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  2. The Case for Information Technology Dividend Growers

    www.aol.com/news/case-information-technology...

    One of the common misconceptions in finance is that companies from the Information Technology (Tech) sector do not pay dividends. Over the past 10 years, within the Tech sector of the S&P 500 ...

  3. DNA Data Bank of Japan - Wikipedia

    en.wikipedia.org/wiki/DNA_Data_Bank_of_Japan

    Although DDBJ mainly receives its data from Japanese researchers, it can accept data from contributors from any other country. DDBJ is primarily funded by the Japanese Ministry of Education, Culture, Sports, Science and Technology (MEXT). DDBJ has an international advisory committee which consists of nine members, 3 members each from Europe, US ...

  4. List of biological databases - Wikipedia

    en.wikipedia.org/wiki/List_of_biological_databases

    Personal Genome Project: human genomes of 100,000 volunteers from around the world; RGD (Rat Genome Database): genomic and phenotype data for Rattus norvegicus; Saccharomyces Genome Database: [12] genome of the yeast model organism; SNPedia; SoyBase Database [13] (SoyBase): USDA soybean genetics and genomic database

  5. The Smartest Dividend Growth ETF to Buy With $1,000 ... - AOL

    www.aol.com/finance/smartest-dividend-growth-etf...

    There's more to the matter than a familiar name and a higher yield.

  6. 1 Dividend Growth ETF That Can Turbocharge Your Portfolio

    www.aol.com/1-dividend-growth-etf-turbocharge...

    The iShares Core Dividend Growth ETF offers investors exposure to high-quality companies with a history of consistent dividend growth.

  7. BGI Group - Wikipedia

    en.wikipedia.org/wiki/BGI_Group

    In 2002, BGI sequenced the rice genome, which was a cover story in the journal Science. In 2003, BGI decoded the SARS virus genome and created a kit for detection of the virus. [ 19 ] In 2003, the Chinese Academy of Sciences founded the Beijing Institute of Genomics in cooperation with BGI, with Yang Huanming as its first director.

  8. Massive parallel sequencing - Wikipedia

    en.wikipedia.org/wiki/Massive_parallel_sequencing

    This has enabled a drastic increase in available sequence data and fundamentally changed genome sequencing approaches in the biomedical sciences. [9] Newly emerging NGS technologies and instruments have further contributed to a significant decrease in the cost of sequencing nearing the mark of $1000 per genome sequencing. [10] [11]

  9. Diversity arrays technology - Wikipedia

    en.wikipedia.org/wiki/Diversity_arrays_technology

    Diversity Arrays Technology (DArT) is a high-throughput genetic marker technique that can detect allelic variations to provide comprehensive genome coverage without any DNA sequence information for genotyping and other genetic analysis.