Search results for: BORON-DOPED DIAMOND (BDD), NANOCRYSTALLINE SHEETS, ELECTRICAL CONDUCTIVITY, OPTICAL PROPERTIES, SEMICONDUCTORS - Bridge of Knowledge

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Search results for: BORON-DOPED DIAMOND (BDD), NANOCRYSTALLINE SHEETS, ELECTRICAL CONDUCTIVITY, OPTICAL PROPERTIES, SEMICONDUCTORS

Search results for: BORON-DOPED DIAMOND (BDD), NANOCRYSTALLINE SHEETS, ELECTRICAL CONDUCTIVITY, OPTICAL PROPERTIES, SEMICONDUCTORS

  • [AEiE] Selected topics of electrical engineering - models of electrical machines

    e-Learning Courses
    • A. Wilk
    • R. Jankowski
    • Z. Krzemiński

    {mlang pl} Dyscyplina: automatyka, elektronika i elektrotechnika Zajęcia fakultatywne dla doktorantów II roku Prowadzący:  dr hab. inż. Andrzej Wilk, prof. PG, prof. dr hab. inż. Zbigniew Krzemiński Liczba godzin: 15 Forma zajęć: wykład {mlang} {mlang en} Discipline: control, electronic and electrical engineering Facultative course for 2nd-year PhD students Academic teachers: dr hab. inż. Andrzej Wilk, prof. PG, prof....

  • Electrical Engineering [Design and Production Engineering][2023/24]

    e-Learning Courses
    • F. Kutt
    • I. Mosoń

    Additional teaching materials for Electrical Engineering for Design and Production Engineering of the Faculty of Mechanical Engineering and Ship Technology course, conducted at the Faculty of Electrical and Control Engineering - 4'th semester, undergraduate

  • [NCh, IMa] Properties of novel materials

    e-Learning Courses
    • T. Klimczuk

    {mlang pl} Dyscyplina: nauki chemiczne, inżynieria materiałowa Zajęcia  fakultatywne Prowadzący:  prof. dr hab. inż. T. Klimczuk, WFTiMS Liczba godzin: 15 Forma zajęć: wykład {mlang} {mlang en} Discipline: chemical sciences, materials engineering facultative course Academic teacher: prof. dr hab. inż. T. Klimczuk, WFTiMS Total hours of training:15 teaching hours Course type: lecture {mlang}

  • Fundamentals of Electrical Engineering and Electronics 1 [2021/22]

    e-Learning Courses
    • J. Horiszny

    Basic concepts of electrical engineering, theory of electric circuits, basic elements and electronic systems

  • Fundamentals of Electrical Engineering and Electronics 1 [2022/23]

    e-Learning Courses
    • J. Horiszny

    Basic concepts of electrical engineering, theory of electric circuits, basic elements and electronic systems

  • Electrical Engineering [Design and Production Engineering][2022/23]

    e-Learning Courses
    • F. Kutt
    • M. Michna
    • R. Ryndzionek
    • I. Mosoń
    • Ł. Sienkiewicz

    Additional teaching materials for Electrical Engineering for design and production engineering course at the Faculty of Mechanical Engineering - 4'th semester, undergraduate

  • Fundamentals of Optical Fibers and Photonics - 2021/2022

    e-Learning Courses
    • M. Gnyba
    • J. Pluciński

    Technika światłowodowa i fotonika:  2 st. 2 sem., kierunek elektronika i telekomunikacja   

  • Fundamentals of Optical Fibers and Photonics - 2023/2024

    e-Learning Courses
    • M. Gnyba
    • J. Pluciński

    Technika światłowodowa i fotonika:  2 st. 2 sem., kierunek elektronika i telekomunikacja   

  • Composite materials - fabrication, properties and prospects of application

    e-Learning Courses
    • B. Bochentyn

  • Selected topics in electrical engineering – modelling of, electrical machines [2021/22]

    e-Learning Courses
    • A. Lewicki
    • M. Morawiec
    • C. Odeh

  • Composite materials - fabrication, properties and prospects of application 2023

    e-Learning Courses
    • B. Bochentyn

  • Selected topics of electrical engineering

    e-Learning Courses
    • A. Wilk

    Principles of electromchanical energy conversion using Lagrange energy method

  • Electrical equipment and installations [2023/2024]

    e-Learning Courses
    • Z. Lubośny

  • Selected topics of electrical engineering [2020/21]

    e-Learning Courses
    • A. Wilk
    • J. Guziński

  • [IMa] Electrical methods of materials and structures characterization

    e-Learning Courses
    • P. Jasiński
    • B. Kamecki
    • M. Gawęda

    {mlang pl} Dyscyplina: inżynieria materiałowa Zajęcia fakultatywne dla doktorantów I i II roku Prowadzący: prof. dr hab. inż. Piotr Jasiński Liczba godzin: 15 Forma zajęć: wykład/seminarium {mlang} {mlang en} Discipline: materials engineering Facultative course for 1st and 2nd year PhD students Academic teachers: prof. dr hab. inż. Piotr Jasiński Total hours of training: 15 teaching hours Course type: lecture/seminar {mlang}

