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Hasil Pencarian

Ditemukan 22 dokumen yang sesuai dengan query
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Jakarta: Badan Standarisasi Nasional, 2005
644.3 BAD l
Buku Teks  Universitas Indonesia Library
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Anthony Ryan
"ABSTRAK
Lampu LED berbasis air garam merupakan alternatif sumber energi listrik untuk penerangan yang ramah lingkungan. Aluminium mempunyai potensi sebagai pengganti elektroda yang lebih murah dan tetap memiliki performa yang baik sebagai elektroda. Batang elektroda aluminium yang dirangkai dengan seri dapat menghasilkan listrik menggunakan elektrolit larutan garam. Pengujian dengan elektrolit air garam dilakukan dengan menggunakan pelarut 380 ml air. Pada jumlah garam 18 gr dihasilkan tegangan 4,12 Volt dan arus listrik 0,19 Ampere, sementara pada garam 28 gr dihasilkan tegangan 4,49 Volt dan arus listrik 0,21 Ampere. Pada pengujian waktu operasi, pada elektrolit air garam dengan garam 18 gr menghasilkan waktu maksimum operasi ± 88 jam pemakaian. Kemudian, kedua macam pengujian dilakukan kembali menggunakan elektrolit air laut guna mengetahui kelayakan kedua jenis karakteristik elektroda aluminium pada air laut. Pengujian tersebut menghasilkan tegangan maksimum 3,98 Volt dan arus listrik maksimum 0,22 Ampere dan menghasilkan waktu maksimum operasi ± 80 jam. Dibandingkan dengan penelitian sebelumnya menggunakan elektroda magnesium, disimpulkan bahwa elektroda aluminium dapat dirangkai sedemikian rupa untuk mendapatkan hasil karakter kelistrikan yang mendekati magnesium, namun secara keseluruhan elektroda aluminium perlu diuji campuran logam (alloy) untuk mendapatkan hasil yang lebih baik.

ABSTRACT
Salt-water based LED light is an alernative source of electrical energy for environmentally-friendly lighting. Aluminum has the potential as a substitute for cheaper electrodes and still has good performance as an electrode. Alumunium electrode rods that has been arranged in series electrical circruits can produce electricity using the electrolyte saline solution. The study that is done with brine electrolyte was carried out using 380 ml of water solvent. At the amount of 18 gr salt, it produced a max voltage of 4,12 Volt and a max electric current of 0,19 Ampere, while the 28 gr of salt produced a max voltage of 4,49 Volt and a max electric current of 0,21 Ampere. In testing the operating time, the salt electrolyte with 18 gr salt produces a max operating time of ± 88 hours of use. Then, the two types of tests were carried out again using seawater electrolyte to determine the feasibility of the two types of characteristics of aliminum electrodes in seawater. The test produces a max voltage of 3,98 Volt and a max electric current of 0,22 Ampere and produces a max operating time of ± 80 hours. Compared with previous studies using magnesium electrodes, it is concluded that aluminum electrodes can be arranged in such a way as to obtain electrical characteristics that are close to magnesiums results, but overall aluminum electrodes need to be tested by a mixture of metals (alloy) to get better testing results."
2019
S-pdf
UI - Skripsi Membership  Universitas Indonesia Library
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Yantie Sugiarnie Y. Tingan
"Lampu digunakan sebagai alat penerang dalam kehidupan manusia, tetapi lampu juga dapat dimaknai lebih dari sekedar penerang biasa, antara lain sebagai simbol kehidupan dan pengetahuan. Keragaman bentuk dan ornamen yang dimiliki lampu juga dimaknai lebih dari sekedar penerang biasa karena ada maksud tertentu dibalik penggunaan bentuk dan ornamen tersebut.
