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Na prodaju odlican procesor iz naslova. Malo koriscen, radi odlicno, potpuno ispravnan. Proba pre kupovine kod mene na mom racunaru. U pitanju je jedan od najjacih procesora za slot AM2! Amd Athlon X2 64bit 6000+ Dual Core @ 2 X 3,0 Ghz Fsb 1000 Mhz / 2 MB kes... Za AM2 soket. Otkljucan mnozilac, tako da se po zelji i potrebnom znanju, moze klokovati. I to dosta. Procesor + kuler Licno kod mene uz prethodnu probu, ili saljem o Vasem trosku post - expresom nakon prethodne uplate post-net-om ili na t. r. i provere iste. P. S. U Beloj Palanci je moguca besplatna dostava.

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AMD Ryzen 3 4300GE MPK Proizvođač: AMD Podnožje ( soket ): AM4 Broj jezgara: 4 Clock brzina: 3.5 GHz Maks. Potrošnja u W: 35 Garantni rok: 2 Godine 4.04 4.0

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Intel i7-6850K Proizvođač: Intel Podnožje ( soket ): 2011-V3 Broj jezgara: 6 Clock brzina: 3.6 GHz Garantni rok: 3 Godine 2.65 2.6

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AMD Ryzen 3 2200G Tray Proizvođač: AMD Podnožje ( soket ): AM4 Broj jezgara: 4 Clock brzina: 3.5 GHz Maks. Potrošnja u W: 65 Garantni rok: 3 Godine 5.01 5.0

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Intel Pentium G5420T Tray Proizvođač: Intel Podnožje ( soket ): 1151 Broj jezgara: 2 Clock brzina: 3.2 GHz Maks. Potrošnja u W: 35 Garantni rok: 3 Godine 5.01 5.0

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Intel Pentium G5600F Proizvođač: Intel Podnožje ( soket ): 1151 Broj jezgara: 2 Clock brzina: 3.9 GHz Maks. Potrošnja u W: 54 Garantni rok: 3 Godine 5.01 5.0

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AMD Ryzen 5 3400G Proizvođač: AMD Podnožje ( soket ): AM4 Broj jezgara: 4 Clock brzina: 3.7 GHz Maks. Potrošnja u W: 65 Garantni rok: 3 Godine 5.02 5.0

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AMD Ryzen 5 3400G MPK Proizvođač: AMD Podnožje ( soket ): AM4 Broj jezgara: 4 Clock brzina: 3.7 GHz Maks. Potrošnja u W: 65 Garantni rok: 3 Godine 5.01 5.0

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Intel i3-9100F Proizvođač: Intel Podnožje ( soket ): 1151 Broj jezgara: 4 Clock brzina: 3.6 GHz Garantni rok: 3 Godine 4.36 4.3

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AMD Ryzen 5 2500X MPK Proizvođač: AMD Podnožje ( soket ): AM4 Broj jezgara: 4 Clock brzina: 3.6 GHz Maks. Potrošnja u W: 65 Garantni rok: 3 Godine 5.01 5.0

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AMD Ryzen 3 2200G Proizvođač: AMD Podnožje ( soket ): AM4 Broj jezgara: 4 Clock brzina: 3.5 GHz Maks. Potrošnja u W: 65 Garantni rok: 3 Godine 5.01 5.0

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Intel Celeron G4900 Tray Proizvođač: Intel Podnožje ( soket ): 1151 Broj jezgara: 2 Clock brzina: 3.1 GHz Maks. Potrošnja u W: 54 Garantni rok: 3 Godine 5.01 5.0

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Udruženje emajliraca Jugoslavije, Zagreb, 1980.god. tvrd povez, 376 strana, knjiga ima potpis bivšeg vlasnika i dobro je očuvna

