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Statistical Analysis of Student Interest in Physics Education Fkip Jember University 2019-2023 Utami, Jovica Surya; Putri, Mah Citra Yunia Artika; Pratami, Attica Putri Nurus; Mahardika, I Ketut; Handono, Sri; Ernasari, Ernasari
International Journal of Education, Information Technology, and Others Vol 6 No 4 (2023): International Journal of Education, information technology   and others (IJEIT)
Publisher : Peneliti.net

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.5281/zenodo.10444751

Abstract

This article aims to find out statistics on the interest of Physics Education students at FKIP Jember University from 2019 to 2023. This research approach uses quantitative descriptive because the data process is in the form of numbers and is described in descriptions. Statistics is a science that studies how to plan, collect, analyze and interpret until finally presenting data. The enthusiasm of Jember University FKIP Physics Education students that emerged was generated from questionnaire data which included several questions that had reached the interest questions of Jember University FKIP Physics Education students which resulted in: 1) Interested in Physics Education with a percentage result of 62.35%, 2) Not interested in Physics Education with a percentage result of 37.65%, 3) Students who make Physics Education their first choice with a percentage result of 59.4%, 4) Students who make Physics Education a backup choice with a percentage result of 40.6%, 5) Students who felt that Physics Education met expectations with a percentage result of 62.3%, 6) Students who felt they were in the wrong major in Physics Education with a percentage result of 37.7%. This can be seen from the large percentage of questionnaire results.
Mekanisme Hujan Asam dan Dampak bagi Kehidupan Putri, Mah Citra Yunia Artika; Sudarti, Sudarti; Yushardi, Yushardi
Jurnal Ilmiah Wahana Pendidikan Vol 11 No 1.A (2025): Jurnal Ilmiah Wahana Pendidikan 
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Abstract

Acid rain is a global environmental problem that is always a hot topic. Acid rain occurs when gases produced from burning motor vehicle fuel and natural activities such as carbon dioxide (CO2) and carbon monoxide (CO) react with water vapor (H2O) which has been mixed with other compounds from the evaporation process. This reaction produces carbonic acid (H2CO3), which is a type of weak acid. In addition, gases produced from burning or heating sulfur, such as hydrogen sulfide (H2S) and sulfur oxide (SO2), will react with water vapor (H2O) to form sulfuric acid (H2SO4), which is a type of strong acid. The problems that arise due to acid rain make researchers flock to find solutions to this acid rain. In this article the author will discuss various solutions that can be applied to overcome the impacts caused by acid rain. By studying appropriate and reliable literature, the author has prepared an article that will contain the impacts and solutions that must be applied to solve the problems caused by acid rain.
Analisis Konsep Fisika pada Panel Surya dalam Sistem Irigasi Pertanian Kusuma, Anggita Ragil; Putri, Mah Citra Yunia Artika; Mahmudi, Kendid
Jurnal Ilmiah Wahana Pendidikan Vol 11 No 10.B (2025): Jurnal Ilmiah Wahana Pendidikan
Publisher : Peneliti.net

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Abstract

Panel surya merupakan sumber energi terbarukan yang semakin populer untuk menggerakkan sistem irigasi pertanian. Artikel ini bertujuan untuk mengkaji konsep fotolistrik dan termodinamika dalam meningkatkan efisiensi panel surya, dengan pendekatan studi literatur. Fokus utama ditujukan pada pengaruh intensitas cahaya matahari dan suhu lingkungan terhadap performa sel fotovoltaik. Hasil Kajian literatur menunjukkan bahwa efisiensi sel fotovoltaik sangat dipengaruhi oleh kondisi cuaca, di mana suhu tinggi cenderung menurunkan efisiensi konversi energi, sedangkan intensitas cahaya berpengaruh positif hingga titik jenuh. Kajian ini juga membahas berbagai teknologi dan material sel surya yang mampu meningkatkan efisiensi dalam kondisi lingkungan yang berubah-ubah. Dengan memahami prinsip kerja, tantangan teknis, serta strategi optimalisasi, penerapan panel surya dalam sistem irigasi diharapkan dapat menjadi solusi energi berkelanjutan bagi sektor pertanian.