Kajian ini membahas tentang lampu-lampu perunggu Jawa Kuna koleksi Museum Nasional Jakarta yang berasal dari periode Klasik Tua dan Klasik Muda. Selain berbentuk gantung dan duduk, lampu-lampu perunggu koleksi Museum Nasional Jakarta memiliki ornamen yang bervariasi, tetapi terdapat juga lampu-lampu perunggu gantung atau duduk yang tidak memiliki ornamen. Ornamen-ornamen yang digunakan untuk melengkapi lampu-lampu perunggu mengandung makna tertentu karena adanya beberapa ornamen yang memuat unsur kedewasaan, mitos, dan susastera.
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Depok: Fakultas Ilmu Pengetahuan Budaya Universitas Indonesia, 2004
T11320
UI - Tesis Membership  Universitas Indonesia Library
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Ardath Herland S.
"Insiden tuberkulosis (TB) di Indonesia merupakan salah satu yang tertinggi di dunia. Penegakan diagnosis secara tepat merupakan salah satu upaya untuk mengendalikan TB. Modalitas uji diagnostik laboratorium TB yang tersedia yaitu pemeriksaan mikroskopis Basil Tahan Asam (BTA) dan pemeriksaan biakan memiliki beberapa keterbatasan. Secara global, terjadi peningkatan dalam penggunaan Tes Cepat Molekuler (TCM) sebagai uji diagnostik laboratorium TB. Salah satu TCM yang telah direkomendasikan oleh World Health Organization (WHO) yaitu loop-mediated isothermal amplification (LAMP). Oleh karena itu, perlu dilakukan penelitian untuk mengevaluasi metode LAMP, sehingga metode tersebut dapat diterapkan secara rutin di Indonesia. Penelitian dilaksanakan di Laboratorium Mikrobiologi Klinik Fakultas Kedokteran Universitas Indonesia (LMK-FKUI) terhadap 100 orang pasien terduga TB paru. Setiap pasien menyerahkan dua sputum langsung, yaitu sputum sewaktu dan sputum pagi/sewaktu. Terhadap setiap sputum langsung kemudian dilakukan pemeriksaan mikroskopis BTA. Dua sediaan sputum langsung dari setiap pasien kemudian digabung untuk menghasilkan mixed sputum. Terhadap setiap mixed sputum dilakukan pemeriksaan mikroskopis BTA, biakan Lowenstein-Jensen (LJ) dan pemeriksaan TB-LAMP. Biakan yang tumbuh diidentifikasi menggunakan tes MPT64. Hasil penelitian menunjukkan nilai kapa (κ) pemeriksaan mikroskopis BTA antara sputum langsung dan mixed sputum sebesar 0,88; p < 0,001 (95% CI 0,78-0,97). Persentase hasil LAMP (+) pada sputum langsung dengan hasil BTA (-) sebesar 28,07%, sedangkan persentase hasil LAMP (+) pada mixed sputum dengan hasil BTA (-) sebesar 32,78%. Metode TB-LAMP memiliki nilai sensitivitas sebesar 100% (95% CI 89,56-100%) dan spesifisitas sebesar 69,64% (95% CI 55,74-80,84%). Nilai duga positif TB-LAMP sebesar 71,19% (95% CI 57,73-81,86%), sedangkan nilai duga negatif TB-LAMP sebesar 100% (95% CI 88,83-100%). Pada hasil mikroskopis BTA yang sesuai (concordant) dengan biakan TB, nilai sensitivitas dan spesifisitas TB-LAMP berturut-turut sebesar 100% (95% CI 89,09-100%) dan 73,58% (95% CI 59,42-84,32). Adapun nilai sensitivitas TB-LAMP pada hasil mikroskopis BTA yang tidak sesuai (discordant) dengan biakan TB, yaitu sebesar 100% (95% CI 19,79-100%). Metode TB-LAMP memiliki nilai sensitivitas dan nilai duga negatif yang tinggi. Untuk menegakkan diagnosis TB paru secara tepat, metode TB-LAMP harus dikombinasikan dengan gejala dan tanda yang terdapat pada pasien.

