anhysteretic Remanent Magnetization) and Minispin Magnetometer. The data collection was analyzed by plotting the correlation between relative intensity (I/Io) and magnetic field by using Lowrie and Fuller Kurve Test as comparative kurve for measuring grain size and magnetic domain.  The research results showed that grain size of leachate pond sample is about 6 μm up to 135 μm, whereas grain size of river and drain samples are about 110 μm up to 135 μm. Magnetic domain sample was obtained of the research result is pseudo single domain (PSD) and multi domain (MD). Grain size was obtained from river and drain sample bigger than grain size of leachate pond sample. Mineral magnetic of leachate pond is more disposed to PSD whereas mineral magnetic of river and drain is more disposed to  MD. Based on the results, the river and drain samples are expected that it has contaminated mineral magnetic of leachate pond (anthropogenic)
Analisis komposisi unsur Fe terhadap nilai suseptibilitas magnetik di Kota Padang menggunakan metode X-Ray Fluorescence (XRF) (Analysis of the elemental composition of the magnetic susceptibility value in Padang City using the X-Ray Fluorescence (XRF) method) Elsa Feryani Harifan; - Mahrizal; Fatni Mufit
PILLAR OF PHYSICS Vol 5 (2015)
Publisher : Department of Physics – Universitas Negeri Padang UNP

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (562.993 KB) | DOI: 10.24036/1829171074

Abstract

Many industrial processes such as steel and cement production produces shaped particles of dust and fly ash. The particles containing pollutants shaped magnetic minerals belonging to the type of iron sulfide minerals iron and titanium sulfide. These pollutants come from the burning of coal. Basically, before burning coal is not magnetic. In the combustion process produces pyrite which decompose and form pyrrhotite and sulfur gases. At temperatures above about 1350 K, pyrrhotite decomposes into iron and sulfur. Iron (Fe) is the most dangerous heavy metals contained in the topsoil. In this study measured the magnetic susceptibility values and elemental composition to analyze the elemental composition Fe of the magnetic susceptibility values,The sample in this study is the topsoil. Measurements of magnetic susceptibility values topsoil samples performed using magnetic susceptibility meter. Then the measurement of the elemental composition of ten samples using X-Ray Fluorescence (XRF) spectrometer. Measurement data plotted in the form of a graph to show the relationship of the value of the elemental composition of Fe magnetic suseptbilitas. Meanwhile, the results of magnetic susceptibility meter, magnetic susceptibility values can inform the type of magnetic minerals based on magnetic susceptibility values.The results of this study indicate that the intensity of the magnetic susceptibility is not only influenced by the composition of the elements Fe, but also influenced by other elements contained in topsoil samples, such as Al, Si, Ca, and Ti. Weight percentage of Fe and Ti derived from the main constituent mineral iron is ilmenite, are paramagn
Penentuan jenis mineral magnetik Guano dari Gua Solek dan Gua Rantai Kecamatan Lareh Sago Halaban Kabupaten Lima Puluh Kota menggunakan metode X-Ray Diffraction (Determination of the magnetic mineral type of Guano from Solek Cave and Chain Caves, Lareh Sago Halaban District, Lima Puluh Kota, using the X-Ray Diffraction method) Dessupri Niarti; Hamdi Rifai; Fatni Mufit
PILLAR OF PHYSICS Vol 1 (2013)
Publisher : Department of Physics – Universitas Negeri Padang UNP

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (853.631 KB) | DOI: 10.24036/502171074

