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Parallel pipeline
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(BQ) presents the following content: Chapter 5 series and parallel pipeline systems, chapter 6 pumps and turbines, appendix A properties of water, appendix B properties of common liquids, appendix C dimensions of steel pipe, appendix D dimensions of type k copper tubing, appendix E conversion factors.
76p
runordie6
10-08-2022
7
2
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Advanced Computer Architecture - Lecture 12: Instruction level parallelism. This lecture will cover the following: introduction to multi cycle pipelined datapath; longer pipelines – FP instructions; loop level parallelism; FP loop hazards; typical MIPS FP pipeline; hazards in longer latency pipeline;...
38p
haoasakura
30-05-2022
13
4
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Advanced Computer Architecture - Lecture 11: Computer hardware design. This lecture will cover the following: pipeline and instruction level parallelism; structural hazards; data hazards; control hazards; pipelining the R-type and load instruction; branch prediction; multiple streams;...
48p
haoasakura
30-05-2022
8
3
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Advanced Computer Architecture - Lecture 13: Instruction level parallelism. This lecture will cover the following: out-of-order execution; problems of out-of-order execution; dynamic scheduling; scoreboard technique; simple pipelined datapath facilitates; MIPS 5-stage pipeline;...
62p
haoasakura
30-05-2022
13
3
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Advanced Computer Architecture - Lecture 21: Instruction level parallelism. This lecture will cover the following: static multiple issue: VLIW approach; detecting and enhancing loop level parallelism; software pipelining; multiple-issue overheads; VLIW/EPIC processor;...
92p
haoasakura
30-05-2022
9
3
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Advanced Computer Architecture - Lecture 22: Instruction level parallelism. This lecture will cover the following: software pipelining and trace scheduling; eliminating dependent computations; superblocks; reducing dependent computations; uncovering instruction level parallelism;...
85p
haoasakura
30-05-2022
12
3
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Advanced Computer Architecture - Lecture 31: Memory hierarchy design. This lecture will cover the following: reducing miss penalty or miss rate using parallelism; reducing hit time; non-blocking caches; hardware prefetch; software (compiler controlled) prefetch; pipelined cache access; trace caches;...
50p
haoasakura
30-05-2022
13
3
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Lecture Advanced computer architecture: Lesson 21. The main topics covered in this chapter include: data dependence distances, SRC hazard correction data forwarding, RTL for data forwarding, data forwarding hardware, difference between pipelining and instruction-level parallelism;...
11p
wangziyi_1307
26-04-2022
14
3
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CRISPR/Cas9 pooled screening permits parallel evaluation of comprehensive guide RNA libraries to systematically perturb protein coding sequences in situ and correlate with functional readouts. For the analysis and visualization of the resulting datasets, we develop CRISPRO, a computational pipeline that maps functional scores associated with guide RNAs to genomes, transcripts, and protein coordinates and structures.
19p
vigalileogalilei
27-02-2022
16
1
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In this paper, we propose a multi-core AES encryption hardware architecture to achieve ultra-highthroughput encryption. To reduce area cost and power consumption, these AES cores share the same KeyExpansion blocks. Fully parallel, outer round pipeline technique is also applied to the proposed architecture to achieve low latency encryption.
15p
guitaracoustic02
08-12-2021
16
1
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Massively parallel DNA sequencing generates staggering amounts of data. Decreasing cost, increasing throughput, and improved annotation have expanded the diversity of genomics applications in research and clinical practice.
11p
vikentucky2711
26-11-2020
11
1
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High-throughput Next-Generation Sequencing (NGS) techniques are advancing genomics and molecular biology research. This technology generates substantially large data which puts up a major challenge to the scientists for an efficient, cost and time effective solution to analyse such data. Further, for the different types of NGS data, there are certain common challenging steps involved in analysing those data.
13p
vikentucky2711
26-11-2020
21
0
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Metagenomics is a genomics research discipline devoted to the study of microbial communities in environmental samples and human and animal organs and tissues. Sequenced metagenomic samples usually comprise reads from a large number of different bacterial communities and hence tend to result in large file sizes, typically ranging between 1–10 GB.
13p
vioklahoma2711
19-11-2020
13
2
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Today, sequencing is frequently carried out by Massive Parallel Sequencing (MPS) that cuts drastically sequencing time and expenses. Nevertheless, Sanger sequencing remains the main validation method to confirm the presence of variants. The analysis of MPS data involves the development of several bioinformatic tools, academic or commercial.
11p
vioklahoma2711
19-11-2020
10
2
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DNA methylation is an important mechanism of epigenetic regulation in development and disease. New generation sequencers allow genome-wide measurements of the methylation status by reading short stretches of the DNA sequence (Methyl-seq). Several software tools for methylation analysis have been proposed over recent years.
6p
vioklahoma2711
19-11-2020
11
1
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In this chapter discuss the pipelining and parallel processing. The main contents of this chapter include all of the following: Pipelining of FIR digital filters, parallel processing, pipelining and parallel processing for low power.
32p
shiwo_ding6
31-05-2019
24
2
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Chapter 10 introduce the pipelined and parallel pecursive and adaptive filters. This chapter includes content: Pipelining in 1st-Order IIR Digital Filters, Pipelining in Higher-Order IIR Digital Filters, Parallel Processing for IIR Filters, Combined Pipelining and Parallel Processing for IIR Filters.
47p
shiwo_ding6
31-05-2019
40
2
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This paper presents a flexible, highperformance implementation of the AES algorithm on a coarse-grained reconfigurable architecture, called MUSRA (Multimedia Specific Reconfigurable Architecture). First, we propose a hardware-software partitioning method for mapping the AES algorithm onto the MUSRA. Second, the parallel and pipelining techniques are considered thoughtfully to increase total computing throughput by efficiently utilizing the computing resources of the MUSRA.
13p
truongtien_09
10-04-2018
39
3
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(bq) this new emphasis on parallelism is supported by updates reflecting the newest technologies, with examples highlighting the latest processor designs and benchmarking standards. as with previous editions, a mips processor is the core used to present the fundamentals of hardware technologies, assembly language, computer arithmetic, pipelining, memory hierarchies and i/o.
443p
bautroibinhyen20
06-03-2017
84
8
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Parallel Processing & Distributed Systems: Lecture 4 - Parallel Computer Architectures provides about Flynn’s Taxonomy, Classification of Parallel Computers Based on Architectures, Classification based on Architecture.
37p
cocacola_17
10-12-2015
49
2
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