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The development of electrical technology in the 19th century / by W. James King

Archives, Room Use Only - TK17.K56 1962




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Genealogy of some of the Vail family descended from Thomas Vail at Salem, Massachusetts, 1640: together with collateral lines / by Wm. Penn Vail

Archives, Room Use Only - CS71.V129 1937




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[Collection of telegraphy catalogs].

Archives, Room Use Only - TK5295.C65 1888




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Catalogue and price list of household and experimental electrical supplies of superior quality and at moderate cost / J. Elliott Shaw & Co

Archives, Room Use Only - TK455.J34 1897




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Catalogue of apparatus, material, tools, cars and camp equipment: used in connection with the outside plant.

Archives, Room Use Only - TK5295.W48 1929




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Reports of the examiners of section XXIII: (section IV-A, class VIII, of the catalogue): electro-medical apparatus.

Archives, Room Use Only - R857.E49 I58 1886




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Artificial intelligence can serve as backup to radiologists' eyes




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Cosmologists gain insights into density, structure of matter in universe




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CAB conducts webinar on sports psychology for Bengal women players




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But this blog goes up to eleven

So that Trent Walton went and redesigned his blog. And it is responsive. And on top of all that? It is sexy.

I’ve been admiring the Paravel team’s work for some time, and especially their dabblings in responsive design; if you haven’t seen the Do Lectures site, give it a whirl. It’s visually and technically impressive, and is a joy to browse at any resolution.

But that’s not all: given Trent’s penchant for full-width, type-heavy headings, he and the team at Paravel decided to knock out FitText, a jQuery plugin to create full-width, scaleable headlines from, well, your headlines. I can’t wait to give this a whirl.

Of course, in the middle of this cornucopia of goddamned fantastic things, Trent has to go and drop beats like this:

My love for responsive centers around the idea that my website will meet you wherever you are—from mobile to full-blown desktop and anywhere in between.

Emphasis mine. That sentence—that sentiment—is so good, I want it tattooed on my knuckles.

(Hrm. Wonder if there’s a jQuery plugin for that.)




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Weather Warnings for New South Wales / Australian Capital Territory - land areas. Issued by the Australian Bureau of Meteorology




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Weather Warnings for Australian Capital Territory. Issued by the Australian Bureau of Meteorology




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Open dialogue between parents, children need of the hour, Psychologists on Bois Locker Room row




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Shah telling lies on migrants' issue, should apologise: Trinamool




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Despite permission to reopen, industries raise logistical issues

The State government may have permitted industrial units to reopen, but an interaction with MSME bodies brought to light the acute logistical problem




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Alter Realkatalog (1501-1952), Teil Bayern - BSB Cbm Cat. 805(1 b (1870)




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Alter Realkatalog (1501-1952), Teil Bayern - BSB Cbm Cat. 805(1 b (1870)




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Alter Realkatalog (1501-1952), Teil Bayern - BSB Cbm Cat. 805(1 b (1870)




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Alter Realkatalog (1501-1952), Teil Bayern - BSB Cbm Cat. 805(1 b (1870)




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Alter Realkatalog (1501-1952), Teil Bayern - BSB Cbm Cat. 805(1 b (1870)




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Alter Realkatalog (1501-1952), Teil Bayern - BSB Cbm Cat. 805(1 b (1870)




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Alter Realkatalog (1501-1952), Teil Bayern - BSB Cbm Cat. 805(1 b (1870)




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Alter Realkatalog (1501-1952), Teil Bayern - BSB Cbm Cat. 805(1 b (1870)




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Visakhapatnam gas leak: LG Polymers apologises, offers ‘every support’ to affected

Visakhapatnam gas leak: LG Polymers apologises, offers ‘every support’ to affected




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Govt explains logic behind 5-star choice

Govt explains logic behind 5-star choice




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On the plate: Technology-aided dining and sparser eateries

On the plate: Technology-aided dining and sparser eateries




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Technology to help Delhi Police breach iPhones, get back deleted data

Technology to help Delhi Police breach iPhones, get back deleted data




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Controversial singer appears before Akal Takht, tenders apology




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Chandigarh University uses 3D printing technology to design splitters that can bridge ventilators shortfall in India




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Amarinder offers free land to Central govt for Rs 550 crore Virology centre in Punjab




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Apologise for mismanaging pilgrims' return: Sukhbir to Amarinder




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Technology to help Delhi Police breach iPhones, get back deleted data

Delhi Police is going to procure a technology which will help the cops extract data from iPhones seized by them from suspects. The software can even extract deleted data and data from installed applications on the phones.