The incidence of tuberculosis (TB) in Indonesia is one of the highest in the world. Appropriate diagnosis is an effort to control TB. Existing TB laboratory diagnostic test modalities, which are Acid-Fast Bacilli (AFB) smear and culture examination have several limitations. Globally, there has been an increase in the use of the molecular rapid test as a TB laboratory diagnostic test. One of the molecular rapid tests recommended by the World Health Organization (WHO) is loop-mediated isothermal amplification (LAMP). Therefore, research is needed to evaluate the LAMP method, so that the method can be applied routinely in Indonesia. The study was conducted at the Clinical Microbiology Laboratory of the Faculty of Medicine, Universitas Indonesia for 100 patients suspected of pulmonary TB. Each patient handed over two direct sputums, which are the spot sputum and morning/spot sputum. Against each direct sputum, an AFB smear was carried out. Two direct sputum preparations from each patient were then combined to produce mixed sputum. For each mixed sputum, AFB smear, Lowenstein-Jensen (LJ) culture and TB-LAMP examination were carried out. Cultures that were grown were identified using MPT64 tests. The results of the study showed that the kappa (κ) value of AFB smear between direct sputum and mixed sputum was 0.88; p < 0.001 (95% CI 0.78-0.97). The percentage of LAMP (+) in direct sputum with AFB (-) was 28.07%, while the percentage of LAMP (+) in mixed sputum with AFB (-) was 32.78%. The TB-LAMP method had a sensitivity value of 100% (95% CI 89.56-100%) and a specificity of 69.64% (95% CI 55.74-80.84%). Positive predictive value of TB-LAMP was 71.19% (95% CI 57.73-81.86%), while the negative predictive value of TB-LAMP was 100% (95% CI 88.83-100%). In concordant AFB smear results with TB culture, the TB-LAMP sensitivity and specificity values were 100% (95% CI 89.09-100%) and 73.58% (95% CI 59.42-84,32), respectively. The sensitivity value of TB-LAMP on AFB smear results which were discordant with TB culture was 100% (95% CI 19.79-100%). The TB-LAMP method had a high sensitivity value and negative predictive value. To properly diagnose pulmonary TB, the TB-LAMP method must be combined with the symptoms and signs that the patient has."
Jakarta: Fakultas Kedokteran Universitas Indonesia, 2019
SP-pdf
UI - Tugas Akhir  Universitas Indonesia Library
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Muhammad Levy Aninditio
"The energy crisis in the future will be a threat for human life. Many advancement of technology currently focus on creating something that perform better than its predecessor but consuming less power. LED lighting technology has been introduced as a breakthrough of technology which possesses big advantages over the other lighting technology. LED lighting technology is able to produce a high luminous flux with very low power consumption, and also lasts longer than others. By consuming lower power, hence the amount of energy being consumed in order to generate the same amount of light will be reduced, and hence, energy saving will happen.
This undergraduate thesis discusses replacement analysis of lighting at classrooms at Engineering Center of Faculty of Engineering Universitas Indonesia. The analysis is in terms of illuminance aspect, power quality performance and cost, and it is done by replacing the existing CFL with three different options of LED lamp exist in the market with competitive price. The study suggests that using LED lamp as a replacement for CFL at classrooms at Engineering Center of Faculty of Engineering Universitas Indonesia is more efficient consuming less energy by 42.86 , and moreover saving the electricity cost as well, from IDR 864,360 annually to IDR 493,920. A comparative analysis between the three different LED lamp options is also performed. "
Depok: Fakultas Teknik Universitas Indonesia, 2016
S66112
UI - Skripsi Membership  Universitas Indonesia Library
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J. Aira Darya
Depok: Fakultas Ilmu Sosial dan Ilmu Politik Universitas Indonesia, 1987
S8880
UI - Skripsi Membership  Universitas Indonesia Library
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Septyono Utomo
"Perkembangan teknologi dan pertumbuhan penduduk membuat konsumsi energi terus meningkat sehingga diperlukan penghematan. Salah satu cara melakukan penghematan tersebut adalah dengan penghematan konsumsi energi untuk penerangan. Seiring dengan kemajuan teknologi pun muncul Lampu LED (Light Emitting Diode). LED merupakan lampu dengan konsumsi daya yang rendah bila dibandingkan dengan lampu penerangan lainnya seperti misalnya lampu hemat energi. Lampu LED membutuhkan catu tegangan arus searah. Karena itu lampu LED membutuhkan rangkaian untuk mengubah catu tegangan arus bolak-balik menjadi catu tegangan arus searah. Selain itu lampu LED harus memiliki distribusi cahaya yang baik agar dapat digunakan untuk penerangan. Karena itu dilakukan pengujian untuk melihat perbandingan panas serta pengujian untuk melihat bagaimana distribusi cahaya lampu LED bila dibandingkan dengan lampu hemat energi. Dan dari hasil yang didapat Lampu LED memiliki panas yang lebih rendah dibandingkan dengan lampu hemat energi. Sementara lampu hemat energi memiliki distribusi cahaya yang lebih baik dibandingkan lampu LED.

