The 2019 Legislative Election featured many celebrities involved in the contestation, where a total of 11 of the 16 political parties had legislative candidates from the celebrity circles. Democratic National Party (NasDem) became the party that nominated most celebrities as legislative candidates. Armed with the popularity that has made celebrities attract political parties to nominate them to increase the vote acquisition and even the number of seats. The process of recruiting legislative candidates from celebrities by the NasDem Party is the focus of this research on how the approach and process are carried out. The study uses qualitative analysis with a descriptive approach to describe the process that occurs through interviews and review of documents and news as a source of data. The results obtained indicate that the NasDem Party’s legislative candidate was recruited using an approach that involved the NasDem Party elite and fellow celebrities as intermediaries. Factors driving celebrities to become the NasDem Party’s legislative candidates are moral support (debriefing, fostering, and active interaction with party elites) and material (Campaign Props, campaign costs, financial reimbursement), Indonesian Restoration slogans, and anti-dowry politics, as well as egalitarian politics attitudes. Celebrity-related research in politics has focused a lot on the role of transformation from entertainment to politics. In contrast, this research has focused on recruiting celebrities as legislative candidates by the NasDem Party.
<p><em>Urea adalah senyawa organik yang tersusun dari unsur karbon, hidrogen, oksigen dan nitrogen dengan rumus CON<sub>2</sub>H<sub>4</sub> atau (NH<sub>2</sub>)<sub>2</sub>CO. Pabrik Urea Kaltim-1A menggunakan proses Stamicarbon “total recycle CO<sub>2</sub> stripping” dengan memanfaatkan Ammonia cair dan CO<sub>2</sub> yang diproduksi oleh unit Ammonia Kaltim-1A. Unit sintesa ialah suatu unit yang penting dalam proses pembuatan urea. Dalam </em><em>penelitian ini</em><em> permasalahan yang diangkat ialah mengevaluasi efisiensi reaktor urea pada berbagai tingkatan level didalam reaktor dengan membandingkan hasil perhitungan teoritis dengan aktual yang ada di pabrik guna untuk melihat kondisi reaktor saat ini. Dari hasil pengamatan diperoleh bahwa </em><em>semakin tinggi suhu reaktor maka konversi yang terbentuk semakin besar pula, konversi semakin besar seiring semakin tinggi posisi larutan di dalam reaktor, dan berdasarkan hasil simulasi didapat letak ketinggian indikator TI-204, TI-203, TI-202, TI-201 beserta konversi CO<sub>2</sub>nya.</em></p><strong>Kata Kunci</strong> : <em></em>
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