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Soft X-ray varied-line-spacing gratings fabricated by near-field holography using an electron beam lithography-written phase mask

A fabrication method comprising near-field holography (NFH) with an electron beam lithography (EBL)-written phase mask was developed to fabricate soft X-ray varied-line-spacing gratings (VLSGs). An EBL-written phase mask with an area of 52 mm × 30 mm and a central line density greater than 3000 lines mm−1 was used. The introduction of the EBL-written phase mask substantially simplified the NFH optics for pattern transfer. The characterization of the groove density distribution and diffraction efficiency of the fabricated VLSGs indicates that the EBL–NFH method is feasible and promising for achieving high-accuracy groove density distributions with corresponding image properties. Vertical stray light is suppressed in the soft X-ray spectral range.




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BioStruct-Africa: empowering Africa-based scientists through structural biology knowledge transfer and mentoring – recent advances and future perspectives

Being able to visualize biology at the molecular level is essential for our understanding of the world. A structural biology approach reveals the molecular basis of disease processes and can guide the design of new drugs as well as aid in the optimization of existing medicines. However, due to the lack of a synchrotron light source, adequate infrastructure, skilled persons and incentives for scientists in addition to limited financial support, the majority of countries across the African continent do not conduct structural biology research. Nevertheless, with technological advances such as robotic protein crystallization and remote data collection capabilities offered by many synchrotron light sources, X-ray crystallography is now potentially accessible to Africa-based scientists. This leap in technology led to the establishment in 2017 of BioStruct-Africa, a non-profit organization (Swedish corporate ID: 802509-6689) whose core aim is capacity building for African students and researchers in the field of structural biology with a focus on prevalent diseases in the African continent. The team is mainly composed of, but not limited to, a group of structural biologists from the African diaspora. The members of BioStruct-Africa have taken up the mantle to serve as a catalyst in order to facilitate the information and technology transfer to those with the greatest desire and need within Africa. BioStruct-Africa achieves this by organizing workshops onsite at our partner universities and institutions based in Africa, followed by post-hoc online mentoring of participants to ensure sustainable capacity building. The workshops provide a theoretical background on protein crystallography, hands-on practical experience in protein crystallization, crystal harvesting and cryo-cooling, live remote data collection on a synchrotron beamline, but most importantly the links to drive further collaboration through research. Capacity building for Africa-based researchers in structural biology is crucial to win the fight against the neglected tropical diseases, e.g. ascariasis, hookworm, trichuriasis, lymphatic filariasis, active trachoma, loiasis, yellow fever, leprosy, rabies, sleeping sickness, onchocerciasis, schistosomiasis, etc., that constitute significant health, social and economic burdens to the continent. BioStruct-Africa aims to build local and national expertise that will have direct benefits for healthcare within the continent.




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Reducing sample consumption for serial crystallography using acoustic drop ejection

Efficient sample delivery is an essential aspect of serial crystallography at both synchrotrons and X-ray free-electron lasers. Rastering fixed target chips through the X-ray beam is an efficient method for serial delivery from the perspectives of both sample consumption and beam time usage. Here, an approach for loading fixed targets using acoustic drop ejection is presented that does not compromise crystal quality, can reduce sample consumption by more than an order of magnitude and allows serial diffraction to be collected from a larger proportion of the crystals in the slurry.




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X-ray radiation damage to biological samples: recent progress

With the continuing development of beamlines for macromolecular crystallography (MX) over the last few years providing ever higher X-ray flux densities, it has become even more important to be aware of the effects of radiation damage on the resulting structures. Nine papers in this issue cover a range of aspects related to the physics and chemistry of the manifestations of this damage, as observed in both MX and small-angle X-ray scattering (SAXS) on crystals, solutions and tissue samples. The reports include measurements of the heating caused by X-ray irradiation in ruby microcrystals, low-dose experiments examining damage rates as a function of incident X-ray energy up to 30 keV on a metallo-enzyme using a CdTe detector of high quantum efficiency as well as a theoretical analysis of the gains predicted in diffraction efficiency using these detectors, a SAXS examination of low-dose radiation exposure effects on the dissociation of a protein complex related to human health, theoretical calculations describing radiation chemistry pathways which aim to explain the specific structural damage widely observed in proteins, investigation of radiation-induced damage effects in a DNA crystal, a case study on a metallo-enzyme where structural movements thought to be mechanism related might actually be radiation-damage-induced changes, and finally a review describing what X-ray radiation-induced cysteine modifications can teach us about protein dynamics and catalysis. These papers, along with some other relevant literature published since the last Journal of Synchrotron Radiation Radiation Damage special issue in 2017, are briefly summarized below.