  • Electrical and Software Systems Engineering [WIMiO][2023/24]

    e-Learning Courses
    • T. Zubowicz
    • B. Puchalski

  • Electrical and Software Systems Engineering [WIMiO][2022/23]

    e-Learning Courses
    • T. Zubowicz
    • B. Puchalski

  • Fundamentals of Electrical Engineering and Electronics 1 [2020/21]

    e-Learning Courses
    • J. Horiszny

    Kurs dla studentów sem. 2 na kierunku Energy Technologies studiów stacjonarnych I stopnia w języku angielskim. Elementy teorii pola elektromagnetycznego, teoria obwodów elektrycznych. Wykład+ćwiczenia.

  • FUNDAMENTALS OF ELECTRICAL ENGINEERING AND ELECTRONICS 2 [2022/23]

    e-Learning Courses
    • P. Chrzan

  • [IMa] Electrical methods of materials and structures characterization 2024

    e-Learning Courses
    • P. Jasiński

    {mlang pl} Dyscyplina: inżynieria materiałowa Zajęcia fakultatywne dla doktorantów I i II roku Prowadzący: prof. dr hab. inż. Piotr Jasiński Liczba godzin: 15 Forma zajęć: wykład/seminarium {mlang} {mlang en} Discipline: materials engineering Facultative course for 1st and 2nd year PhD students Academic teachers: prof. dr hab. inż. Piotr Jasiński Total hours of training: 15 teaching hours Course type: lecture/seminar {mlang}

  • Fundamentals of Electrical Engineering and Electronics 2 [2023/24]

    e-Learning Courses
    • P. Chrzan

    Prezentacje wykładów, quizy dla studentów, zadania i pytania do egzaminu.  

  • Fundamentals of Electrical Engineering and Electronics 1 [2023/24]

    e-Learning Courses
    • J. Horiszny

  • Fundamentals of Electrotechnics and Electronics 1 [2022/23]

    e-Learning Courses
    • J. Horiszny

    Basic concepts in electrical engineering, analysis of electric circuits, phenomena occurring in electrical systems.

  • Dielektryki-en WFTIMS

    e-Learning Courses
    • R. J. Barczyński

    Dielectric materials - properties, applications, structure.

  • Materials for energy storage and conversion devices 2022/2023

    e-Learning Courses

    Electrodes: Metals as electrodes in aqueous and non-aqueous systems, metal nanoparticles. Collectors current. 3D, 2D, 1 D carbons, carbon nanomaterials. Organic semiconductors "Synthetic metals" - p-type, n-type. Inorganic semiconductors: oxides, selenides, sulfides, others. Intercalated electrodes. Mixed conductors (MIEC). Photo-active semiconductor materials. Electrolytes. Water electrolytes in commercial products. Electroactive...

  • Manufacturing Engineering, PG_00050286, DaPE, 2023, s. zimowy (Archiwizowany 2023-11-02)

    e-Learning Courses
    • M. Deja

    Acquainting with basic manufacturing techniques in terms of technological effects and properties of the workpiece surface layer. Analysis of manufacturing costs, designing the technological process.

  • Fuel, Oils and Greases, W, E, sem.01, zimowy 22/23

    e-Learning Courses

    Division and origin of fuels. Fossil energy resources in Poland and in the world. Production and structure of fuel consumption. Main directions of crude oil processing. Classification and physical properties of gaseous and liquid fuels - natural gas, gasoline, kerosene, diesel oil, heating oil. Classification and characteristic indicators of solid fuels - hard coal, lignite, peat. Fuel contaminants and methods of their removal....

  • Fuel, Oils and Greases, W, E, sem.03, zimowy 22/23

    e-Learning Courses
    • P. Bzura

    Division and origin of fuels. Fossil energy resources in Poland and in the world. Production and structure of fuel consumption. Main directions of crude oil processing. Classification and physical properties of gaseous and liquid fuels - natural gas, gasoline, kerosene, diesel oil, heating oil. Classification and characteristic indicators of solid fuels - hard coal, lignite, peat. Fuel contaminants and methods of their removal....

  • Inorganic Chemistry Lecture

    e-Learning Courses
    • A. Pladzyk
    • A. Brillowska-Dąbrowska

    Aim of the course is to give a general knowledge of the chemistry of the elements and the inorganic compounds, puting the attention on the relationships between structure, properties and reactivity.