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KUPUJTE BEZBEDNO I KUPUJTE PROVERENO! POGLEDAJTE MOJE OCENE! SALJEM POSTEKSPRESOM i BEX-om SIROM SRBIJE! MOGUCE LICNO PREUZIMANJE I TESTIRANJE U INDJIJI I NOVOM SADU! Intel Core i5-4200M 2.5 GHz to 3.1 GHz procesor cetvrte generacije. Model: SR1HA SR1HA Intel Core i5 Mobile i5-4200M 2.5 GHz Socket G3 Laptop CPU Processor Potpuno ispravan i testiran. Radna garancija 30 dana. Podrzava sledece modele: ProBook 440 G1 Notebook, ThinkPad Edge E440, All-in-one AU5-620-UB10 Karakteristike: Processor Number i5-4200M Cache 3 MB SmartCache Bus Speed 5 GT/s DMI2 Instruction Set 64-bit Instruction Set Extensions SSE4.1/4.2, AVX 2.0 Embedded Options Available No Lithography 22 nm Recommended Customer Price $225.00 Conflict Free Yes Datasheet Link -Performance # of Cores 2 # of Threads 4 Processor Base Frequency 2.5 GHz Max Turbo Frequency 3.1 GHz TDP 37 W -Memory Specifications Max Memory Size (dependent on memory type) 32 GB Memory Types DDR3L 1333/1600 Max # of Memory Channels 2 Max Memory Bandwidth 25.6 GB/s ECC Memory Supported ‡ No -Graphics Specifications Processor Graphics ‡ Intel® HD Graphics 4600 Graphics Base Frequency 400 MHz Graphics Max Dynamic Frequency 1.15 GHz Graphics Video Max Memory 2 GB Graphics Output eDP/DP/HDMI Max Resolution (HDMI 1.4)‡ 3840x2160@60Hz Max Resolution (DP)‡ 3840x2160@60Hz Max Resolution (VGA)‡ 2880x1800@60Hz DirectX* Support 11.2/12 OpenGL* Support 4.3 Intel® Quick Sync Video Yes Intel® InTru™ 3D Technology Yes Intel® Insider™ Yes Intel® Wireless Display Yes Intel® Clear Video HD Technology Yes # of Displays Supported ‡ 3 Device ID 0x416 -Expansion Options PCI Express Revision 3 PCI Express Configurations ‡ 1x16 or 2x8 or 1x8 2x4 Max # of PCI Express Lanes 16 -Package Specifications Max CPU Configuration 1 TJUNCTION 100°C Package Size 37.5mm x 37.5mm x 4.7mm Sockets Supported FCPGA946 Low Halogen Options Available See MDDS -Advanced Technologies Intel® Turbo Boost Technology ‡ 2.0 Intel® vPro Technology ‡ No Intel® Hyper-Threading Technology ‡ Yes Intel® Virtualization Technology (VT-x) ‡ Yes Intel® Virtualization Technology for Directed I/O (VT-d) ‡ No

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KUPUJTE BEZBEDNO I KUPUJTE PROVERENO! POGLEDAJTE MOJE OCENE! SALJEM POSTEKSPRESOM i BEX-om SIROM SRBIJE! MOGUCE LICNO PREUZIMANJE I TESTIRANJE U INDJIJI I NOVOM SADU! Intel Core i5-430M 2.26Ghz/3MB PGA 988 za Socket P. Model: SLBPN CP80617004161AD Potpuno ispravan i testiran. Radna garancija 30 dana. Podrzava sledece modele laptopova: Acer Aspire 7740, 7740G, 7740Z, 7740ZG MS-2287 Karakteristike: Brand Intel Processor Model Core i5-430M MPN CP80617004161AD UPC 0735858214056 Clock Speed 2.26 GHz Socket Type PGA 988, Socket P Multi-Core Technology Dual-Core TDP 35 W Processor Quantity 1 Product Type Processor Cache Memory Level 1 Size 64 KB Level 2 Size 256 KB Level 3 Size 3 MB Type Advanced Smart Cache Connectivity Compatible Slots 1 x processor Bus Speed DMI Speed - 2.5 GT/s Manufacturing Process 32 nm 64-bit Computing Yes Architecture Features Enhanced SpeedStep technology, Hyper-Threading Technology, Execute Disable Bit capability, Intel Virtualization Technology, Intel Turbo Boost Technology, Intel 64 Technology, Enhanced Halt State (C1E) Platform Compatibility PC Packaging Type 988-pin Micro FCPGA Operating Temperature 105 ° C Package Type OEM/tray

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dobro stanje , 24 x 18 , 630 strana

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58987) Computational Fluid Dynamics and Reacting Gas Flows , B. Engquist ; M. Luskin ; A. Majda ; editors ; Springer Verlag New York / Berlin 1988 , IMA Institute for Mathematics and Its Applications volume 12 ; This IMA Volume in Mathematics and its Applications COMPUTATIONAL FLUID DYNAMICS AND REACTING GAS FLOWS is in part the proceedings of a workshop which was an integral part of the 1986-87 IMA program on SCIENTIFIC COMPUTATION. We are grateful to the Scientific Committee: Bjorn Engquist (Chairman), Roland Glowinski, Mitchell Luskin and Andrew Majda for planning and implementing an exciting and stimulating year-long program. We especially thank the Workshop Organizers, Bjorn Engquist, Mitchell Luskin and Andrew Majda, for organizing a workshop which brought together many of the leading researchers in the area of computational fluid dynamics. George R. Sell Hans Weinberger PREFACE Computational fluid dynamics has always been of central importance in scientific computing. It is also a field which clearly displays the essential theme of interaction between mathematics, physics, and computer science. Therefore, it was natural for the first workshop of the 1986- 87 program on scientific computing at the Institute for Mathematics and Its Applications to concentrate on computational fluid dynamics. In the workshop, more traditional fields were mixed with fields of emerging importance such as reacting gas flows and non-Newtonian flows. The workshop was marked by a high level of interaction and discussion among researchers representing varied `schools of thought` and countries. hard cover, size 16 x 24 cm , ex library copy , 346 pages