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X-ray fluorescence analysis of metal distributions in cryogenic biological samples using large-acceptance-angle SDD detection and continuous scanning at the Hard X-ray Micro/Nano-Probe beamline P06 at PETRA III

A new Rococo 2 X-ray fluorescence detector was implemented into the cryogenic sample environment at the Hard X-ray Micro/Nano-Probe beamline P06 at PETRA III, DESY, Hamburg, Germany. A four sensor-field cloverleaf design is optimized for the investigation of planar samples and operates in a backscattering geometry resulting in a large solid angle of up to 1.1 steradian. The detector, coupled with the Xspress 3 pulse processor, enables measurements at high count rates of up to 106 counts per second per sensor. The measured energy resolution of ∼129 eV (Mn Kα at 10000 counts s−1) is only minimally impaired at the highest count rates. The resulting high detection sensitivity allows for an accurate determination of trace element distributions such as in thin frozen hydrated biological specimens. First proof-of-principle measurements using continuous-movement 2D scans of frozen hydrated HeLa cells as a model system are reported to demonstrate the potential of the new detection system.




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X-ray fluorescence detection for serial macromolecular crystallography using a JUNGFRAU pixel detector

Detection of heavy elements, such as metals, in macromolecular crystallography (MX) samples by X-ray fluorescence is a function traditionally covered at synchrotron MX beamlines by silicon drift detectors, which cannot be used at X-ray free-electron lasers because of the very short duration of the X-ray pulses. Here it is shown that the hybrid pixel charge-integrating detector JUNGFRAU can fulfill this function when operating in a low-flux regime. The feasibility of precise position determination of micrometre-sized metal marks is also demonstrated, to be used as fiducials for offline prelocation in serial crystallography experiments, based on the specific fluorescence signal measured with JUNGFRAU, both at the synchrotron and at SwissFEL. Finally, the measurement of elemental absorption edges at a synchrotron beamline using JUNGFRAU is also demonstrated.




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The HARE chip for efficient time-resolved serial synchrotron crystallography

Serial synchrotron crystallography (SSX) is an emerging technique for static and time-resolved protein structure determination. Using specifically patterned silicon chips for sample delivery, the `hit-and-return' (HARE) protocol allows for efficient time-resolved data collection. The specific pattern of the crystal wells in the HARE chip provides direct access to many discrete time points. HARE chips allow for optical excitation as well as on-chip mixing for reaction initiation, making a large number of protein systems amenable to time-resolved studies. Loading of protein microcrystals onto the HARE chip is streamlined by a novel vacuum loading platform that allows fine-tuning of suction strength while maintaining a humid environment to prevent crystal dehydration. To enable the widespread use of time-resolved serial synchrotron crystallography (TR-SSX), detailed technical descriptions of a set of accessories that facilitate TR-SSX workflows are provided.




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The indexing ambiguity in serial femtosecond crystallography (SFX) resolved using an expectation maximization algorithm

An expectation maximization algorithm is implemented to resolve the indexing ambiguity which arises when merging data from many crystals in protein crystallography, especially in cases where partial reflections are recorded in serial femtosecond crystallography (SFX) at XFELs.




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Nanocrystalline materials: recent advances in crystallographic characterization techniques

This feature article reviews the control and understanding of nanoparticle shape from their crystallography and growth. Particular emphasis is placed on systems relevant for plasmonics and catalysis.




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Binding site asymmetry in human transthyretin: insights from a joint neutron and X-ray crystallographic analysis using perdeuterated protein

A neutron crystallographic study of perdeuterated transthyretin reveals important aspects of the structure relating to its stability and its propensity to form fibrils, as well as evidence of a single water molecule that affects the symmetry of the two binding pockets.




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Chemical crystallography and crystal engineering

Today, there is very little doubt that chemistry owes as much to crystallography as crystallography does to chemistry. This mutual synergy defines modern chemical crystallography.