第八届高分子材料国际研讨会(PMS_D 2021)

第八届高分子材料国际研讨会(PMS_D 2021)

The 8th Int’l Conference on Polymer Materials Science (PMS_D 2021)

大会官网:https://www.janconf.org/conference/PMS_D2021/

大会时间:2021年12月24-26日

大会地点:中国三亚

在线投稿:https://www.janconf.org/RegistrationSubmission/default.aspx?ConferenceID=1426

邮箱投稿:workshop1@126.com

录用通知:论文投稿后1周左右

△.会议简介

第八届高分子材料国际研讨会(PMS_D 2021)将于2021年12月24-26日在三亚举行。本届大会将继续遵循学术性、国际性的原则,特邀国内外高分子材料领域内的学者专家前来参会,并做出精彩的报告。PMS_D 2021旨在打造一场交流分享最新科研成果和研究方法的学术盛宴!诚邀各位专家和代表的参加。

△.文章出版

所有被会议录用的稿件将会发表在开源期刊,被知网学术、谷歌学术等收录。

△.投稿须知:

论文应具有学术或实用价值,未在国内外学术期刊或会议发表过。

论文排版格式以及投稿方式详见网站说明。

审稿流程:本次会议采用先投稿,先送专家评审的方式进行,审稿周期约1周。

△.参会方式(注:会议有Oral Presentation以及Poster环节)

1.全文参会:提交全文,申请参与10-15分钟的口头报告,3600元

2.摘要参会:提交摘要,申请参与10-15分钟的口头报告,2700元

3.听众参会:只参会听讲,不参与演讲及展示,2400元

△.大会咨询

电子邮箱: workshop1@126.com (Workshop_editorL@outlook.com)
联系电话: +86 132 6470 2250
QQ: 1349406763 
微信: 3025797047
Twitter: conf_Committee

△. 大会议题

Polymer Materials Science and Engineering
Functional polymeric materials
Electrochemistry and electrochemical technology
Transport in materials
Vibrational spectroscopy
Micro- and nano-phase separation
Membrane separations
Materials chemistry
Fuel cells
Water treatment membranes
Surface properties of polymers
Electrochemical reactors
Membrane processes
Polymer/Inorganic nanocomposite materials
Polymers at surfaces, interfaces, and confinements; structure and dynamics of nano-confined polymers
Atomic Force Microscopy (AFM) studies of polymer surfaces
Smart/Responsive polymers and soft-condensed matter systems
Polymer nanocomposites for structural, barrier, packaging, fire resistance, and biomedical applications
Smart polymers for microfluidics, smart-surfaces, biomedical, biological, and for biodetection and toxic removal
Molecular modeling for technologies related to lubrication, advanced polymer electrolytes, and fuel cells
Advanced packaging, defense-related composites, fuel cell membranes
Vibrational spectroscopy – mainly FTIR
Hydrogen bonding and the phase behavior of polymer blends and solutions.
Coal structure, solubility and swelling.
The application of ionic liquids to the processing of fossil fuels
Vibrational Spectroscopy of Polymers
Phase Behavior of Polymer Blends
Coal Structure
Processing Fossil Fuels using Ionic Liquids
Broadband dielectric spectroscopy; polymer dynamics
Ion-containing polymers: electrolytes, ionomers
Segmented polyurethane and polyurea block copolymers
Hydrogen bonded polymer blends and solutions
Polymers with intrinsic microporosity
Crystalline polymers, from renewable resources
Nanoscale structure and morphology
Polymers in energy applications
Polyurethanes and polyureas
Li ion battery electrolytes
Ionomers
Polymers of intrinsic microporosity
Blood-contacting polymers in biomedical devices
Polymer blends/alloys
High performance polymers
Functional polymers
Semiconducting polymers
Metal-containing polymers
Nanocomposites
Dielectric polymers
Organic thin films
Self-assembly
Molecular recognition
Supramolecular chemistry
Micro/nano-patterning
Optoelectronics
Molecular electronics
Sensors
Improvement of polymer-based processes
Human pathology associated with a number of diseases
Behavior of materials under conditions of extreme temperature and pressure
Fusion of materials and computational sciences
Materials theory, modeling and computer simulation
Emulsions
Latexes and suspensions
Environmentally-friendly polymeric surfactants
Targeting and releasing drugs

内容概要:本文系统探讨了CUDA并行计算优化技巧在计算机竞赛中的实战应用,重点解决暴力枚举在大规模数据下超时的问题。通过将独立的解空间验证任务分配给GPU海量线程并发执行,显著提升计算效率。文章围绕图论(全源最短路径Floyd-Warshall算法)和数值计算(多初始值牛顿迭代求解非线性方程)两大高频竞赛场景,详细剖析了线程索引映射、原子操作、常量内存、流并发等核心优化技术,并提供了串行与并行代码对比及性能分析。结果显示,在A100和RTX 3090等GPU上,加速比可达72至150倍,实现从分钟级到秒级甚至毫秒级的性能突破。此外,文章展望了动态并行、多GPU协同、AI辅助调优等未来趋势,强调CUDA优化对培养软硬件协同思维的重要意义。; 适合人群:具备一定C/C++编程基础和算法竞赛经验,熟悉基本图论与数值计算问题,希望提升高性能计算能力的高校学生或竞赛选手(尤其是参与ACM、ICPC、NOI等赛事的1-3年备赛者); 使用场景及目标:①掌握如何将传统暴力枚举算法转化为GPU并行版本;②深入理解Floyd-Warshall和牛顿迭代等经典算法的并行化限制与优化策略;③学习CUDA内存模型、线程组织与同步机制在实际问题中的应用; 阅读建议:建议结合文中代码案例在支持CUDA的环境上动手实现并调试,重点关注线程映射、内存访问模式与数据依赖处理,同时对比串行与并行版本的运行效率,深化对并行计算本质的理解。
评论
成就一亿技术人!
拼手气红包6.0元
还能输入1000个字符
 
红包 添加红包
表情包 插入表情
 条评论被折叠 查看
添加红包

请填写红包祝福语或标题

红包个数最小为10个

红包金额最低5元

当前余额3.43前往充值 >
需支付:10.00
成就一亿技术人!
领取后你会自动成为博主和红包主的粉丝 规则
hope_wisdom
发出的红包
实付
使用余额支付
点击重新获取
扫码支付
钱包余额 0

抵扣说明:

1.余额是钱包充值的虚拟货币,按照1:1的比例进行支付金额的抵扣。
2.余额无法直接购买下载,可以购买VIP、付费专栏及课程。

余额充值