Perancangan Sistem Pengendali Kecepatan Motor DC Menggunakan Kontroler Proposional Integral Derivative pada Palang Pintu Parkir

  • Rohman T
  • Aribowo W
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Abstract

An understanding of how the nuclear pore complex (NPC) mediates nucleocytoplasmic exchange requires a comprehensive inventory of the molecular components of the NPC and a knowledge of how each component contributes to the overall structure of this large molecular translocation machine. Therefore, we have taken a comprehensive approach to classify all components of the yeast NPC (nucleoporins). This involved identifying all the proteins present in a highly enriched NPC fraction, determining which of these proteins were nucleoporins, and localizing each nucleoporin within the NPC. Using these data, we present a map of the molecular architecture of the yeast NPC and provide evidence for a Brownian affinity gating mechanism for nucleocytoplasmic transport.

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APA

Rohman, T., & Aribowo, W. (2023). Perancangan Sistem Pengendali Kecepatan Motor DC Menggunakan Kontroler Proposional Integral Derivative pada Palang Pintu Parkir. JURNAL TEKNIK ELEKTRO, 12(2), 48–54. https://doi.org/10.26740/jte.v12n2.p48-54

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