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58963) TRANSONIC AERODYNAMICS NUMERICAL ANALYSIS , Petrović Z. , Stupar S. , Mechanical Engineering Faculty University of Belgrade 1996 ; Contents : 1 Introduction 1.1 Preliminary Remarks. 1.2 Governing Equations 1.3 Simplifications to the Governing Equations 1.3.1 Definition of an Adiabatic Flow. 1.3.2 Definition of an Irrotational Flow 1.3.3 Crocco`s Theorem 1.3.4 Isentropic Gas Relation 1.4 Algebraic Form of Energy Equation for Steady Adiabatic Flow 1.5 The Isentropic Form of the Energy Equation 1.6 The Momentum Conservation Laws. 1.7 Isentropic Shocks vs. `Real World Shocks` 1.7.1 Rankine-Hugoniot approach 1.7.2 Isentropic approach 1.8 Techniques for Handling Shocks in Potential Flow Calculations 1.9 Summary 2 Transonic Small Disturbance Equation 2.1 Preliminary Remarks. 2.1.1 Treatment of Flow Angle of Attack 2.2 Definition of Disturbance Potential 2.3 Boundаry Conditions for Flow at the Body Surface 2.4 Derivation of the TSD Equation 2.5 Properties of the TSD Equation. 2.6 Finite Difference Terminology 2.7 Conservation Form vs. Non-Conservation Form 2.8 Finite Difference Expression Form of the TSD Equation in Subsoni 2.9 Murman-Cole Switching in supersonic Regions 2.10 Discretization Error Associated with Equation (2.2) 2.11 Loss of Conservation Property due to Switching 2.12 Murman-Cole Switching in Conservation Form 2.13 Application of Boundary Conditions 2.13.1 Region Ahead of the Leading Edge: (1 2.13.2 Region of the Slit: (ILE SITE) 2.13.3 Region Downstream of the Trailing Edge: (ITE << Imax 2.14 Far Field Boundary Conditions 2.15 Relaxation Procedure for the TSD Equation 2.15.1 Gauss-Seidel Scheme 2.16 The Point Successive Over-Relaxation (SOR) Scheme 2.17 The Line Gauss-Seidel Iteration Scheme 2.18 The Thomas Algorithm 2.19 Solution of the SLOR Scheme to TSD Equation 2.20 Summary 3 The Transonic Full Potential Equation 3.1 Introduction 3.2 Jameson`s Rotated Difference Scheme 3.3 Transformation of the Continuity Equation to a Curvilinear Coordina System. 3.4 Boundary Conditions. 3.4.1 Boundary Condition at the Solid Surface 3.4.2 Boundary Conditions at the Far Field... 3.5 Governing Equation for Axisymmetric Flows in the Transformed Plan 3.6 Construction of the Body-Fitted Coordinate system... 3.6.1 H-grid, algebraic approach 3.6.2 O-grid, algebraic approach. 3.7 Construction of C-Grids Around Airfoils 3.8 Generation of the Orthogonal Grid... 3.9 Discretization of the Governing Equation 3.10 Computation of Metrics at Half Points 3.11 Computation of Densities and Contravariant Velocities.. 3.12 Relaxation Procedure for Solving the Full Potential Equation 3.12.1 Interior Points 3.13 Summary 4 Numerical Technique for Designing Airfoils 4.1 Introduction. 4.2 Optimization Approach 4.2.1 Design Objective 4.2.2 Design Point 4.2.3 Starting Point. 4.2.4 Design Variables 4.2.5 Design Constraints 4.2.6 Black Box. 4.3 CONMIN to Black Box Coupling. 4.3.1 Optimization Process 4.4 Inverse Design Techniques. 4.5 Carlson`s Inverse Design Technique.. 5 Unsteady Transonic Potential Flow 5.1 Introduction. 5.2 Governing Equations 5.3 Unsteady Transonic Small Disturbance Equation 5.4 Boundary Conditions. 5.5 Low-Frequency Approximation 5.6 Characteristic of the Low-Frequency Transonic Small Disturbance Equation. 5.7 Discretization of the Low-Frequency Small-Disturbance Equation. A Solution of the diagonal system of equations A.1 Three diagonal Equation System A.2 Quad-Diagonal Matrix System B Selected Papers paperback, size 20,5 x 29 cm , English , 152 pages

