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Ledge with argumentation: a case study in bioinformatics Benjamin R. Jefferys1, Lawrence A. Kelley1, Marek J. Sergot2, John Fox3 and Michael J. E. Sternberg1, 1 Biochemistry Building, Division of Molecular Biosciences, Imperial College, London SW7 2AZ, UK, 2Department of Computing, Imperial College London, 180 Queen s Gate, London SW7 2BZ, UK and 3Cancer Research UK, Advanced Computation Laboratory, London Research Institute, Lincoln s Inn Fields Laboratories, 44 Lincoln s Inn Fields, Lo.
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Bioinformatic FAQ
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The ultimate goal of the field is to enable the discovery of new biological insights as well as to create a global perspective from which unifying principles in biology can be discerned.
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Bioinformatics is a fascinating field at the forefront of medical and pharmaceutical innovation. Using computer technology and other analytical tools, bioinformaticians are able to extract insights from huge amounts of biological data.
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With bioinformatics, medical professionals can create far more customized medical treatments for patients by using their DNA data. Bioinformatics is helping scientists identify connections between a disease and the genetic sequences that cause them.
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Original articles—optional Oxford Open charges. For a corresponding author based at an institution with an online subscription to Bioinformatics: Regular charge per paper—£800 / $1500. List B developing country charge (visit Author Webpage for a list of qualifying countries)—£400 / $750.
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Bioinformatics combines computer programming, big data, and biology to help scientists understand and identify patterns in biological data. It is particularly useful in studying genomes and DNA sequencing, as it allows scientists to organize large amounts of data.
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OBJECTIVES OF BIOINFORMATICS The fundamental objectives are to identify genes and proteins, determine their functions, establish evolutionary relationships and predict their conformation.
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Bioinformatics is a rapidly growing scientific field with promising career opportunities. Bioinformatics degree holders can work in the pharmaceutical, biotechnology, biomedical, research, and hospital sectors. Candidates can work in any industry that employs molecular biology and information technology.
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Why is bioinformatics so important? The goal of bioinformatics is to characterize humans at the molecular level, and to use this information to prevent and treat disease, and improve health and longevity. From genomics to proteomics, metabolomics to metagenomics, 'omics research is generating a flood of data.
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