Abstract

ABSTRACTFrom the result measurement of guano susceptibility magnetic, was found in Solek and Rantai cave indicate magnetic mineral. But the kinds of magnetic mineral it’s don’t know. The kinds of magnetic mineral consist of iron oxide and sulfide oxide. In this research will be determinate the kinds of magnetic mineral which from iron oxide use x-ray diffraction method. The guano which determinated from the kinds of magnetic mineral before extraction use strong magnet. Extraction process have function for desepared magnetic mineral and nonmagnetic mineral. The result from the extraction like smooth magnetic mineral and then will be measure use x-ray diffractometer. Based on the measure process with x-ray diffraction, know the kinds of magnetic mineral which indicate in guano of Solek and Rantai Cave at Lareh Sago Halaban District Lima Puluh Kota Regency, West Sumatera the most kind of mineral was magnetite 34). Then we also found another magnetic minerals such as hematite 23).Keywords: Guano, mineral magnetic properties, x-ray diffraction (XRD), iron oxide, sulfide oxide
Penerapan metode geolistrik tahanan jenis konfigurasi wenner untuk menentukan penyebaran lindi di Tempat Pemprosesan Akhir (TPA) sampah Air Dingin Kota Padang (The application of the wenner configuration resistivity geoelectric method to determine the distribution of leachate in the final waste processing in Air Dingin Padang City) Yori Deswita; Nofi Yendri Sudiar; Fatni Mufit; - Akmam
PILLAR OF PHYSICS Vol 5 (2015)
Publisher : Department of Physics – Universitas Negeri Padang UNP

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (844.424 KB) | DOI: 10.24036/1834171074

Abstract

TPA Air Dingin are landfills located in Padang and positioned near the inhabitant area. The accumulationof waste at TPA Air Dingin can cause environment pollution. The  aimed  of  this  research  is  to  determine  the resistivity and the spread  of  leachate in TPA Air Dingin. Estimation of the distribution of leachate below the ground surface use a Resistivity Geoelectrical method with Wenner Configuration. Data were collected by ARES Multielectrode in 3 lines. The data were interpreted using Robust inversion to obtain a 2D model of earth’s surface that consists of depth and resistivity value. The result of this research showed that the kinds of rocks in this area consist of Groundwater, Clay, Sandstone and Andesite. Direction of spread of leachate on the measurements, the distribution of leachate moving from the southeast towards the Northwest
Estimasi kedalaman batuan dasar menggunakan metoda geolistrik tahanan jenis konfigurasi dipole-dipole di Universitas Negeri Padang Kampus Air Tawar (The estimation of bedrock depth using the geoelectric resistivity method of dipole-dipole configuration at the Universitas Negeri Padang Air Tawar) Media Febrina; - Akmam; Fatni Mufit
PILLAR OF PHYSICS Vol 1 (2013)
Publisher : Department of Physics – Universitas Negeri Padang UNP

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (815.085 KB) | DOI: 10.24036/398171074

Abstract

Estimation of basement rocks depth has been done in Padang State University, Air Tawar campus. The research that uses Dipole-dipole resistivity geoelectrical method was aimed to determine the depth, resistivity value and the kinds of basement rocks. Data were collected by Ares Multielectrode in 4 lines. Processing of data was done using Res2dinv software with Robust Constraint inversion and it results 2D model of earth’s surface that consists of depth and resistivity value. The result of this research shows that there are basement rocks around sounding point 00053’44,0”S and 100020’79,8”E in 1st line and sounding point 00053’53,1”S and 100021’02,8”E in 2nd line at depth of more than 25,2 m with resistivity value 513 – 622 Ωm and 632 – 2150 Ωm. Basement rocks are also found in 3rd line around sounding point 00053’48,9”S dan 100020’50,6”E at depth of more than 21,85 m with resistivity value 596,5 – 734 Ωm, while 4th line at sounding point 00053’55,7”S and 100021’02,3”E did not find basement rocks. Possibility of basement rocks in 4th line are at depth of more than 29,5 m. Basement rocks that are found in this research is interpreted as Andesite. Information about basement rocks can be used for construction planning in Padang State University, Air Tawar campus. Keywords: basement rocks, resistivity geoelectrical method, Dipole-dipole, Padang State University
Identifikasi komposisi unsur logam berat pada lindi tempat pemrosesan akhir (TPA) sampah Kota Padang menggunakan X – Ray Fluorescence (XRF) (Identification of the composition of heavy metal elements in the leachate of Padang City waste final processing site using X-Ray Fluorescence (XRF) Iswandi Iswandi; - Mahrizal; Fatni Mufit
PILLAR OF PHYSICS Vol 5 (2015)
Publisher : Department of Physics – Universitas Negeri Padang UNP

