We present an identity management scheme built into the Bitcoin blockchain, allowing for identities that are as indelible as the blockchain itself. Moreover, we take advantage of Bitcoin's decentralized nature to facilitate a shared control between users and identity providers, allowing users to directly manage their own identities, fluidly coordinating identities from different providers, even as identity providers can revoke identities and impose controls.
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Blockchain Technology Applications and Security
Advanced Steganography and Watermarking Techniques
We show that the behaviour of Bitcoin has interesting similarities to stock\nand precious metal markets, such as gold and silver. We report that whilst\nLitecoin, the second largest cryptocurrency, closely follows Bitcoin's\nbehaviour, it does not show all the reported properties of Bitcoin. Agreements\nbetween apparently disparate complexity measures have been found, and it is\nshown that statistical, information-theoretic, algorithmic and fractal measures\nhave different but interesting capabilities of clustering families of markets\nby type. The report is particularly interesting because of the range and novel\nuse of some measures of complexity to characterize price behaviour, because of\nthe IRS designation of Bitcoin as an investment property and not a currency,\nand the announcement of the Canadian government's own electronic currency\nMintChip.\n
High throughput DNA sequencing technologies have revolutionized the field of genomics.It is now possible to generate huge amounts of sequencing data at significantly lower costs and greater speed.In this study, we have utilized Illumina deep sequencing to analyze the fitness landscape of the four-helix bundle protein ROP.All possible single point mutants of the 63 amino acid protein ROP were constructed.From the library of single point mutants of ROP, variants were enriched 1,000 fold for activity by a growth selection for six rounds, which works based on ROP's role in plasmid copy number regulation.The enrichment was monitored by a cell-based screen using a GFP reporter.As a proof of principle experiment, point mutant libraries at positions 14, 30 and 43 were individually subjected to growth selection, and colony sequencing of random variants from sixth round were mostly actives as expected based on prior knowledge of these positions.Colony sequencing of rounds zero (naives) and six from the actual library enrichment yielded promising results.Illumina deep sequencing was performed on rounds zero, three, six and eight.Paired-end reads were generated with each sequence containing short barcodes at each end to reveal the round and orientation.From the data analysis, relative enrichment for variants from different rounds lets us delve into the fitness landscape of ROP.iii Dedication To my mom, dad and family