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21Publicado 2020Tabla de Contenidos: “…PERMEABILIDAD MAGN ETICA CASO PARTICULAR DEL SOLENOIDE CON MEDIO IS (...) -- 3.16. DIA, PARA Y FERROMAGNETISMO -- 3.17. …”
Acceso restringido con credenciales UPSA
Libro electrónico -
22Publicado 2015Tabla de Contenidos: “…5.4.2 SAM Environmental Chamber -- References -- 2 - Facilities to AlterWeight -- Chapter_6 Drop Towers -- 6.1 Introduction -- 6.2 Drop Tower Technologies -- 6.3 Vacuum (or Drop) Tubes -- 6.4 Experiment Inside Capsule (Drag Shield) -- 6.5 Drop Tower Systems -- 6.5.1 Guided Motion -- 6.6 Enhanced Technologies -- 6.6.1 Free Flyer System -- 6.6.2 Catapult System -- 6.6.3 Next-Generation Drop Towers -- 6.6.3.1 Ground-based facility's typical operational parameters -- 6.7 Research in Ground-Based Reduced Gravity Facilities -- 6.7.1 Cold Atoms -- 6.7.2 Combustion -- 6.7.3 Fluid Mechanics/Dynamics -- 6.7.4 Astrophysics -- 6.7.5 Material Sciences -- 6.7.6 Biology -- 6.7.7 Technology Tests -- References -- Chapter_7 Parabolic Flights -- 7.1 Introduction -- 7.2 Objectives of Parabolic Flights -- 7.3 Parabolic Flight Maneuvers -- 7.4 Large Airplanes Used for Parabolic Flights -- 7.4.1 Europe: CNES' Caravelle and CNES-ESA's Airbus A300ZERO-G -- 7.4.2 USA: NASA's KC-135, DC-9 and Zero-G Corporation -- 7.4.3 Russia: Ilyushin IL-76 MDK -- 7.5 Medium-Sized Airplanes Used for Parabolic Flights -- 7.5.1 Europe: TU Delft-NLR Cessna Citation II -- 7.5.2 Canada: CSA Falcon 20 -- 7.5.3 Japan: MU-300 and Gulfstream-II -- 7.5.4 Other Aircraft -- 7.6 Small Airplanes and Jets Used for Parabolic Flights -- 7.6.1 Switzerland: Swiss Air Force Jet Fighter F-5E -- 7.6.2 Other Aircraft -- 7.7 Conclusions -- References -- Chapter_8 Magnetic Levitation -- 8.1 Introduction -- 8.2 Static Magnetic Forces in a Continuous Medium -- 8.2.1 Magnetic Forces and Gravity, Magneto-GravitationalPotential -- 8.2.2 Magnetic Compensation Homogeneity -- 8.3 Axisymmetric Levitation Facilities -- 8.3.1 Single Solenoids -- 8.3.2 Improvement of Axisymmetric Device Performance -- 8.3.2.1 Ferromagnetic inserts -- 8.3.2.2 Multiple solenoid devices and special windings design…”
Libro electrónico -
23por Paul, Clayton R.Tabla de Contenidos: “…-- 3.5 Vector Magnetic Potential for Time-Varying Currents -- 3.6 Conservation of Energy and Poynting's Theorem -- 3.7 Inductance of a Conducting Loop -- 4 The Concept of "Loop" Inductance -- 4.1 Self Inductance of a Current Loop from Faraday's Law of Induction -- 4.1.1 Rectangular Loop -- 4.1.2 Circular Loop -- 4.1.3 Coaxial Cable -- 4.2 The Concept of Flux Linkages for Multiturn Loops -- 4.2.1 Solenoid -- 4.2.2 Toroid -- 4.3 Loop Inductance Using the Vector Magnetic Potential -- 4.3.1 Rectangular Loop -- 4.3.2 Circular Loop -- 4.4 Neumann Integral for Self and Mutual Inductances Between Current Loops -- 4.4.1 Mutual Inductance Between Two Circular Loops -- 4.4.2 Self Inductance of the Rectangular Loop -- 4.4.3 Self Inductance of the Circular Loop -- 4.5 Internal Inductance vs. …”
Publicado 2010
Libro electrónico -
