326 research outputs found

    The Future of Journalism

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    The news industry faces monumental challenges: • More people are getting news and information on line •Advertising revenues are down • Major media companies are in or have gone through bankruptcy • Minute-by-minute reporting is changing the way newspapers, especially, report the news • Layoffs and consolidation stretches news staffs to cover stories in-depth What do these challenges mean for the future of news? What will be the impact of the changing media landscape on our democracy? How will these challenges influence the careers of future journalists? John Foreman, publisher, News-Gazette, Champaign-Urbana Will Sullivan, interactive director, St. Louis Post-Dispatch Nancy Foreman, executive producer, WCIA-TV 3, Champaign-Urbana Bryan Murley, assistant professor of journalism, Eastern Illinois University Moderator Jeff Lynch, interim dean, College of Arts & Humanitieshttps://thekeep.eiu.edu/humanitiescenter_meaningfulwork0910/1000/thumbnail.jp

    Junior Recital: Jeremy Perkins, trumpet

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    This recital is presented in partial fulfillment of requirements for the degree Bachelor of Music in Performance. Mr. Perkins studies trumpet with Douglas Lindsey.https://digitalcommons.kennesaw.edu/musicprograms/2088/thumbnail.jp

    Chen Shui-bian: on independence

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    Chen Shui-bian achieved an international reputation for his promotion of Taiwan independence. Whilst that reputation may have been well earned, the analyses on which this conclusion is based are frequently flawed in two ways. First, by using an undifferentiated notion of independence, they tend to conflate sovereignty with less threatening expressions of Taiwanese identity and pro-democracy discourse. Second, by failing to take into account the impact of immediate strategic context, analysts ignore a fundamental element of democratic political communication. In our empirical analysis of more than 2,000 of Chen’s speeches, we seek to avoid both flaws by unpacking the concept of independence and taking into account Chen’s strategic relationship with his primary audiences. Our findings challenge popular portrayals of Chen, but more importantly they have strong implications for policy makers and students of political rhetoric with regard to current and future ROC presidents

    A Further Look at Potential Impact of Satlets on Design, Production, and Cost of Satellite Systems

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    For the past 50 years, the morphology for satellites has remained fundamentally unchanged despite evolutions in manufacturing, communications, and software occurring in other industries. Primary spacecraft support systems—power, attitude control, and others—are designed in the same way, whether in space telescopes, large communications satellites, interplanetary spacecraft, or Cubesats. This paradigm has been the status quo in spacecraft design and construction and has precluded any industry-wide, large-scale cost savings while maintaining performance. To change this trend and ensure performance and utility at low cost, that can scale, DARPA postulated the concept of a cellularized satellite, or “satlet,” as a satellite architectural unit. In this new morphology, each satlet would provide some fraction of the overall functions that, when aggregated via hardware and software, provide spacecraft space system with its complete required capabilities. The DARPA Phoenix program has developed this satlet morphology in Phase I and plans to validate and demonstrate it in a series of steps that exercise various applications and levels of configuration flexibility enabled by a satlet architecture. The first system experiment is planned to be conducted on orbit in 2015. This paper aims to take a deeper look at the potential impact of space systems with cellular based designs, and using historical data showcases how design, production and ultimately cost can form the foundation for next generation spacecraft opportunities. A first order analysis conducted in a previous paper indicated that U.S.-launched satellites alone could create a market demand for 2,000-8,000 satlets flown per year, while the overall annual world satellite market could create demand for 10,000-40,000 satlets. This paper explores the instantiation of a cellular morphology to design, production and development to further quantify the impact of this revolutionary space system capability

    (Re)Claiming health : the human rights of young LGBTIQ+ Indigenous people in Australia

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    The human rights of both LGBTIQ+ and Indigenous peoples are far from realized. When conjoined, intersecting identities reveal how racism and queer phobia affect well-being, negating the right to health and resulting in devastating impacts on people’s social, cultural, and emotional well-being. This paper documents the lived experiences of a sample of young gender- and sexuality-diverse Aboriginal and Torres Strait Islander peoples from a research project conducted in New South Wales, Australia. Their perspectives reveal how, for this cohort, discrimination and privation is manifest at the family, community, and institutional levels. This paper informs an understanding of human rights as experienced by Aboriginal and Torres Strait Islander LGBTIQ+-identified peoples, where racism and queer phobia are evident in the spheres of education, employment, and service provision. Adopting a critical human rights stance, our analysis illustrates how settler colonialism manifests through the processes and outcomes of settler colonial institutions and structures

    SWI/SNF-like chromatin remodeling factor Fun30 supports point centromere function in S. cerevisiae

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    Budding yeast centromeres are sequence-defined point centromeres and are, unlike in many other organisms, not embedded in heterochromatin. Here we show that Fun30, a poorly understood SWI/SNF-like chromatin remodeling factor conserved in humans, promotes point centromere function through the formation of correct chromatin architecture at centromeres. Our determination of the genome-wide binding and nucleosome positioning properties of Fun30 shows that this enzyme is consistently enriched over centromeres and that a majority of CENs show Fun30-dependent changes in flanking nucleosome position and/or CEN core micrococcal nuclease accessibility. Fun30 deletion leads to defects in histone variant Htz1 occupancy genome-wide, including at and around most centromeres. FUN30 genetically interacts with CSE4, coding for the centromere-specific variant of histone H3, and counteracts the detrimental effect of transcription through centromeres on chromosome segregation and suppresses transcriptional noise over centromere CEN3. Previous work has shown a requirement for fission yeast and mammalian homologs of Fun30 in heterochromatin assembly. As centromeres in budding yeast are not embedded in heterochromatin, our findings indicate a direct role of Fun30 in centromere chromatin by promoting correct chromatin architecture

    Move of a large but delicate apparatus on a trailer with air-ride suspension

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    When valuable delicate goods are shipped by truck, attention must be paid to vibrations that may cause damage. We present a case study of moving an extremely delicate 6230-kg superconducting magnet, immersed in liquid nitrogen, from Livermore, CA to Seattle, WA showing the steps of fatigue analysis of the load, a test move, and acceleration monitoring of the final move to ensure a successful damage-free transport

    An emerging cyberinfrastructure for biodefense pathogen and pathogen–host data

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    The NIAID-funded Biodefense Proteomics Resource Center (RC) provides storage, dissemination, visualization and analysis capabilities for the experimental data deposited by seven Proteomics Research Centers (PRCs). The data and its publication is to support researchers working to discover candidates for the next generation of vaccines, therapeutics and diagnostics against NIAID's Category A, B and C priority pathogens. The data includes transcriptional profiles, protein profiles, protein structural data and host–pathogen protein interactions, in the context of the pathogen life cycle in vivo and in vitro. The database has stored and supported host or pathogen data derived from Bacillus, Brucella, Cryptosporidium, Salmonella, SARS, Toxoplasma, Vibrio and Yersinia, human tissue libraries, and mouse macrophages. These publicly available data cover diverse data types such as mass spectrometry, yeast two-hybrid (Y2H), gene expression profiles, X-ray and NMR determined protein structures and protein expression clones. The growing database covers over 23 000 unique genes/proteins from different experiments and organisms. All of the genes/proteins are annotated and integrated across experiments using UniProt Knowledgebase (UniProtKB) accession numbers. The web-interface for the database enables searching, querying and downloading at the level of experiment, group and individual gene(s)/protein(s) via UniProtKB accession numbers or protein function keywords. The system is accessible at http://www.proteomicsresource.org/
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