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Used together with:
intellig (10)
system (9)
base (7)
design (6)
analysi (4)

Stem slow$ (all stems)

30 papers:

CASECASE-2015-SustoM #approach #machine learning #multi #predict
Slow release drug dissolution profile prediction in pharmaceutical manufacturing: A multivariate and machine learning approach (GAS, SFM), pp. 1218–1223.
CHICHI-2015-Odom #case study #comprehension #experience #interactive
Understanding Long-Term Interactions with a Slow Technology: an Investigation of Experiences with FutureMe (WO), pp. 575–584.
SEKESEKE-2015-Chang #component
A Slow Intelligence System Test Bed Enhanced with Super-Components (SKC), pp. 57–63.
SEKESEKE-2015-ChangCLT #design #framework
Application of Slow Intelligence Framework for Smart Pet Care System Design (SKC, WHC, WCL, CLT), pp. 51–56.
SEKESEKE-2015-Colace0LLYC #adaptation #perspective #recommendation
An Adaptive Contextual Recommender System: a Slow Intelligence Perspective (FC, LG, SL, ML, DY, SKC), pp. 64–71.
ICSEICSE-v2-2015-CzerwonkaGT #bibliography #code review #debugging #how
Code Reviews Do Not Find Bugs. How the Current Code Review Best Practice Slows Us Down (JC, MG, JT), pp. 27–28.
CHICHI-2014-OdomSBKRSFZ #case study #design
Designing for slowness, anticipation and re-visitation: a long term field study of the photobox (WO, AS, RB, DSK, TR, MS, JF, JZ), pp. 1961–1970.
HCILCT-NLE-2014-MansorAA #design #personalisation #profiling
Slow Learner Children Profiling for Designing Personalized eBook (MM, WAWA, NA), pp. 302–311.
SEKESEKE-2014-ChenCH #energy #framework
Applications of Slow Intelligence Frameworks for Energy-Saving Control (WHC, SKC, WPH), pp. 511–515.
SEKESEKE-2014-WangC #analysis #approach #social #visualisation
User Profile Visualization to facilitate MSLIM-model-based Social Influence Analysis based on Slow Intelligence Approach (YW, SKC), pp. 653–658.
CHICHI-2013-Grosse-HeringMABD #design #interactive
Slow design for meaningful interactions (BGH, JM, DA, CB, PD), pp. 3431–3440.
SEKESEKE-2013-ChenC #process #recognition
Swimming Activity Recognition Based on Slow Intelligence Systems (WHC, SKC), pp. 273–276.
CADECADE-2013-Shankar #automation #performance #reasoning
Automated Reasoning, Fast and Slow (NS), pp. 145–161.
CHICHI-2011-ChettyHBOSG #internet #network #why
Why is my internet slow?: making network speeds visible (MC, DH, AB, UO, BS, REG), pp. 1889–1898.
HCIHCI-UA-2011-LinHLYH #mining #using
Using Grounded Theory and Text Mining to Find Interesting Reading Materials for Slow EFL Learners (YCL, ClH, MHL, HFY, CFH), pp. 77–85.
SEKESEKE-2011-ChangSWSP #analysis #component #design #social
Design of Component-based Slow Intelligence Systems and Application to Social Influence Analysis (SKC, YS, YW, CCS, TCP), pp. 9–16.
SEKESEKE-2011-ChangWS #component #specification #visual notation
Visual Specification of Component-based Slow Intelligence Systems (SKC, YW, YS), pp. 1–8.
SEKESEKE-2011-ColaceS #case study #network
Slow Intelligence System and Network Management: a case study (FC, MDS), pp. 17–24.
ICPRICPR-2010-MaTW #analysis #random #using
Nonlinear Blind Source Separation Using Slow Feature Analysis with Random Features (KM, QT, JW), pp. 830–833.
SEKESEKE-2010-ZegarraCSC #approach #ontology
An Ontology-based Configurator for Customized Product Information based upon the Slow Intelligence Systems Approach (EZ, FC, MDS, SKC), pp. 521–528.
CIAACIAA-2009-ClarridgeS #automaton
A Cellular Automaton Model for Car Traffic with a Slow-to-Stop Rule (AC, KS), pp. 44–53.
DATEDATE-2007-NeyGLPVB #analysis #fault
Slow write driver faults in 65nm SRAM technology: analysis and March test solution (AN, PG, CL, SP, AV, MB), pp. 528–533.
DACDAC-2004-MeiRCHD #performance #robust
Robust, stable time-domain methods for solving MPDEs of fast/slow systems (TM, JSR, TSC, SAH, DMD), pp. 848–853.
DATEDATE-2003-NummerS #pipes and filters #testing
DFT for Testing igh-Performance Pipelined Circuits with Slow-Speed Testers (MN, MS), pp. 10212–10217.
RTARTA-2003-MoserW
Relating Derivation Lengths with the Slow-Growing Hierarchy Directly (GM, AW), pp. 296–310.
STOCSTOC-2001-Gacs #sequence
Compatible sequences and a slow Winkler percolation (PG), pp. 694–703.
CAVCAV-2000-BaumgartnerTASA #abstraction #algorithm #design #verification
An Abstraction Algorithm for the Verification of Generalized C-Slow Designs (JB, AT, AA, VS, FA), pp. 5–19.
STOCSTOC-1995-KaplanT #persistent #recursion
Persistent lists with catenation via recursive slow-down (HK, RET), pp. 93–102.
REICRE-1993-GornyVQD #prototype #user interface
Slow and Principled Prototyping of Usage Surfaces: A Mehtd For User Interface Engineering (PG, AV, LQ, UD), pp. 125–133.
DACDAC-1988-Diss #compilation
Circuit Compilers don’t have to be Slow (WCD), pp. 622–627.

Bibliography of Software Language Engineering in Generated Hypertext (BibSLEIGH) is created and maintained by Dr. Vadim Zaytsev.
Hosted as a part of SLEBOK on GitHub.