The development of technology and population growth make electrical energy consumption increased so that the savings needed to be made. One way to savings on energy consumption is savings energy consumption for illumination. Along with advances in technology arises LED lamps (Light Emitting Diode). LED (Light Emitting Diode) Lamps is a lamp with low power consumption when compared with other lamps, like energy-saving lamp (LHE). LED lamps require direct current voltage supply. Therefore, the LED lights require electrical circuit to convert the alternating current voltage supply into direct current voltage supply. Futhermore LED lamps should have good light distribution to be used for illumination. Because of that testing of lamps was to compare the heat distribution and light distribution between LED lamps and energy-saving lamps. And from the result LED lamps have lower heat than enery saving lamps. While energy-saving lamps have better light distribution than LED lamps."
Depok: Fakultas Teknik Universitas Indonesia, 2014
S56945
UI - Skripsi Membership  Universitas Indonesia Library
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Sianipar, Bill Clinton
"[ABSTRAK
Sensor cahaya merupakan perangkat yang mengubah besaran analog (besaran cahaya) menjadi sinyal listrik. Ada bermacam sensor cahaya yang sering digunakan, beberapa di antaranya ialah sensor cahaya LDR, fotodioda, dan OPT101. Masing-masing sensor memiliki karateristik yang berbeda. Perbedaan yang mencolok adalah jenis sinyal listrik yang dihasilkan oleh masing-masing sensor sebagai dampak dari terangsangnya material di dalam sensor terhadap perubahan besar penerangan. Sensor cahaya LDR memiliki resistansi yang semakin kecil nilainya dengan bertambah besarnya penerangan, sedangkan arus listrik dari fotodioda semakin besar nilainya dengan penerangan yang semakin besar pula nilainya. Modul praktikum sensor cahaya mampu untuk memberikan semua fitur yang diperlukan untuk mempelajari karakteristik sensor-sensor cahaya tersebut dengan menggunakan pengatur besar penerangan, dan rangkaian-rangkaian pendukung seperti voltage divider dan low-pass filter.
ABSTRACT
Light sensor is a device that is able to change analog property (light) into electric signal. There are various kinds of light sensors such as LDR, photodiode, and OPT101. Each sensor has different and unique specification. The difference between those three sensors that is easy to be identified lies in the kind of output signal of each kind of light sensor. The output comes out of each of the light sensors as the respond of the sensor's material that reacts to the change of lighting. The LDR?s resistance gets lower as the amount of incident light gets higher, the electric current from the photodiode gets higher as the amount of incident light gets higher too. This light sensor practicum module has all of the features, like the lighting controller, voltage divider and low-pass filter electric circuits, that are required to learn about each sensor's characteristic.;Light sensor is a device that is able to change analog property (light) into electric signal. There are various kinds of light sensors such as LDR, photodiode, and OPT101. Each sensor has different and unique specification. The difference between those three sensors that is easy to be identified lies in the kind of output signal of each kind of light sensor. The output comes out of each of the light sensors as the respond of the sensor's material that reacts to the change of lighting. The LDR?s resistance gets lower as the amount of incident light gets higher, the electric current from the photodiode gets higher as the amount of incident light gets higher too. This light sensor practicum module has all of the features, like the lighting controller, voltage divider and low-pass filter electric circuits, that are required to learn about each sensor's characteristic., Light sensor is a device that is able to change analog property (light) into electric signal. There are various kinds of light sensors such as LDR, photodiode, and OPT101. Each sensor has different and unique specification. The difference between those three sensors that is easy to be identified lies in the kind of output signal of each kind of light sensor. The output comes out of each of the light sensors as the respond of the sensor's material that reacts to the change of lighting. The LDR’s resistance gets lower as the amount of incident light gets higher, the electric current from the photodiode gets higher as the amount of incident light gets higher too. This light sensor practicum module has all of the features, like the lighting controller, voltage divider and low-pass filter electric circuits, that are required to learn about each sensor's characteristic.]"