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (661.134 KB) | DOI: 10.24036/1826171074

Abstract

Final waste processing site of Padang City is located on Air dingin, Kelurahan Balai Gadang, Koto Tangah Sub – distrik has 8 leachate holding pond. At 8 leachate holding pond flowe in to river next to final processing site. Most of residents around the final processing site use water fromriver and well around waste processing site as a source of clean water for daily life. This research aims to know composition ofheavy metal in sedimen of leachate pond, river sediment and gutter sediment of final waste processing site Air Dingin, Padang City. The sample used in this research are 4 samples of leachate pond sediment, 1 sample of gutter, 1 sample of riversediment which have been measured magnetic susceptibility values. The measurement result XRF will show content of elements contained in the samples. Determining the content of heavy metal using determined by matched measurement result with periodic table. The measurement  result using XRF further made in to table and graph. The measurement result using XRF show that heavy metal contained insample of leachate pond sediment are Titanium (Ti), Vanadium ( V), Cromium ( Cr ), Manganese ( Mn ), Iron ( Fe ), Cobalt ( Co ), Zinc ( Zn ), Rhadium ( Rh ), Neodinium ( Nd ), Eopium ( Eu ), Iterbium ( Yb ), Indium ( In ) and Zirconium (Zr). At measurement composition of sediment sample is acquired that heavy metal similar to result of leachate sample measurement, only Iterbium (Yb), Indium (In)  not foynd, where as on sediment sample of gutter also there is heavy metal that similar to composition sample of leachate and only Indium (In) not found.  The heavy metal that dominant find on sample as leachate sediment, river sediment, and gutter sediment is iron with percentage 33.664 % and rhadium with percentage 30.587 %. Heavy metal at final waste processing site Air Dingin suppose get in through metallic waste, chemical waste such as vehicles waste, waste of iron and steel, battery alectric devices, insecticide residuethat not classified weel. When wastes polish by water which get in to final waste processing site, water result of waste degradation sediment at mound of waste and flow to leachate holding wast
Penentuan tingkat polusi udara akibat kendaraan bermotor menggunakan metoda suseptibilitas magnetik di Kota Padang (Determination of the level of air pollution due to motorized vehicles using the magnetic susceptibility method in Padang City) Wedara Yuliatri; - Mahrizal; Fatni Mufit
PILLAR OF PHYSICS Vol 1 (2013)
Publisher : Department of Physics – Universitas Negeri Padang UNP

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (158.974 KB) | DOI: 10.24036/551171074

Abstract

ABSTRACT Air pollution in big cities has worried. Air pollution caused by human activities such as  industry, motor vehicles, burning of trash, and other activities. Air pollution caused by magnetic minerals is derived from engine frictions, corrosion of motor vehicle, and gas waste products of incomplete combustion. They fly with air and cause air pollution. Therefore research about determining pollution level from motor vehicles in Padang town was necessary. The purpose of this research was to determine the level of air pollution from vehicles motor. This research used 170 sample that consist of 99 topsoil samples, 31 leaf samples, and 40 bark samples. This research used Magnetic Susceptibility method. Magnetic Susceptibility method is used to determine the Magnetic Susceptibility value of sample. It is known by used Bartington Susceptbility Meter MS2B type. Measurement is done based on massa susceptibility value. After the Magnetic Susceptibility value is known, pollution level can be determined (low, medium or high). The result of measurement show average the Magnetic Susceptibility value in all street is 1023,2 × 10-8 – 1284,6 × 10-8 m3kg-1. It is included to high pollution category. The highest Magnetic Susceptibility value is at By Pass Lubuk Begalung street with high pollution level. The highest Magnetic Susceptibility value is at distance of 0 m from the roadside, thus 1 m from the roadside and 2 m from the roadside. Keywords: magnetic minerals, Air pollution, Magnetic susceptibility
Penerapan metode Isothermal Remanent Magnetization (IRM) untuk menentukan jenis mineral magnetik pada lindi di tempat pembuangan akhir (TPA) Air Dingin Kota Padang (Application of the Isothermal Remanent Magnetization (IRM) method to determine the type of magnetic minerals in leachate at the Air Dingin Landfill Padang City) Mulyandri Putra; - Mahrizal; Fatni Mufit
PILLAR OF PHYSICS Vol 6 (2015)
Publisher : Department of Physics – Universitas Negeri Padang UNP