  • Technical Mechanics 2 (PG_00049753), I stop, En, [W,C], zima 22/23

    e-Learning Courses
    • B. Rozmarynowski

    Lectures and tutorials devoted to basic issues of Strength of Materials (stress and strain states, the Hook's law, geometrical properties of an area, bending, shearing, torsion, deflection lines  of beams, buckling and yielding criteria).

  • Application of Mathematics in Technology 2 [2022/23]

    e-Learning Courses
    • J. Horiszny

    {mlang en}Numerical methods in electrical engineering.{mlang} {mlang pl}Metody numeryczne w elektrotechnice{mlang}

  • Application of Mathematics in Technology 2 [2021/22]

    e-Learning Courses
    • J. Horiszny

    {mlang en}Numerical methods in electrical engineering.{mlang} {mlang pl}Metody numeryczne w elektrotechnice{mlang}

  • Technology and Energy Conversion Machines - Nowy

    e-Learning Courses
    • D. Stepanenko

    The course covers the basics of mechanical, electrical and thermal energy production in industry and maritime transport. Describes installations supporting high-power engines. Particular attention has been paid to the fuel systems of internal combustion engines. The treatment of engine exhaust gases is described.

  • Technology and Energy Conversion Machines - Nowy kopiuj 1

    e-Learning Courses
    • Z. Kneba

    The course covers the basics of mechanical, electrical and thermal energy production in industry and maritime transport. Describes installations supporting high-power engines. Particular attention has been paid to the fuel systems of internal combustion engines. The treatment of engine exhaust gases is described.

  • Technology and Energy Conversion Machines

    e-Learning Courses
    • Z. Kneba

    The course covers the basics of mechanical, electrical and thermal energy production in industry and maritime transport. Describes installations supporting high-power engines. Particular attention has been paid to the fuel systems of internal combustion engines. The treatment of engine exhaust gases is described.

  • Vehicle Suspension Design, W, TiL II st., sem. 03, letni 23/24 (PG_00062882)

    e-Learning Courses
    • J. Kropiwnicki

    Role of the suspension. Suspension kinematics and compliances theoretical background and practical measuring schemes. Suspension design an overview of suspension design properties and review of current design philosophy. Review of typical designs. Current design trends. Practical implications. Case studies introduction to modelling and simulation software and discussion of practical case studies.

  • Vehicle Suspension Design, W, MiBM II st., sem. 03, letni 23/24 (PG_00062882)

    e-Learning Courses
    • J. Kropiwnicki

    Role of the suspension. Suspension kinematics and compliances theoretical background and practical measuring schemes. Suspension design an overview of suspension design properties and review of current design philosophy. Review of typical designs. Current design trends. Practical implications. Case studies introduction to modelling and simulation software and discussion of practical case studies.

  • Fundamentals of thermodynamics and heat transfer, W/C, GTM (WCh), sem.04, zimowy 23/24 (PG_00048767)

    e-Learning Courses
    • T. Muszyński

    Table of contents presented on the course: Basic terms.The first law of thermodynamics for closed and open systems.The properties of perfect, semi-perfect and real gases.Gas rights. Thermal and caloric state equation.Thermodynamic transformations of a perfect gas.Gaseous thermodynamic cycles. The second law of thermodynamics.Steam and steam cycles.Basics of heat exchange.

  • Advanced methods in biosensing: fundamentals and applications

    e-Learning Courses
    • R. Bogdanowicz
    • J. Ryl

    This course provides instruction in the basic science and engineering conceptsrequired to understand the design and application of biosensors. Different biosensorsystems are explored, ranging from electrochemical devices, through to optical orthermal systems. Instruction is also given in the general principles of sampling andanalysis, statistical presentation and manipulation of data. The primary focus will bethe physics of biomolecule...

  • Introductory CDIO Project 2022/2023

    e-Learning Courses
    • C. Odeh
    • P. Kołodziejek
    • D. Vyas

    The aim of this course is to make the students familiar with the team work to design, build and test simple electronic circuit. Also, how to write technical and engineering documentation taking in consideration electrical engineering, electronics, CAD and PCB design and computer simulation problems.

  • Introductory CDIO Project [Energy Technologies][2020/21]

    e-Learning Courses
    • M. Adamowicz
    • J. Guziński
    • P. Kołodziejek
    • M. Drzewiecki
    • K. Łuksza

    The aim of this course is to make the students familiar with the team work to design, build and test simple electronic circuit. Also, how to write technical and engineering documentation taking in consideration electrical engineering, electronics, CAD and PCB design and computer simulation problems.