24por Gómez López, NelsonTabla de Contenidos: “…10.5.1 PRIMERA LEY DE KIRCHHOFF -- 10.5.2 SEGUNDA LEY DE KIRCHHOFF -- 10.5.2.1 PASOS PARA RESOLVER UNA MALLA, UTILIZANDO LA LEY DE KIRCHHOFF -- 10.6 PUENTE DE WHEATSTONE -- 10.7 POTENCIA ELÉCTRICA PARA CORRIENTE CONTINUA -- 10.8 POTENCIA ELÉCTRICA CONTRATADA -- 10.9 ICP -- 10.10 POTENCIA PERDIDA EN LOS CABLES CONDUCTORES -- 10.10.1 DETERMINACIÓN DE LA POTENCIA PERDIDA EN LOS CABLES CONDUCTORES -- 10.11 POTENCIA EN CORRIENTE ALTERNA -- 10.12 ENERGÍA CONSUMIDA -- 10.13 FUERZA ELECTROMOTRIZ -- 10.13.1 FUERZA ELECTROMOTRIZ Y MEDICIÓN DE LA CORRIENTE QUE FLUYE POR UN CIRCUITO -- 10.14 VOLTAJE DE LAS TERMINALES DE UN GENERADOR -- 10.15 REDES ELÉCTRICAS -- 10.16 GENERACIÓN DE ELECTRICIDAD -- 10.17 RED DE ALTA TENSIÓN -- 10.18 RED DE DISTRIBUCIÓN -- 10.19 GESTIÓN DE UNA RED ELÉCTRICA -- 10.20 CIRCUITO RC -- 10.21 CONSTANTE DE TIEMPO -- UNIDAD XI - MAGNETISMO Y ELECTROMAGNETISMO -- 11.1 MAGNETISMO -- 11.2 ELECTROMAGNETISMO -- 11.3 CAMPO MAGNÉTICO -- 11.3.1 DETERMINACION DE LA INTENSIDAD DEL CAMPO MAGNÉTICO -- 11.3.2 UNIDADES DE MEDIDAS -- 11.3.2.1 UNIDAD DE MEDIDA DEL CAMPO MAGNÉTICO -- 11.4 TESLA -- 11.5 WEBER -- 11.6 CAMPO MAGNÉTICO SOBRE UNA CORRIENTE -- 11.7 IMÁN -- 11.8 POLOS MAGNÉTICOS -- 11.9 EFECTO HALL -- 11.10 LEY DE AMPERE O LEY DE BIOT-SAVART -- 11.10.1 LEY DE AMPERE -- 11.10.2 LEY DE BIOT-SAVART -- 11.11 CAMPO EN EL CENTRO DE UNA ESPIRA CIRCULAR -- 11.12 ELECTROIMÁN -- 11.13 FUNCIONAMIENTO DE UN ELECTROIMÁN -- 11.14 CAMPO DE UN SOLENOIDE -- 11.14.1 SOLENOIDE -- RESPUESTAS DE LOS EJERCICIOS -- BILBLIOGRAFÍA GENERAL…”
Publicado 2020
Biblioteca Universitat Ramon Llull (Otras Fuentes: Biblioteca de la Universidad Pontificia de Salamanca, Universidad Loyola - Universidad Loyola Granada)Libro electrónico -
25por Frenzel, Louis E., JrTabla de Contenidos: “…Blu-ray DVD -- Virtual and Augmented Reality -- 12 - Industrial Control : How to Automate: Monitor, Process, and Control -- INTRODUCTION -- OPEN- AND CLOSED-LOOP CONTROL -- Open-Loop Control -- Closed-Loop Control -- Controllers -- SENSORS -- Temperature Sensors -- Pressure Sensors -- Switches -- Potentiometers -- Photoelectric Sensors -- Flow Sensors -- OUTPUT DEVICES -- Relays -- Solenoids -- Motors -- DC Motors -- AC Motors -- Other Actuators -- THYRISTORS -- Silicon-Controlled Rectifier -- Diac -- Triac -- PROGRAMMABLE LOGIC CONTROLLERS -- Organization -- Operation -- Programming -- Data Acquisition Systems -- 13 - Software, Programmingand Electronics: Today, Most Electronics Is a Combination -- INTRODUCTION -- SOFTWARE FUNDAMENTALS -- Programming Languages -- PROGRAMMING -- Developing Software for Embedded Controllers -- Microcontroller Unit Interfacing -- PLATFORMS FOR LEARNING PROGRAMMING -- Parallax BASIC Stamp 2 -- PICAXE -- Arduino -- LaunchPad -- Advanced Alternatives -- LEARNING PROGRAMMING -- Books -- Learn by Example -- Online Tutorials -- Online College Courses -- Apply What You Learn -- 14 - Soldering: An Essential Skill for Electronics -- INTRODUCTION -- What is Solder? …”
Publicado 2018
Libro electrónico -
26Publicado 2013Tabla de Contenidos: “…Refrigerator/Freezer -- The Basic Refrigeration Cycle -- Refrigeration Components -- Compressor -- Compressor Safety -- Trained Personnel Only -- Terminal Venting and Electrocution -- Compressor Motor Starting Relays -- Current Type Relay -- PTC Type Relay -- Condenser Coil -- Evaporator Coil -- Metering Device -- Other Components Used in the Sealed Refrigeration System -- Diagnosing Sealed Systems -- Part IV: Parts -- Chapter 10: Electric Appliance and Air Conditioner Parts -- The Switch -- Pressure Switch -- Thermostat -- Electromechanical Timer -- The Motor -- The Cam Switches -- The Escapement -- Relays -- Solenoids -- Water Valves -- Motors -- Compressors -- Capacitors -- Testing a Capacitor -- Heating Elements -- Mechanical Linkages -- Wires -- How to Strip, Splice, Solder, and Install Solderless and Terminal Connectors, and How to Use Wire Nuts on Wires -- Circuit Protection Devices -- Chapter 11: Electronic Parts -- Electronic Components in General -- How Electronic Appliances and Air Conditioners Operate -- Electrostatic Discharge -- Testing Printed Circuit Boards -- Touch Panel Membrane -- Transformer -- Integrated Circuit Chip -- Resistors -- Sensors -- Temperature Detectors -- Thermistor -- Thermocouple -- Resistance Temperature Detector -- Thermopile…”
Libro electrónico -
27Publicado 2007“…The main topic of this book is the determination of the potential to discover the Higgs boson at the Compact Muon Solenoid (CMS) experiment at the LHC in a certain decay channel. …”
Libro electrónico -
28por Sinclair, Ian Robertson“…The coverage encompasses all component types capable of power amplification: resistors, capacitors, transformers, solenoids, motors and transducers. The behaviour of the components is explored along with the different types available and the principles of circuit design. …”
Publicado 2000
Libro electrónico -
29Publicado 2013Tabla de Contenidos: “…7.13 Secondary Batteries/Cells -- 7.14 Elements of Secondary Cells -- 7.15 The Electrolyte -- 7.16 Capacity of Cells -- 7.17 Internal Resistance of Secondary Cells -- 7.18 Makeup of Cells -- 7.19 Charging and Discharging of Lead-Acid Secondary Batteries -- 7.20 Constant Current Charging -- 7.21 Constant Voltage Charging -- 7.22 Efficiencies of a Cell -- 7.23 Faults -- 7.24 Alkaline Cells -- 7.25 Nife Nickel Cadmium Alkaline Cell -- 7.26 Mercury Cell -- 7.27 Silver-Oxide Cell -- 7.28 Grouping of Cells -- 7.28.1 Cells in Series -- 7.28.2 Cells in Parallel -- 7.28.3 Cells in Series Parallel -- 7.29 Grouping Cells for Maximum Current -- Summary -- Multiple Choice Questions (MCQ) -- Conventional Questions (CQ) -- 8: Electromagnetism -- 8.1 Introduction -- 8.2 Attraction and Repulsion -- 8.3 The Inverse Square Law -- 8.4 Lines of Force -- 8.5 Magnetic Flux -- 8.6 Permeability -- 8.7 Permeability (B-H) Curves -- 8.8 The Domain Theory of Magnetism -- 8.9 Electromagnetism -- 8.10 Direction of Magnetic Field -- 8.11 Magnetizing Force of Electromagnetic Fields -- 8.12 Indicating the Direction of Current Flow -- 8.13 Rule of Direction -- 8.14 Electrodynamic Forces -- 8.15 Forces between Magnet Poles -- 8.16 Magnetic Moment -- 8.16.1 Energy Stored in a Magnetic Field -- 8.17 Flux Density of a Solenoid -- 8.18 Magnetic Circuit -- 8.18.1 Magnetomotive Force -- 8.18.2 Flux Density -- 8.18.3 Reluctance -- 8.18.4 Magnetic Reluctance and Electrical Resistance -- 8.18.5 Comparison of Magnetic Circuit and Electric Circuit -- 8.18.6 Application of Ohm's Law to the Magnetic Circuit -- 8.19 Magnetic Induction -- 8.19.1 Direction of Induced e.m.f. -- 8.19.2 Magnitude of Induced e.m.f. -- 8.20 Magnetic Shields -- 8.21 Reluctance -- 8.22 Series Magnetic Circuits -- 8.23 Parallel Magnetic Circuit -- 8.24 Electromagnets -- 8.24.1 Leakage Flux, Useful Flux…”
Libro electrónico -