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (669.912 KB) | DOI: 10.24036/1939171074

Abstract

Padang city waste removed and processed in Air Dingin Landfill, Balai Gadang Village, Kecamatan Koto Tangah. On the location of the Landfill there were rivers used by residents for daily needs. Leachate generated from Landfill cast into the river can contaminate the River, which that cause the river’s water black and smelling. This research aims to determine the type of magnetic minerals in Leachate in the Air Dingin Landfill city of Padang, as an indicator of water pollution by leachate. This research uses the 6 samples taken from samples of the sediment pond, sediment River and sediment sewers on Air Dingin Landfill. Instruments used for sampling is Ekmam Grab. Types of magnetic mineral samples are specified by giving a magnetic field toward the sample using the method of Isothermal Remanent Magnetization (IRM) with instruments Electromagnetic Weiss. Data analysis was done with a given magnetic field of plotting for the intensity of magnetization of the sample which has reached saturation and compared to a standard curve of the IRM for viewing different types of magnetic mineral magnetite or hematite. The value of the magnetic field of the sample measured experiencing saturation at the time value is smaller than 300 mT. Saturation curve based on IRM mineral types in a sample of leachate, rivers and sewers Air Dingin Landfill city of Padang in the majority is the mineral magnetite (Fe3O4)
Co-Authors - Hamdi Afriandi, Muhammad Agus Pramono Ahmad Fauzi Aini, Mirza Aivani Caesaria Akmam Akmam Aldilla, Endang Alfi Sahrin Ali, Eisa Putri Amali Putra Amalia Putra Amelia, Ocha Anabel, Haura Fitri Andri Yanto Putra Andriyani, Dwi Rika Andromeda Andromeda Andromeda Andromeda Andromeda Andromeda Andromeda Andromeda Anelfia, Syifa Chaerunisa Anggreani, Yulita Anjani, Hilmi Rizki Annisa Fadhilah Annisa N Annisa N Apriani Wirahmawati Aripin, Nurul As rizal Asrizal Asrizal Asrizal A Asrizal A asrizal A Asrizal Asrizal Atifah Hirahmah Atikah Dian Fitri Azmi Asra Azmi Renaldi Renaldi Alrahmadana Carnesia, Mita Dea Stivani Suherman Depitra Wiyaguba Desestra Desestra Desnita Dessupri Niarti Devana DEVI PERMATA SARI Dewi Ratna Sari Dhanil, Muhammad Dhea Febriya Diana Zulyetti Dirman, Hendra Musfa Dwi Agustina Dwi Putri, Melisa Dwi Rika Andriyani Efendi, Elvaretta Elsa Feryani Harifan Elvi Suryanti Emiliannur Emiliannur Emilya, Wulanda Tri Emilya, Wulanda Try Ermina Sari Fadhiel, M. Al fadillah, Muhammad Aizri Febiola, Nadia Festiyed Festiyed Festiyed Festiyed Feziyasti, Azifa Filda Rinawan Fina Afriani Putri Fitri Hayati Fitri, Aidina Milla Fitri, Atikah Dian