  • Introductory CDIO Project 2023/2024

    e-Learning Courses
    • T. Ayana
    • P. Kołodziejek

    The aim of this course is to make the students familiar with the team work to design, build and test simple electronic circuit. Also, how to write technical and engineering documentation taking in consideration electrical engineering, electronics, CAD and PCB design and computer simulation problems.

  • Chemistry and Nanochemistry 2022.

    e-Learning Courses
    • M. Prześniak-Welenc
    • M. Bobrowski

    The course consists of lectures (15 x 2 hours) and laboratories (5 x 3 hours).The goal of this course is to teach general chemistry and adequately apply it to nano-size systems, their synthesis and analysis. An emphasis is laid on an analysis of electronic structure of molecules and prediction of  resulting properties and reasons of consequent behaviour in chemical reactions. The course also encloses laboratory classes, where the...

  • Introduction to Numerical Simulation

    e-Learning Courses
    • M. Rewieński

    Course description: This interdisciplinary course provides an introduction to computational techniques for the simulation of a broad range of engineering and physical systems.  Concepts and methods discussed are widely illustrated by applications drawn from electrical, mechanical, and chemical engineering. Topics include: mathematical formulations of simulation problems; sparse direct and iterative linear system solution techniques,...

  • Fluid Mechanics and Hydraulics EE Msc sem. I r.a. 22/23

    e-Learning Courses
    • P. Zima
    • A. M. Mustafa

    Basic definitions. Physical properties of liquids. Forces acting on fluids. Hydrostatics - basic equations. Pressure on a flat and curved wall. Buoyancy. Archimedes' law. Balance of submerged bodies. The balance of floating bodies. Hydrodynamics. Hydrodynamic quantities. Continuity equation for the liquid stream. Bernoulli equation. Basic laws of hydrodynamics. Equation of mass behavior, preservation of the amount of motion, Bernoulli's...

  • Fluid Mechanics and Hydraulics EE Msc sem. I r.a. 23/24

    e-Learning Courses
    • P. Zima

    Basic definitions. Physical properties of liquids. Forces acting on fluids. Hydrostatics - basic equations. Pressure on a flat and curved wall. Buoyancy. Archimedes' law. Balance of submerged bodies. The balance of floating bodies. Hydrodynamics. Hydrodynamic quantities. Continuity equation for the liquid stream. Bernoulli equation. Basic laws of hydrodynamics. Equation of mass behavior, preservation of the amount of motion, Bernoulli's...

  • Complex Concrete Structures (CE) - 2021/2022

    e-Learning Courses
    • P. Ziółkowski

    The following issues in the field of concrete structures will be discussed in the lecture part: Mechanical properties of concrete and reinforcing steel; Calculation of reinforced concrete cross-sections bending; Calculation of reinforced concrete cross-sections shear; Serviceability limit state in reinforced concrete structures; Reinforced concrete slabs, one-way and cross-reinforced; Reinforced concrete stairs; Reinforced...

  • Complex Concrete Structures (CE) - 2023/2024

    e-Learning Courses
    • P. Ziółkowski
    • R. Ossowski

    The following issues in the field of concrete structures will be discussed in the lecture part: Mechanical properties of concrete and reinforcing steel; Calculation of reinforced concrete cross-sections bending; Calculation of reinforced concrete cross-sections shear; Serviceability limit state in reinforced concrete structures; Reinforced concrete slabs, one-way and cross-reinforced; Reinforced concrete stairs; Reinforced...

  • Surrogate methods in system engineering

    e-Learning Courses
    • A. Bekasiewicz

    {mlang pl} Dyscyplina:  Automatyka, Elektronika i Elektrotechnika Zajęcia fakultatywne dla doktorantów II roku Prowadzący:   dr hab. inż. Adrian Bekasiewicz Liczba godzin: 15 h Forma zajęć: wykład {mlang} {mlang en} Discipline: control, electronic and electrical engineering Facultative course for 2nd year PhD students Academic teacher:  dr hab. inż. Adrian Bekasiewicz Total hours of training: 15 teaching hours Course...

  • Fluid Mechanics, L/L/E, DaPE, sem. 04, summer 21/22 (PG_00050282)

    e-Learning Courses
    • K. Tesch
    • M. Banaszek

    LECTURES Introduction and basic definitions. Properties of fluids. Models of fluids. Fluids in equilibrium. Determination of hydrostatic forces. Archimedes" law. Methods of fluid flow description. General motion of fluid. Deformation of fluid element. Vortex motion of fluid. Principles of conservation of mass, momentum and energy. Balance of entropy. Navier-Stokes equation. Bernoulli equation. Similarity of flow phenomena. Potential...