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Hasil Pencarian

Ditemukan 10644 dokumen yang sesuai dengan query
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Huggins, Robert A.
"- Explains the fundamentals of all major energy storage methods, from thermal and mechanical to electrochemical and magnetic
- Clarifies which methods are optimal for important current applications, including electric vehicles, off-grid power supply, and demand response for variable energy resources such as wind and solar
- New and updated material focuses on cutting-edge advances including liquid batteries, sodium/sulfur cells, emerging electrochemical materials, natural gas applications and hybrid system strategies
This book explains the underlying scientific and engineering fundamentals of all major energy storage methods. These include the storage of energy as heat, in phase transitions and reversible chemical reactions, and in organic fuels and hydrogen, as well as in mechanical, electrostatic and magnetic systems. Updated coverage of electrochemical storage systems considers exciting developments in materials and methods for applications such as rapid short-term storage in hybrid and intermittent energy generation systems, and battery optimization for increasingly prevalent EV and stop-start automotive technologies. This nuanced coverage of cutting-edge advances is unique in that it does not require prior knowledge of electrochemistry. Traditional and emerging battery systems are explained, including lithium, flow and liquid batteries. Energy Storage provides a comprehensive overview of the concepts, principles and practice of energy storage that is useful to both students and professionals."
Switzerland: Springer International Publishing, 2016
e20509981
eBooks  Universitas Indonesia Library
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Kao, Charles K.
New York: McGraw-Hill, 1982
621.369 KAO o
Buku Teks SO  Universitas Indonesia Library
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New York: Garland STPM Press, 1979
R 621.382 75 HAN
Buku Referensi  Universitas Indonesia Library
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Knight, P.L.
Oxford : Pergamon Press, 1983
535.15 KNI c
Buku Teks SO  Universitas Indonesia Library
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Fajar Bayu Anggoro
"Pada penelitian ini medan magnet akan ditingkatkan untuk mendapatkan konstanta verdet yang bervariasi Kumparan dengan diameter 2 mm dan hambatan 1,5 Ohm dirancang untuk menghasilkan medan magnet kuat hingga mencapai 500 mT. Kumparan akan dilewatkan arus maksimum 20 A dan tegangan maksimum 30 V. Namun kumparan 2 mm yang dilewati arus sebesar 20 A akan menimbulkan panas berlebih yang mengganggu kestabilan besar medan magnet yang dihasilkan sehingga diperlukan penambahan sebuah sistem pendingin menggunakan blok air yang ditempelkan pada inti magnet dan kumparan. Apabila medan magnet kuat memengaruhi material mengneto-optik (MOE) fase cair yang dilewatkan cahaya maka disebut sebagai metode rotasi faraday. Metode rotasi faraday digunakan untuk mencari besar konstanta verdet. Konstanta verdet merupakan representasi karakteristik material magneto-optik (MOE) fase cair. Pada penelitian ini untuk mendapatkan nilai konstanta verdet, nilai yang diukur adalah besar medan magnet, besar sudut cahaya yang terpolarisasi, dan intensitas cahaya. Menggunakan cahaya laser merah berbentuk titik dengan panjang gelombang 650 nm dengan intensitas cahaya maksimum sebesar 54612 lux. Perubahan sudut dilakukan menggunakan gir yang terhubung degan stteper motor dan sistem analisator. Pengambilan data menggunakan teknik polarisasi yang terpengaruh oleh medan magnet eksternal. Nilai medan magnet yang terukur oleh teslameter dengan variasi antara -250—250 mT. Sudut rotasi faraday diperoleh dari selisih besar sudut polarisator dan analisator dengan selisih sudut mula-mula sebesar 45°. Cahaya yang melewati polarisator dan analisator akan terdeteksi oleh sensor cahaya BH1750. Hasil penelitian ini akan menunjukkan besar konstanta verdet dari setiap material magneto-optik (MOE) fase cair.