Fitriyani Rizal Fleony Dea Amanda Fuja Novitra Gunawan, Maulina Suryati Gusnedi Gusnedi Gusnedi Gusnedi Guswina, Sri Hafizah Rahmi Fitri Hamdi Hamdi Hamdi Hamdi Hamdi Rifai Hamidi Rifai Hanifah Hanifah Harman Amir Hayyu Yumna Heffi Alberida Hendra Musfa Dirman hidayanti, hidayanti Hidayati Hidayati Hidayati Hidayati Hidayatullah Hilman Yusri Hirahmah, Atifah Hufri Hufri Hurriyah Hurriyah Ilahi, Tut Dunya Wahyuni Ilwandri Ilwandri Ina, Felina Ardini Indriyani, Ririn Irfan Luthfi Iswandi Iswandi IZZAH, NURUL Jenny Capriconia Julio Fadjar Kolotosa Karzah, Khofifah Larasati Gustia Ayopma Letmi Dwiridal Letmi Dwiridal Letmi Dwiridal Lidya Jasmi Lufri Lufri Mahrizal Mahrizal Maidani, Delvi Putri Marjuni Marjuni Martala Sari Media Febrina Media Roza Mega Elvianasti Metia Husra Husnuzan Meysi, Nur Afrianti Miftahul Arrazi Mugni Bustari Muhammad Aizri Fadillah Muhammad Dhanil Mulyana, Venny Mulyandri Putra Mustika Hayati Mutia Rosiana Nita Putri Nadia Zuwita Nadya Fitra Kurnia Nadya Sari Putri Nafsih, Nurul Zakiatin Nailul Rahmah Pohan Nilyani, Korry Noer, Fadhlina Nofi Yendri Sudiar Novebrini, Sintya Nur Hikmah Nur Ifani Rizkita Nurfah Wilda Nurhamdin Putra Nurhikmah Nurhikmah Nurmala Dewi Siregar Nurul Azkia Firmonia Nurul Azmi Oktaviawati, Diah ayu Pebriani, Tri Ulfa Prima Lestari Atmam Puja Asni Wahyu Puri Pramudiani Putra, Amali Putri Dwi Sundari Putri Lingga Harmita Putri Nabila Putri, Fina Afriani Putri, Prima Isma Putri, Widya Iswara Rahmat Hidayat Rahmi Habibah Ramli Ramli Rania Atara Isra Ratnawulan . Raudhah Awal Raudhatul Jannah Reni Defrianti Reni Puspitasari Reni Saputri Renol Afrizon Revi Gina Gunawan Revi Indriani Reza Sri Mardayani Rif'il Husniyah Rikizaputra Rikizaputra rina, rina novita Riri Jonuarti Risaldi Putra Riyasni, Selma Rizka Melia Putri Roza, Media RR. Ella Evrita Hestiandari Safahi, Luthpi Sandijal Putra Saputra, Iwan Saputri, Indah Sari, Nurul Fadillah Selvia Selvia Shintya Ruci Pratama Shofiah Aini Siagian, Gunaria Silvi Yulia Sari Siti Asma hanum Siti Fauziah Socrates, Tegar Putra Solly Aryza Sonia Fitri Anggraini Suhadah, Olivia Suherman, Dea Stivani Syafriani Syafriani Syafrilianto, Syafrilianto Syamsidar Syamsidar Syarafina R Tanjung, Mardia Roza Tika, Luth Fiyyah Atiqah Tisa Febri Delvia Ulfa, Jufiani Utari Prisma Dewi Vania Angelia Putri Viki Pratama Viviandri Viviandri Wahyuni S.D Wahyuni Satria Dewi Wedara Yuliatri Wulanda Tri Emilya Yanuar, Dinda Yeka Hendriyani Yerimadesi Yogi AlFajar Yoli Wilanda Fitri Yori Deswita Yosi Apri Malita YUDI, MUHAMMAD WAHYUDI Yul Ifda Tanjung Yuli, Fatma Yuliani, Nuri Yulkifli Yulkifli Yuni Ahda Yurnetti, Yurnetti Zaitul Hidayat Zaitul Hidayat Zulherman Zulrahayu, Vevy Zurhaimi, Tri Zeni Adha