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Ditemukan 737 dokumen yang sesuai dengan query
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Dragoman, Daniela
"This book presents the achievements in bionanoelectronics in a coherent manner. It deals with nanodevices applied to biostructures, molecular motors, molecular pumps, molecular nanoactuators and electronic biodevices, including nanodevices for sensing and imaging biomolcules. The book describes bionanoelectronics, detection of biomolecules and targets various biological applications such as detection and sequencing of DNA and early detection of various deseases and nanomedicine. Further important topics of the book are biomimetics and bioinspired electronics.The book also deals with biomolecules as building blocks of nanodevices for nanoelectronics or future computing architecture The application of scanning probe techniques to biological samples is described."
New York: Springer, 2012
e20395589
eBooks  Universitas Indonesia Library
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Bhushan, Bharat
"This new edition presents an overview of biomimetics and biologically inspired structured surfaces. It deals with various examples of biomimetics which include surfaces with roughness-induced superomniphobicity, self-cleaning, antifouling, and controlled adhesion. The focus in the book is on the lotus effect, salvinia effect, rose petal effect, oleophobic/philic surfaces, shark skin effect, and gecko adhesion. This new edition also contains new chapters on the butterfly wing effect, bio, and inorganic fouling and structure and properties of nacre and structural coloration."
Berlin : Springer, 2012
e20425007
eBooks  Universitas Indonesia Library
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Mohamad Mufti
"Partikel yang diperoleh hasil mechanical milling pada umummnya masih dalam orde mikro meskipun sudah berstruktur nano. Pengalaman milling dengau HEM-E3D, ukuran partikel berkisar pada 400 nm ke atas yang disebabkan terjadinya aglomerasi. Metoda baru mechanical trapping dilcembangkan untuk memperoleh partikel nano tunggal. Mechanical trapping merupakan penghancuran partikel partikel yang dituju dikondisikan terjebak atau dilapisi oleh partikel lain. Pada penelitian ini digunakan NaCl sebagai matrik penjebak. Hasil XRD menunjukkan bahwa partilcel Cu2O murni yang di mechanical milling selama 2 jam telah berstuktur nano ukuran kristal sebesar 6.27 nm. Hasil PSA dari mechanical milling selama 2 jam dari campuran C1120 dan NaCl dengan rasio 1 : 53 adalah partikel Cu2O sebesar 22.8 nm dalamjumlah 99.8 %.

Synthesized particle by mechanical milling is still in micro order generally even already have nano structure. Milling experience by HEM-E3D, the size is more than 400nm because particle agglomerale. Mechanical trapping new method is developed to synthesis single nano particle. Mechanical trapping is annihilation of particle which particle target is trapped or covered by other particle. In this research, NaCl is used as trapper matrix. XRD result show that pure Cu2O particle which is mechanical milled in 2 hours have 6.27 nm crystal size. PSA result of mechanical milled Cu2O : NaCl ( 1 : 53) in 2 hours show that particle size is 22.8nm ( 99.8 %).
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Depok: Fakultas Matematika dan Ilmu Pengetahuan Alam Universitas Indonesia, 2011
T30419
UI - Tesis Open  Universitas Indonesia Library
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Hoefflinger, Bernd
"This book presents a new, sustainable roadmap towards ultra-low-energy (femto-Joule), high-performance electronics. The focus is on the energy-efficiency of the various chip functions: sensing, processing, and communication, in a top-down spirit involving new architectures such as silicon brains, ultra-low-voltage circuits, energy harvesting, and 3D silicon technologies. Recognized world leaders from industry and from the research community share their views of this nanoelectronics future. They discuss, among other things, ubiquitous communication based on mobile companions, health and care supported by autonomous implants and by personal carebots, safe and efficient mobility assisted by co-pilots equipped with intelligent micro-electromechanical systems, and internet-based education for a billion people from kindergarden to retirement."
Berlin: Springer, 2012
e20425395
eBooks  Universitas Indonesia Library
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Mitin, Vladimir V.
