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  2. Read (biology) - Wikipedia

    en.wikipedia.org/wiki/Read_(biology)

    Sequencing technologies vary in the length of reads produced. Reads of length 20-40 base pairs (bp) are referred to as ultra-short. [2] Typical sequencers produce read lengths in the range of 100-500 bp. [3] However, Pacific Biosciences platforms produce read lengths of approximately 1500 bp. [4] Read length is a factor which can affect the results of biological studies. [5]

  3. RNA-Seq - Wikipedia

    en.wikipedia.org/wiki/RNA-Seq

    Gene length: Longer genes will have more fragments/reads/counts than shorter genes if transcript expression is the same. This is adjusted by dividing the FPM by the length of a feature (which can be a gene, transcript, or exon), resulting in the metric fragments per kilobase of feature per million mapped reads (FPKM). [90]

  4. DNA sequencing - Wikipedia

    en.wikipedia.org/wiki/DNA_sequencing

    In 2012, with cameras operating at more than 10 MHz A/D conversion rates and available optics, fluidics and enzymatics, throughput can be multiples of 1 million nucleotides/second, corresponding roughly to 1 human genome equivalent at 1x coverage per hour per instrument, and 1 human genome re-sequenced (at approx. 30x) per day per instrument ...

  5. High-level radioactive waste management - Wikipedia

    en.wikipedia.org/wiki/High-level_radioactive...

    [90] [91] [92] For instance, over a timeframe of thousands of years, after the most active short half-life radioisotopes decayed, burying U.S. nuclear waste would increase the radioactivity in the top 610 metres (2,000 ft) of rock and soil in the United States (10 million square kilometres, 3.9 million square miles) by ≈ 1 part in 10 million ...

  6. Radioactive waste - Wikipedia

    en.wikipedia.org/wiki/Radioactive_waste

    Over a timeframe of thousands of years, after the most active short half-life radioisotopes decayed, burying U.S. nuclear waste would increase the radioactivity in the top 2000 feet of rock and soil in the United States (10 million km 2) by approximately 1 part in 10 million over the cumulative amount of natural radioisotopes in such a volume ...

  7. Bitcoin just hit $100,000: What if you’d invested $1,000 in ...

    www.aol.com/finance/d-invested-1-000-bitcoin...

    10 years ago: A $1 investment would be worth $277.66 since Bitcoin is up 26,967 percent from December 2014. 15 years ago: A $1 investment would be worth $103 million since Bitcoin is up 10.3 ...

  8. Gel electrophoresis - Wikipedia

    en.wikipedia.org/wiki/Gel_electrophoresis

    "Most agarose gels are made with between 0.7% (good separation or resolution of large 5–10kb DNA fragments) and 2% (good resolution for small 0.2–1kb fragments) agarose dissolved in electrophoresis buffer. Up to 3% can be used for separating very tiny fragments but a vertical polyacrylamide gel is more appropriate in this case.

  9. Nvidia stock surge: How much a $1,000 investment 10 years ago ...

    www.aol.com/finance/nvidia-stock-surge-much-1...

    An investment of $1,000 in Nvidia in June 2014 would be worth over $297,600 at Wednesday's close, according to calculations from Morningstar Direct. That's cumulative growth of 29,660%.