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Current Trends in Web Engineering

ICWE 2012 International Workshops MDWE, ComposableWeb, WeRE, QWE, and Doctoral Consortium, Berlin, Germany, July 23-27, 2012, Revised Selected Papers

This book constitutes the thoroughly refereed post-workshop proceedings and the doctoral symposium of the 12th International Conference on Web Engineering, ICWE 2012, held in Berlin, Germany, in July 2012. The volume contains four workshops and a doctoral consortium, each focusing on specific research issues that contribute to the main themes of the ICWE conference: MDWE 2012: Eighth International Workshop on Model-Driven and Agile Engineering for the Web, ComposableWeb 2012: Fourth International Workshop on Lightweight Integration on the Web, WeRE 2012: Third Workshop on the Web and Requirements Engineering, QWE 2012: Third International Workshop on Quality in Web Engineering.

We evaluate proposed maintenance approach in two domains – programing
repositories and digital libraries, which use shared information tags repository.
Keywords: metadata, information tag, maintenance, lightweight semantics.

Current Trends in Web Engineering

ICWE 2013 International Workshops ComposableWeb, QWE, MDWE, DMSSW, EMotions, CSE, SSN, and PhD Symposium, Aalborg, Denmark, July 8-12, 2013. Revised Selected Papers

This book constitutes the thoroughly refereed post-proceedings of the seven workshops and the PhD Symposium that were co-located with the 13th International Conference on Web Engineering, ICWE 2013, held in Aalborg, Denmark, in July 2013. The papers cover research in topics such as social data management; cloud service engineering; agile web development and quality management in web engineering.

It also identifies and addresses current issues in end-user programming and
mobile cross-platform development. Keywords: Web-based framework, Cross-
platform development, Enduser programming, Authoring Tool. 1 Introduction The
rapid ...

High Throughput Particle Separation Using Differential Fermat Spiral Microchannel with Variable Channel Width

Cell separation is one of the most required processes in the areas of clinical diagnostics, cellular analysis, biological and environmental microbiological processes. Continuous efficient separation of microparticles at relatively high throughput has been a challenge for Lab on Chip (LOC) devices used in biological and environmental applications. In this thesis, a differential area Fermat spiral microfluidic device that is capable of high throughout particle separation is investigated. The device employs a differential area by varying width along with a Fermat spiral microchannel to maintain force ratio close to unity at relatively higher flow rate that facilitates focusing and separation of microparticles at higher throughput. Numerical investigations were performed to validate the performance of the proposed device. Consequently, experiments are performed and it is shown that using the differential Fermat design with particle diameter to channel height ratio of 0.08~0.16; the device can continuously sort 4.6[micrometer] and 9.94[micrometer] spherical particle at a flow rate of 700[microliter]. To demonstrate the capability of high throughput separation of differently sized microparticles, numerical simulation of particle trajectories was performed at a flow rate of ~1700[microliter]/min.

Cell separation is one of the most required processes in the areas of clinical diagnostics, cellular analysis, biological and environmental microbiological processes.

Pedagogi Merentas Kurikulum

16 Mengadaptasikan Gaya Pembelajaran Pelajar BA ELS: Satu Kajian Kes
Pelajar Tahun Satu di UKM Rosniah Mustaffa Pusat Pengajian Bahasa dan
Linguistik Fakulti Sains Sosial dan Kemanusiaan Universiti Kebangsaan
Malaysia ...