1,721,527 research outputs found
TIGasaurus - open source TIG-based high-resolution metal 3-D printer
This project provides all the source code for an open source TIG-based high-resolution metal 3-D printer. It supports the paper: Shane Oberloier, Wilson J. Holmes, Aliaksei Petsiuk, and Joshua M. Pearce. Low-Cost Open Source TIG-based Metal 3-D Printer
TIGasaurus - open source TIG-based high-resolution metal 3-D printer
This project provides all the source code for an open source TIG-based high-resolution metal 3-D printer. It supports the paper: Shane Oberloier, Wilson J. Holmes, Aliaksei Petsiuk, and Joshua M. Pearce. Low-Cost Open Source TIG-based Metal 3-D Printer
TIGasaurus - open source TIG-based high-resolution metal 3-D printer
This project provides all the source code for an open source TIG-based high-resolution metal 3-D printer. It supports the paper: Shane Oberloier, Wilson J. Holmes, Aliaksei Petsiuk, and Joshua M. Pearce. Low-Cost Open Source TIG-based Metal 3-D Printer
TIGasaurus - open source TIG-based high-resolution metal 3-D printer
This project provides all the source code for an open source TIG-based high-resolution metal 3-D printer. It supports the paper: Shane Oberloier, Wilson J. Holmes, Aliaksei Petsiuk, and Joshua M. Pearce. Low-Cost Open Source TIG-based Metal 3-D Printer
John Wilson, Hume's first printer
THE first two volumes of David Hume's A Treatise of Human Nature were published (anonymously) in January of 1739, by John Noon. The third and final volume was published (again anonymously) near the end of October, 1740, by Thomas Longman. None of the volumes includes the name of the printer, but, despite the fact that the work was issued over a period of nearly two years, and by two different booksellers, the three volumes are sufficiently alike in appearance to suggest that they were the work of a single printer, a fact first noted, I believe, by J. M. Keynes and P. Sraffa; 'Though the publisher [of the third volume] was different, nevertheless the printer was clearly the same, as is shown by the identity of the ornaments.
Wilson, J. Havelock (1858-1929)
Wilson, J. Havelock (1858-1929), trade unionist and politician. Joseph Havelock Wilson was born in Sunderland on August 16, 1858, to John Blenkin Wilson, a foreman draper, and Hannah Wilson. His father died when he was three; his mother supported him and his five siblings by opening a greengrocery and later a small boardinghouse. At age six Wilson sold newspapers; after three years at the Boys' British School in Sunderland, he became an errand boy at age nine. When he was thirteen he was apprenticed to a lithographic printer, but he ran away to sea after a few months. After completing several short voyages, he obtained another apprenticeship, this time with Sanderson, a Sunderland shipowner. Wilson worked his way up from cabin boy to second mate in various kinds of vessels. His usual rating was as able-bodied seaman (AB)/cook, and he also served five years in the Royal Naval Reserve as an AB. He was still in the coastal trade when he married Jane Anne Watham at the Monkwearmouth Parish Church on March 30, 1879. He came ashore in 1882 and eventually opened Wilson's Temperance Hotel and Dining Rooms. Wilson's first trade union experience was in the Australian coastal trade
A right excellent and famous Comœdy called the three Ladies of London. Wherein is notablie declared and set foorth, how by the meanes of Lucar, Loue and Conscience is so corrupted, that the one is married to Dissimulation, the other fraught with all abomination.
The name of Paule Bucke, printed at the end, is supposed to be that of the actor who transcribed the play for the printer. cf. J. P. Collier's Five old plays, 1851, p.ix.Label pasted on front end-paper reads: ... The three ladies of London, by R. W. Date of first known edition, 1584 Reproduced in facsimile [Tudor facsimile texts] 1911.Ascribed to Robert Wilson, the elder.Mode of access: Internet
The safety and effectiveness of different methods of ear wax removal: a systematic review and economic evaluation
Ear wax (cerumen) is a natural secretion produced to protect the inner ear from dirt and other fragments by moving these particles towards the outer ear. If this process does not happen properly, wax may build up causing blockage in the ear canal and the possibility of impaction. People with a build up of ear wax may suffer from hearing loss, discomfort and, on occasions, infection. It may present problems in assessing hearing, blocking the view of the ear drum during medical examination and interfering with the fitting or function of hearing aids. Although it is thought to affect between 2% and 6% of the population in the England and Wales, some groups may be at a higher risk, such as those using hearing aids or with small ear canals and/or skin conditions. Recurrence is thought to be high among some of these groups. The consequences of the build up of ear wax in the ear canal are thought to be a common reason for consultation and cost in general practice with over 2 million consultations per year in the NHS.Methods of removal of ear wax include drops, flushing with water in general practice, and removal with suction or probes in specialist clinics. The relative safety and benefits of these different methods of removal remains uncertain. This research will systematically review published and unpublished evidence on the clinical and cost effectiveness of different methods for the removal of ear wax. Where appropriate, it will develop an economic model using data from this systematic review and other relevant sources to estimate the relative costs and benefits of different methods. In addition, the project will provide recommendations for future research to try to help answer any remaining areas of uncertainty
PERANCANGAN MESIN 3D PRINTER DENGAN METODE REVERSE ENGINEERING (Studi Kasus di Laboratorium Mekatronika dan Robotics Universitas Tarumanagara)
Laboratorium Mekatronika dan laboratorium Robotics di Universitas Tarumanagara
merupakan laboratorium untuk mempelajari ilmu mekanika, elektronika, dan informatika.
Dalam proses produksinya, Laboratorium Mekatronika dan Robotics sangat memperhatikan
proses pembuatan robot yang dianalisis mulai dari proses pembuatan rangka dan komponen
robot hingga proses pemasangan rangkaian elektronik dan penerapan program pada robot.
Reverse engineering merupakan proses analisis produk yang sudah ada sebagai acuan untuk
merancang produk yang sejenis dengan memperkecil dan meningkatkan keunggulan produk.
Kegiatan Reverse Engineering (RE) dilakukan dengan cara Diassembly 3D printer lama,
Assembly 3D printer lama, Benchmarking, Design 3D printer baru, dan terakhir adalah
protyping. Reverse engineering dilakukan pada produk 3D printer Grabber i3. Untuk 3D
printer baru ini dilakukan inovasi pada material produk, yaitu akrilik, power supply 12V 30A,
motor driver A4988, extruder bowden MK8, dan menambah fitur baru yaitu heatbed
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