Cambridge, UK: Cambridge University Press, 2008
621.381 MIT i
Buku Teks SO  Universitas Indonesia Library
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King, Paul H.
Boca Raton: CRC Press, Taylor & Francis Group, 2009
610.28 KIN d
Buku Teks SO  Universitas Indonesia Library
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Mitin, Vladimir V.
"Increasing miniaturization of devices, components, and integrated systems requires developments in the capacity to measure, organize, and manipulate matter at the nonoscale. This textbook is a comprehensive, interdisciplinary account of the technology and science that underpin nanoelectronics, covering the underlying physics, nanostructures, nanomaterials, and nanodevices. Without assuming prior knowledge of quantum physics, this book provides a unifying framework for the basic ideas needed to understand the recent developments in the field." "Numerous illustrations, homework problems, and interactive Java applets help the student to appreciate the basic principles of nanotechnology, and to apply them to real problems. Written in a clear yet rigorous and interdisciplinary manner, this textbook is suitable for advanced undergraduate and graduate students in electrical and electronic engineering, nanoscience, materials, bioengineering, and chemical engineering.
Contents
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Cambridge : Cambridge University Press, 2012
621.381 MIT i
Buku Teks SO  Universitas Indonesia Library
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Mitin, Vladimir V.
"Increasing miniaturization of devices, components, and integrated systems requires developments in the capacity to measure, organize, and manipulate matter at the nonoscale. This textbook is a comprehensive, interdisciplinary account of the technology and science that underpin nanoelectronics, covering the underlying physics, nanostructures, nanomaterials, and nanodevices. Without assuming prior knowledge of quantum physics, this book provides a unifying framework for the basic ideas needed to understand the recent developments in the field." "Numerous illustrations, homework problems, and interactive Java applets help the student to appreciate the basic principles of nanotechnology, and to apply them to real problems. Written in a clear yet rigorous and interdisciplinary manner, this textbook is suitable for advanced undergraduate and graduate students in electrical and electronic engineering, nanoscience, materials, bioengineering, and chemical engineering.
Contents
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Cambridge : Cambridge University Press, 2012
621.381 MIT i
Buku Teks SO  Universitas Indonesia Library
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Anita Rizky
"Dari sekian banyak objek biomimikri oleh manusia, sarang lebah merupakan salah satu yang sudah sejak lama dikaji dan masih terus dikaji hingga saat ini. Mengenai bagaimana sarang lebah memberi inspirasi dalam menjawab permasalahan arsitetural manusia, menjadi isu yang akan dibahas dalam penulisan skripsi ini. Pengkajian isu dibagi ke dalam tiga kategori berdasarkan kebutuhan arsitektural yang sama-sama dimiliki manusia dan lebah, yakni kebutuhan dalam pengaturan suhu, efisiensi ruang dan material, serta struktur kuat dan ringan. Hasil yang didapat menunjukkan bahwa mengimitasi sarang lebah dapat menjadi solusi yang potensial dalam menjawab permasalahan arsitektur. Penerapan yang dapat dilakukan mulai dari skala kecil seperti ruangan hingga penataan urban.

Of many biomimicry objects by human, beehive is one that has long been studied and still continues to be studied until now. Regarding how beehive, gives inspiration in answering human architectural problems, becomes an issue that will be discussed in this essay. The issue will be discussed by dividing it into three categories based on the same architectural needs of both human and bee, which are the needs of thermal regulation, space and material efficiency, and light but strong structure. The result obtained in this essay indicate that imitating beehive can be a potential solution to answer the problems in architecture. The application in architecture start from a small-scale like room to urban planning.
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Depok: Fakultas Teknik Universitas Indonesia, 2015
S61478
UI - Skripsi Membership  Universitas Indonesia Library
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"This monograph presents examples of best practices when combining bioinspired algorithms with parallel architectures. The book includes recent work by leading researchers in the field and offers a map with the main paths already explored and new ways towards the future."
Berlin: Springer-Verlag, 2012
e20398649
eBooks  Universitas Indonesia Library
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