Universitas Indonesia, 2015
S62560
UI - Skripsi Membership  Universitas Indonesia Library
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Ricky Fernando Adi S.
"Latar Belakang. Penyakit COVID-19 yang disebabkan oleh SARS-CoV-2 dengan cepat menyebar dan menjadi Pandemi serta menimbukan kerugian yang sangat besar pada masyarakat di seluruh dunia. Deteksi virus yang cepat dan akurat memegang peranan penting untuk mengendalikan penyebaran di masyarakat dan membantu pasien untuk menghindari perkembangan penyakit lebih lanjut. Saat ini real-time Reverse Transcriptase Polymerase Chain Reaction (real-time RT-PCR) merupakan reference standard diagnostic test dalam mendeteksi SARS-CoV-2 di seluruh dunia. Real-time Reverse Transcriptase Loop Mediated Isothermal Amplification (RT-LAMP) merupakan metode amplifikasi asam nukleat isotermal yang memiliki sensitivitas dan spesifisitas tinggi dan waktu pengerjaan yang jauh lebih cepat dibandingkan real-time RT-PCR. Tujuan. Penelitian bertujuan untuk
iDetectTM SARS-CoV-2 Detection Kit
SARS-CoV-2.
Metode. Penelitian ini merupakan uji kesesuaian dengan studi potong lintang dan menggunakan metode pengumpulan sampel secara consecutive sampling. Subjek penelitian yaitu spesimen swab nasofaring dan orofaring dalam VTM (N=80) yang dianalisis di Laboratorium Mikrobiologi Klinik Fakultas Kedokteran Universitas Indonesia. iDetectTM SARS-CoV-2 Detection Kit menggunakan uji kesesuaian Kappa aplikasi SPSS versi 25.
Hasil. Dari 72 sampel valid yang diperiksa dengan real-time RT-LAMP iDetectTM SARS- CoV-2 Detection Kit dan real-time RT-PCR, 24 sampel terdeteksi positif oleh real-time RT-PCR dan hanya tiga sampel yang terdeteksi positif oleh real-time RT-LAMP. Tiga sampel yang terdeteksi positif oleh real-time RT-LAMP termasuk ke dalam sampel - sampel yang terdeteksi positif oleh real-time RT-PCR. Secara statistik, uji reliabilitas / uji kesesuaian dari penelitian kedua alat diagnostik ini menunjukkan nilai Kappa yang sangat rendah, yaitu 0,16. Uji kesesuaian Kappa kedua alat ini menunjukkan bahwa hasil pemeriksaan alat real-time RT-LAMP iDetectTM SARS-CoV-2 Detection Kit tidak sesuai dengan alat real-time RT-PCR dalam mendeteksi SARS-CoV-2. Kesimpulan. Real-time RT-LAMP iDetectTM SARS-CoV-2 Detection Kit tidak sesuai dengan alat real-time RT-PCR dan tidak dapat digunakan sebagai alat diagnostik dalam mendeteksi SARS-CoV-2.

