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排序方式: 共有549条查询结果,搜索用时 15 毫秒
61.
Murali K. Akkapeddi 《Polymer》1979,20(10):1215-1216
The free radical copolymerization of α-methylene γ-butyrolactone (α-MBL, I) has been studied at 60°C, with methyl methacrylate, styrene, acrylamide, acrylonitrile and vinylene carbonate, respectively. The reactivity ratios thus determined generally establish the high reactivity of α-MBL as a comonomer. 相似文献
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Gold nanoparticles of triangular morphology possess interesting optical properties with potential application in medicine and infrared absorbing coatings, however, little is known about conditions that favor their growth. In this paper, we have reinvestigated a time-tested recipe for the formation of gold nanospheres by citrate reduction of aqueous gold ions under boiling conditions (Turkevich recipe). Our principle findings are that gold nanotriangle formation is kinetically controlled and is highly favored at low temperatures. Furthermore, the presence of chloride ions from the precursor chloroaurate ions plays a major role in promoting the growth of <111> oriented triangular/truncated triangular particles. The presence of bromide and iodide ions that possess the ability to replace surface-bound chloride ions inhibits triangle formation to varying degrees. 相似文献
64.
Senapati S Ahmad A Khan MI Sastry M Kumar R 《Small (Weinheim an der Bergstrasse, Germany)》2005,1(5):517-520
65.
An enhanced hybrid scheme of wavelength reservation for dynamic wavelength routed optical networks is proposed. The performance of a newly introduced composite-two-phase reservation protocol (C2P-RP) is evaluated and compared with the existing hybrid reservation protocol. By offering connection requests an enhanced scope of finding an end-to-end available wavelength, the C2P-RP scheme shows improved connection-request blocking performance. 相似文献
66.
Guillermo Talavera Murali Jayapala Jordi Carrabina Francky Catthoor 《Journal of Signal Processing Systems》2008,53(3):271-284
Nowadays embedded systems are growing at an impressive rate and provide more and more sophisticated applications characterized
by having a complex array index manipulation and a large number of data accesses. Those applications require high performance
specific computation that general purpose processors can not deliver at a reasonable energy consumption. Very long instruction
word architectures seem a good solution providing enough computational performance at low power with the required programmability
to speed up the time to market. Those architectures rely on compiler effort to exploit the available instruction and data
parallelism to keep the data path busy all the time. With the density of transistors doubling each 18 months, more and more
sophisticated architectures with a high number of computational resources running in parallel are emerging. With this increasing
parallel computation, the access to data is becoming the main bottleneck that limits the available parallelism. To alleviate
this problem, in current embedded architectures, a special unit works in parallel with the main computing elements to ensure
efficient feed and storage of the data: the address generator unit, which comes in many flavors. Future architectures will
have to deal with enormous memory bandwidth in distributed memories and the development of address generators units will be
crucial for effective next generation of embedded processors where global trade-offs between reaction-time, bandwidth, energy
and area must be achieved. This paper provides a survey of methods and techniques that optimize the address generation process
for embedded systems, explaining current research trends and needs for future.
相似文献
Francky CatthoorEmail: |
67.
Freddy DeAngelis Murali Gopal Muraleedharan Jaeyun Moon Hamid Reza Seyf Austin J. Minnich Alan J. H. McGaughey 《Nanoscale and Microscale Thermophysical Engineering》2019,23(2):81-116
ABSTRACTWe review the status of research on thermal/phonon transport in disordered materials. The term disordered materials is used here to encompass both structural and compositional disorder. It includes structural deviations ranging from an ideal crystal with disordered arrangements of defects all the way to fully amorphous materials, as well as crystals with impurities up through multi-component random alloys. Both types of disorder affect phonons by breaking the symmetry of an idealized crystal and changing their character/mode shapes. These effects have important implications with regard to phonon–phonon interactions, phonon transport and phonon interactions with other quantum particles, which are being actively investigated. Herein, we synthesize the current theoretical understanding, identify the aspects of the problem that require more work, and pose open questions. Abbreviations: BTE: Boltzmann transport equation; DFT: Density functional theory; EPP: Eigenvector periodicity parameter; FAFDTR: Fiber-aligned frequency domain thermoreflectance; GK: Green–Kubo; GKMA: Green–Kubo modal analysis; HCACF: Heat current autocorrelation function; IXS: Inelastic X-ray scattering; LD: Lattice dynamics; LJ: Lennard–Jones; MD: Molecular dynamics; MFP: Mean free path; NEMD: Non-equilibrium molecular dynamics; NMD: Normal-mode dynamics; PDL: Propagon, diffuson, locon; PGM: Phonon gas model; PR: Participation ratio; SCLD: Supercell lattice dynamics; SED: Spectral energy density; TDTR: Time-domain thermoreflectance; VCA: Virtual crystal approximation; 相似文献
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70.
Krishna Ch. Murali ViswanathaReddy G. Souayeh Basma Raju C. S. K. Rahimi-Gorji Mohammad Raju S. Suresh Kumar 《Microsystem Technologies》2019,25(10):3735-3746
Microsystem Technologies - A theoretical study on the effect of magnetohydrodynamic field on the classical Blasius and Sakiadis flows of heat transfer characteristics with variable conditions and... 相似文献