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Predecessors and Gardens of Eden in sequential dynamical systems over directed graphs

, LNCS 10388 1 13 2017 [2] J.A. Aledo, L.G. Diaz, S. Martinez, J.C. Valverde, On the periods of parallel dynamical systems, Complexity 2017 (2017), Article ID 7209762, 6 pages. 10.1155/2017/7209762 . Aledo J.A. Diaz L.G. Martinez S. Valverde J.C. On the periods of parallel dynamical systems Complexity 2017 2017 Article ID 7209762 6 10.1155/2017/7209762 [3] J.A. Aledo, L.G. Diaz, S. Martinez, J.C. Valverde, On periods and equilibria of sequential dynamical systems, Inf. Sci. 409–410 (2017) 27–34. 10.1016/j.ins.2017.05.002 . Aledo J.A. Diaz L.G. Martinez S

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Finite Element Analysis of Influence of Non-homogenous Temperature Field on Designed Lifetime of Spatial Structural Elements under Creep Conditions

strains: ( Δ σ i j ) m = C i j k l ( { Δ ε k l } m − { ( Δ ε k l ) T } m ) . $$\begin{array}{} \displaystyle [{\left( {\Delta {\sigma _{ij}}} \right)_m} = {C_{ijkl}}\left( {{{\left\{ {\Delta {\mkern 1mu} {\varepsilon _{kl}}} \right\}}_m} - {{\left\{ {{{\left( {\Delta {\mkern 1mu} {\varepsilon _{kl}}} \right)}^T}} \right\}}_m}} \right). \end{array}$$ (10) Creep problem solution considering damage accumulation is being executed by means of step-by-step algorithm on the parameter of time. When starting each iteration n of a step m , stress values σ ij are

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Nonlinear waves in a simple model of high-grade glioma

biological literature, there is a vast range of values for the diffusion and proliferation coefficients. To carry out the estimations, we resort to the following value for the proliferation ρ = 0.2 day −1 , which is in the range [0.01–0.5] day −1 , taken from [ 28 , 54 ] and D = 0.05 mm 2 /day (which is in the range [0.0004–0.1] mm 2 /day) [ 39 ]. Finally, we take α = 1/10 day −1 , L = 85 mm, x 0 = 10 mm, c = c min = 2 ( 1 − β ) , $\begin{array}{} c=c_{\text{min}}=2\sqrt{(1-\beta)}, \end{array} $ M = 0.3, b = 0.005, a = ( cc 2 − 4 ( 1 − β − V

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Challenges and Barriers by Transition Towards 4th Generation District Heating System: A Strategy to Establish a Pricing Mechanism

REFERENCES 1. Lund, H., Werner, S., Wiltshire, R., Svendsen, S., Thorsen, J., Hvelplund, F., & Mathiesen, B.V. (2014). 4th generation district heating (4GDH) integrating smart thermal grids into future sustainable energy systems. Energy, 68 , 1–11, DOI: 10.1016/j.energy.2014.02.089. 2. Pieper, H., Ommen, T., Elmegaard, B., & Markussen, W.B. (2019). Assessment of a combination of three heat sources for heat pumps to supply district heating. Energy, 176 , 156–170, DOI: 10.1016/j.energy.2019.03.165. 3. Hammer, A., Sejkora, C., & Kienberger, T

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Latvian Journal of Physics and Technical Sciences
The Journal of Institute of Physical Energetics
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Wireless Inter-Crane Communication Method for Multi-Crane Scheduling in Maritime Container Terminals / Bezvadu Komunikācijas Tīkla Pielietojums Ostas Darba Efektivitātes Uzlabošanai

References 1. Meisel, F., & Bierwirth, C. (2011). A unified approach for the evaluation of quay crane scheduling models and algorithms. Computers & Operations Research, 683-693. doi:10.1016/j.cor.2010.08.001 2. Bierwirth, C., & Meisel, F. (2010). A survey of berth allocation and quay crane scheduling problems in container terminals. European Journal of Operational Research , 615-627. doi:10.1016/j.ejor.2009.05.031 3. W. Yan, Y. Huang, D. Chang, & J. He. (2011). An investigation into knowledge

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Modeling and Simulation of Cloud Computing Solution for Distributed Space Data Storage and Access In Mobile Communication Networks / Mākoņskaitļošanas Risinājuma Modelēšana Un Simulācija Izkliedētai Kosmiskas Izcelsmes Datu Glabāšanai Un Piekļuvei Mobilos Komunikāciju Tīklos

., Loke, S. W., & Rahayu, W. (2013). Mobile cloud computing: A survey. Future Generation Computer Systems, 29 (1), 84-106. doi:10.1016/j.future.2012.05.023 4. Liu, K., & Dong, L. (2012). Research on Cloud Data Storage Technology and its Architecture Implementation. Procedia Engineering, 29 , 133-137. doi:10.1016/j.proeng.2011.12.682 5. Mao, H., Xiao, N., Shi, W., & Lu, Y. (2012). Wukong: A cloud-oriented file service for mobile Internet devices. Journal of Parallel and Distributed Computing, 72 (2), 171-184. doi:10.1016/j.jpdc.2011.10

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Numerical Study of Flow-Induced Vibrations of Multiple Flexibly-Mounted Cylinders in Triangular Array

single flexible tube predicted by the quasi-steady model in tube bundles. Journal of Fluids and Structures , 56 , 107–123. DOI: 10.1016/j.jfluidstructs.2015.05.004 6. Mahon, J., & Meskell. C. (2013). Estimation of the time delay associated with damping controlled fluidelastic instability in a normal triangular tube array. Journal of Pressure Vessel Technology , 135 , 030903-1-7. DOI: 10.1115/1.4024144 7. Price, S.J. (1995). A review of theoretical models for fluidelastic instability of cylinder arrays in cross-flow. Journal of Fluids and Structures

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LOW-TEMPERATURE 450 nm LUMINESCENCE OF HEXAGONAL BORON NITRIDE

.(b), 224 , (11), 4147-4151. DOI: 10.1002/pssb.200776109. Hua Chen, Ying Chen, Yun Liu, Chao-Nan Xu, & Jim S. Williams. (2007). Light emission and excitonic effect of boron nitride nanotubes observed by photoluminescent spectra. Optical Materials, 29 , 1295-1298. DOI:10.1016/j.optmat.2006.05.006 Berzina, B., Trinkler, L., Krutohvostov, R.,. Williams, R.T, Carroll, D. L., Czerw, R., & Shishonok, E. (2005). Photoluminescence excitation spectroscopy in boron nitride nanotubes compared to microcrystalline h-BN and c

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Influence of the Preparation Method on Planar Perovskite CH3NH3PbI3-xClx Solar Cell Performance and Hysteresis

., Mandal, T. N., Lim, C.-S., Chang, J. A., Lee, Y. H., Kim, H., Sarkar, A., Nazeeruddin, M. K., Gratzel, M., & Il Seok, S. (2013). Efficient inorganic-organic hybrid heterojunction solar cells containing perovskite compound and polymeric hole conductors. Nat. Photonics , 7(6), 486–491. DOI: 10.1038/nphoton.2013.80 efficient. 4. Liu, D., & Kelly, T. L. (2013). Perovskite solar cells with a planar heterojunction structure prepared using room-temperature solution processing techniques. Nat. Photonics , 8(2), 133–138. DOI: 10.1038/nphoton.2013.342. 5. Lotsch, B

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