Introduction. COVID-19 caused by SARS-CoV-2 quickly spread and became Global Pandemic and caused enormous losses to people around the world. Rapid and accurate virus detection plays an important role in controlling spread in the community and helping patients to avoid further disease progression. Currently, real-time Reverse Transcriptase Polymerase Chain Reaction (real-time RT-PCR) is determined as the reference standard diagnostic test for detecting SARS-CoV-2 worldwide. Real-time Reverse Transcriptase Loop Mediated Isothermal Amplification (RT-LAMP) is an isothermal nucleic acid amplification method that has high sensitivity and specificity and provide faster result than real-time RT-PCR. Aim. The research aims to compare real-time RT-LAMP iDetectTM SARS-CoV-2 Detection Kit and real-time RT-PCR in detecting SARS-CoV-2. Method. This research is a comparison test with a cross-sectional study and uses a consecutive sampling method to collect samples. The research subjects were nasopharyngeal and oropharynx swab specimens in VTM (N=80) which were analyzed at the Clinical Microbiology Laboratory, Faculty of Medicine, Universitas Indonesia. The data obtained from the real-time RT-LAMP iDetectTM SARS-CoV-2 Detection Kit and real-time RT-PCR test results were analyzed using Kappa test SPSS version 25.
Results. Of the 72 valid samples examined by the real-time RT-LAMP iDetectTM SARS- CoV-2 Detection Kit and real-time RT-PCR, 24 samples were detected positive by real- time RT-PCR and only three samples were detected positive by real-time RT-LAMP. Three samples that were detected positive by the real-time RT-LAMP were included in the samples that were detected positive by the real-time RT-PCR. Statistically, the comparison test of the research of these two diagnostic tools showed a very low Kappa value, which was 0.16. The Kappa suitability test of these two tools showed that the real- time RT-LAMP iDetectTM SARS-CoV-2 Detection Kit were not compatible with the real- time RT-PCR in detecting SARS-CoV-2. Summary. Real-time RT-LAMP iDetectTM SARS-CoV-2 Detection Kit is not compatible with real-time RT-PCR and cannot be used as a diagnostic tool in detecting SARS-CoV-2.
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Jakarta: Fakultas Kedokteran Universitas Indonesia, 2022
SP-pdf
UI - Tugas Akhir  Universitas Indonesia Library
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Tampubolon, Libertinus T.
"Pada umumnya prosedur analisis kapasitas simpang tanpa lampu lalulintas didasarkan pada model stochastic seperti model gap yang diterima (gap-acceptance model) yang menyatakan kapasitas adalah sebuah fungsi dari tersedianya gap kritis (critical gap). Penelitian dimaksudkan untuk menentukan nilai gap kritis simpang dan mengembangkan model kapasitas simpang tanpa lampu lalulintas tiga kaki (T-intersection) berdasarkan teori gap yang diterima (gap-acceptance theory).
Pengumpulan data di lapangan menggunakan video kamera yang memiliki fasilitas durasi waktu. Data primer yang diamati adalah volume simpang, gap diterima dan ditolak pada arus mayor serta follow-up time kendaraan arus minor. Gap kritis dianalisis dengan pendekatan deterministik yaitu metode Raff dan pendekatan probabilistik yaitu analisis probit. Pengembangan model dilakukan dengan mengaplikasikan parameter hasil analisis gap kritis pada kandidat model yaitu Model Blunden (1961), Model Harders (HCM 1985), Model Siegloch (HCM 1994), Model Modified Harders, Model Modified Siegloch dan Model Tanner (1962). Kapasitas kandidat model yang paling mendekati kapasitas lapangan ditetapkan sebagai model terpilih.
Hasil Penelitian menunjukkan gap kritis diperoleh didasarkan metode Raff menghasilkan nilai gap kritis sebesar 2,00 detik. Model terpilih adalah Model Modified Harders yang dikembangkan melalui dua pendekatan yaitu teknik regresi linear dan penaksiran parameter dengan metode trial and error. Modifikasi dilakukan dengan menetapkan parameter gap minimum tm=0,25 detik dan parameter skala distribusi X dikali 1,5 hingga diperoleh model kapasitas simpang tanpa lampu lalulintas."
Depok: Fakultas Teknik Universitas Indonesia, 2006
T16862
UI - Tesis Membership  Universitas Indonesia Library
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