30Publicado 2016Tabla de Contenidos: “…Three - Experiments: developing the basis for going beyond ITER -- 11 - National Spherical Torus eXperiment -- 11.1 Introduction -- 11.2 Transport and turbulence -- 11.3 Macroscopic stability -- 11.4 Energetic particles -- 11.5 Boundary physics -- 11.6 Solenoid-free operation and wave physics -- 11.7 NSTX-Upgrade -- References -- 12 - The mega amp spherical tokamak -- 12.1 The MAST device -- 12.2 Key scientific achievements of 15years of MAST research -- 12.2.1 Plasma confinement -- 12.2.1.1 Access to high confinement (H-mode) -- 12.2.1.2 Energy confinement -- 12.2.1.3 Particle confinement and fuelling -- 12.2.1.4 Momentum transport -- 12.2.2 Pedestal and ELM physics -- 12.2.2.1 The ELM crash -- 12.2.2.2 Pedestal evolution -- 12.2.2.3 ELM control -- 12.2.3 Fast-ion physics and current drive -- 12.2.3.1 Alfvén instabilities -- 12.2.3.2 Effect of MHD modes on fast ions -- 12.2.3.3 Neutral beam current drive -- 12.2.4 Scrape-off layer and exhaust physics -- 12.2.4.1 Target heat loads -- 12.2.4.2 SOL transport -- 12.2.5 Macroscopic stability -- 12.2.5.1 The internal n=1 kink mode -- 12.2.5.2 Sawtooth physics -- 12.2.5.3 NTM physics -- 12.2.5.4 Disruptions -- 12.2.6 Plasma start-up -- 12.2.6.1 Merging compression start-up -- 12.2.6.2 ECRH/EBW start-up and heating -- 12.3 The upgrade to MAST -- 12.3.1 A staged approach toward a future ST -- 12.3.2 MAST-U as divertor test facility -- 12.3.3 Toward a fully noninductive flat top -- 12.3.3.1 The neutral beam current drive system -- 12.3.3.2 The EBW current drive potential -- References -- 13 - Experimental advanced superconducting tokamak -- 13.1 EAST mission and orientation -- 13.1.1 Overview -- 13.1.2 EAST mission and orientation -- 13.2 Main progress and achievements on the EAST tokamak -- 13.2.1 Development of high-performance long-pulse operation -- 13.2.2 Main progresses in RF physics…”
Libro electrónico -
31Publicado 2018Tabla de Contenidos: “…1.7.7 Variable resistance -- 1.7.8 Accelerometer (knock sensors) -- 1.7.9 Linear variable differential transformer (LVDT) -- 1.7.10 Hot wire air flow sensor -- 1.7.11 Thin film air flow sensor -- 1.7.12 Vortex flow sensor -- 1.7.13 Pitot tube -- 1.7.14 Turbine fluid flow sensor -- 1.7.15 Optical sensors -- 1.7.16 Oxygen sensors -- 1.7.17 Light sensors -- 1.7.18 Thick-film air temperature sensor -- 1.7.19 Methanol sensor -- 1.7.20 Rain sensor -- 1.7.21 Oil sensor -- 1.7.22 Dynamic vehicle position sensors -- 1.7.23 Summary -- 1.8 Actuators -- 1.8.1 Introduction -- 1.8.2 Solenoid actuators -- 1.8.3 EGR valve -- 1.8.4 Motorized actuators -- 1.8.5 Stepper motors -- 1.8.6 Synchronous motors -- 1.8.7 Thermal actuators -- 1.9 Testing electronic components, sensors and actuators -- 1.9.1 Introduction -- 1.9.2 Testing sensors -- 1.9.3 Testing actuators -- 1.10 Updates -- 1.10.1 Sensors overview and developments -- Chapter 2 Tools and equipment -- 2.1 Basic equipment -- 2.1.1 Introduction -- 2.1.2 Basic hand tools -- 2.1.3 Accuracy of test equipment -- 2.1.4 Multimeters -- 2.1.5 Logic probe -- 2.2 Oscilloscopes -- 2.2.1 Introduction -- 2.2.2 Waveforms -- 2.3 Scanners/fault code readers and analysers -- 2.3.1 On-board diagnostics introduction -- 2.3.2 Serial port communications -- 2.3.3 OBD2 signal protocols -- 2.3.4 Entry level scanners -- 2.3.5 Bosch KTS diagnostic equipment -- 2.3.6 Engine analysers -- 2.4 Emission testing -- 2.4.1 Introduction -- 2.4.2 Exhaust gas measurement -- 2.4.3 Exhaust analyser -- 2.4.4 Emission limits -- 2.5 Pressure testing -- 2.5.1 Introduction -- 2.5.2 Automotive pressure oscilloscope transducer -- 2.5.3 Breakout boxes -- 2.6 Diagnostic procedures -- 2.6.1 Introduction -- 2.6.2 The 'theory' of diagnostics -- 2.7 Pass-through technology -- 2.7.1 Introduction -- 2.7.2 J2534 -- 2.7.3 Hardware and software requirements…”
Libro electrónico