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58965) Transonic , Shock , and Multidimensional Flows Advances in Scientific Computing , edited by Richard E. Meyer , Academic press New York / London 1982 , Mathematics Research Center Symposium: Transonic, Shock, and Multidimensional Flows: Advances in Scientific Computing covers the lectures presented at a Symposium on Transonic, Shock, and Multidimensional Flows, held in Madison on May 13-15, 1981, under the auspices of the Mathematics Research Center of the University of Wisconsin. The book focuses on the advancements in the scientific computation of high-speed aerodynamic phenomena and related fluid motions. The selection first elaborates on computational fluid dynamics of airfoils and wings; shock-free configurations in two- and three-dimensional transonic flow; and steady-state solution of the Euler equations for transonic flow. Discussions focus on boundary conditions, convergence acceleration, indirect design of airfoils, and trailing edge and the boundary layer. The text then examines the calculation of transonic potential flow past three-dimensional configurations and remarks on the numerical solution of Tricomi-type equations. The manuscript ponders on the design and numerical analysis of vortex methods, shock calculations and the numerical solution of singular perturbation problems, tracking of interfaces for fluid flow, and transonic flows with viscous effects. Topics include numerical algorithm, difference approximation for scalar equations, boundary conditions, transonic flow in a tube, and governing equations. The selection is a dependable reference for researchers interested in transonic, shock, and multidimensional flows. hard cover, size 16 x 23 cm , dust jacket, 345 pages, ex library copy ,

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Osnovi elektrotehnike Profesor Dr. Stevan Marković Zbirka predavanja iz Grenobla Februara i Marta 1892. I izdanje 1897 Godina Knjiga je veoma stara i malo ostecena - nedostaje samo 113. stranica i zaključno sa 256 stranom (još neke nedostaju nakon 256. strane) Knjiga je malo opštećena, ali ipak to je raritet - već sada je muzejski primerak Format 15.5 X 23.5 cm oko 256 stranica

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Књига Архитектура храма, пројектовање духовних објеката, конципирана је као монографија о историји, структури, тумачењу, анализи и критичком промишљању о храму, са идејом истицања његовог духовног значаја и садржаја, као и намером да се на основу анализа, ослањањем на историју и континуитет, у савремено доба дође до нових решења и остварења. Структуирана је од седам поглавља, има закључак, подржана је са научним апаратом, садржи исцрпну литературу. Књига је богато илустрована квалитетним фотографијама у боји, архитектонским плановима и цртежима, скицама, детаљима. Уз познате примере из светске историје са одговарајућом пажњом су приказани и сакрални објекти српског културног тла. Примери су подржани добрим илустративним материјалом, приказани су значајни потенцијали и различита промишљања о грађењу храма. -format 210 x 210 mm -obim 480 strana -štampa knjižnog bloka kolor -štampa korica kolor, mat -papir za knjižni blok 115 gr. mat -povez – tvrd, šiven.

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Specifikacija Komentari Klasa procesora AMD® Ryzen™ 5 Model 1400 Broj jezgara procesora 4 Broj logičkih jezgara (niti) 8 Radni takt 3.2GHz Turbo frekvencija 3.4GHz Procesorsko ležište (socket) AMD® AM4 Keš memorija 8MB L3 Proces izrade 14nm TDP 65W Podržane tehnologije Virtualization, Pakovanje Multi-pack Napomena Wraith Stealth cooler Reklamacioni period 36 meseci Ocenite proizvod: * Pošalji

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Specifikacija Komentari Ocenite proizvod: * Pošalji

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Specifikacija Komentari Klasa procesora AMD® A10 Model R7 Broj jezgara procesora 4 Broj logičkih jezgara (niti) 4 Radni takt 3.5GHz Turbo frekvencija 3.8GHz Procesorsko ležište (socket) AMD® AM4 Keš memorija 2MB L2 Grafika AMD® Radeon™ Frekvencija 1.029 MHz Proces izrade 28nm TDP 65W (maksimalno) Pakovanje Box Reklamacioni period 36 meseci Ocenite proizvod: * Pošalji

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tvrd povez dobro ocuvano 1 Power Generation Systems is the first to focus on protection of motors and generators from a power generation perspective. It also includes workbook constructions that allow students to perform protection-related calculations in Mathcad® and Excel®. This text provides both a general overview and in-depth discussion of each topic, making it easy to tailor the material to students` needs. It also covers topics not found in other texts on the subject, including detailed time decrement generator fault calculations and minimum excitation limit. The author clearly explains the potential for damage and damaging mechanisms related to each protection function and includes thorough derivations of complex system interactions. Such derivations underlie the various rule-of-thumb setting criteria, provide insight into why the rules-of-thumb work and when they are not appropriate, and are useful for post-incident analysis. The book`s flexible approach combines theoretical discussions with example settings that offer quick how-to information. Protective Relaying for Power Generation Systems integrates fundamental knowledge with practical tools to ensure students have a thorough understanding of protection schemes and issues that arise during or after abnormal operation.

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