In this research, the magnetic field will be increased to obtain a variable verdet constant. The coil with a diameter of 2 mm and a resistance of 1.5 Ohm is designed to produce a strong magnetic field up to 500 mT. The coil will pass a maximum current of 20 A and a maximum voltage of 30 V. However, a 2 mm coil that is passed by a current of 20 A will cause excessive heat which disrupts the stability of the large magnetic field produced, so it is necessary to add a cooling system using a water block attached to the magnetic core and coil. If a strong magnetic field affects the magneto-optic element (MOE) that is passed by light, it is called the Faraday rotation method. Faraday rotation method is used to find the verdet constant. The verdet constant is a representation of the characteristics of the liquid phase magneto-optic element (MOE). In this research to obtain the value of the verdet constant, the measured values are the magnitude of the magnetic field, the angle of polarized light, and the intensity of light. Using red laser light in the form of a point with a wavelength of 650 nm with a maximum light intensity of 54612 lux. Angle changes are carried out using gears connected to the stepper motor and analyzer system. Data retrieval using a polarization technique that is affected by an external magnetic field. The value of the magnetic field measured by the teslameter varies between -250—250 mT. Faraday rotation angle is obtained from the large difference between the polarizer and the analyzer angle with the initial angle difference of 45°. Light that passes through the polarizer and analyzer will be detected by the BH1750 light sensor. The results of this study will show the magnitude of the verdet constant of each liquid phase magneto-optic element (MOE)."
Depok: Fakultas Matematika dan Ilmu Pengetahuan Alam Universitas Indonesia, 2021
S-Pdf
UI - Skripsi Membership  Universitas Indonesia Library
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Van Vlack, Lawrence H.
Reading, Mass: Addison-Wesley, 1982
620.11 VAN m
Buku Teks SO  Universitas Indonesia Library
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Pritchard, Jonathan D.
"This thesis describes the first demonstration of a cooperative optical non-linearity based on Rydberg excitation. Whereas in conventional non-linear optics the non-linearity arises directly from the interaction between light and matter, in a cooperative process it is mediated by dipole-dipole interactions between light-induced excitations. For excitation to high Rydberg states where the electron is only weakly bound, the dipole-dipole interactions are extremely large and long range, enabling an enormous enhancement of the non-linear effect. Consequently, cooperative non-linear optics using Rydberg excitations opens a new era for quantum optics enabling large single photon non-linearity to be accessible in free space for the first time. The thesis describes the theoretical underpinnings of the non- linear effect, the pioneering experimental results and implications for experiments in the single photon regime."
Berlin : [Springer, ], 2012
eBooks  Universitas Indonesia Library
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Nasir Saleh
"A concept of phase space is usable to evaluate the characteristics of various components in microoptics engineering. In this study, a microoptical branching circuit by the use of three identical micro lenses has been constructed, for the purpose of dividing an input light beam into two outputs transmission and reflection beams, respectively.
Mode distribution of input and output beams is, represented by using phase space configuration. By computer simulation, the concept of phase space has been used to predict mode conversion of light guiding in the circuit.
The purpose of the study is to investigate the mode property in each element of the circuit, by measuring the far field mode distribution of the guided light. The existence of mode conversion in a particular element can be observed from the change of the respective made distribution.
The experimental result shows a good agreement with that obtained by simulation of light guiding. It is concluded that, phase space representation derived from ray optics can be utilized as a software in analysis of wave guiding."
Depok: Universitas Indonesia, 1988
T-Pdf
UI - Tesis Membership  Universitas Indonesia Library
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Welford, W.T.
Oxford: Oxford University Press, 1990
R 535 WEL o
Buku Referensi  Universitas Indonesia Library
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Rosari Saleh
"Studi tentang pengaruh anil termal terhadap besaran optis dan disorder lapisan tipis amorf silikon karbon terhidrogenasi (a-SiC:H) telah dilakukan. Lapisan tipis dihasilkan dengan teknik deposisi sputtering menggunakan target grafit dan wafer silikon yang dilakukan dalam campuran gas argon dan hidrogen, kemudian dikarakterisasi dengan spektroskopi uv-vis (ultra violet-visible) sebelum dan setelah diberikan perlakuan anil termal. Indeks bias n dan koefisien absorpsi α diperoleh dari hasil pengukuran transmitansi. Gap optis memperlihatkan sedikit variasi terhadap temperatur anil, yakni meningkat dengan bertambahnya temperatur anil sampai 500 °C. Kenaikan temperatur anil menyebabkan densitas lapisan tipis berkurang dan demikianpula disorder jaringan amorfnya. Hasil eksperimen akan didiskusikan dalam hubungannya dengan kondisi deposisi dan hasil eksperimen lain.

The Effect of Thermal Annealing on the Optical Properties of a-SiC:H Films Produced by DC Sputtering Methods: I. Graphite Target Case. A study of the annealing effect on optical properties and disorder of hydrogenated amorphous silicon carbon (a-SiC:H) films was undertaken. The films were prepared by sputtering technique using graphite target and silicon wafer in argon and hydrogen gas mixture, and then characterized by uv-vis (ultra violet-visible) spectroscopy before and after annealing. Index of refraction n and absorption coefficient α of films have been determined from measurements of transmittance. The optical gap show small variation with annealing temperature, increasing with increasing annealing temperature up to 500 °C. An increase of annealing temperature leads to reduced film density and the amorphous network disorder. The experimental results are discussed in terms of deposition condition and compared to other experimental results."
Depok: Lembaga Penelitian Universitas Indonesia, 2003
AJ-Pdf
Artikel Jurnal  Universitas Indonesia Library
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