{"product_id":"9789355856180","title":"ELEMENTS OF ELECTRICAL ENGINEERING K Scheme (II - E\u0026Tc\/ECE\/ELEX. - 312315)","description":"\u003cp\u003eSyllabus \tElements of Electrical Engineering - (312315)  Learning Scheme\t    Credits\tAssessment Scheme Actual Contact Hrs.\/Week\t   SLH\t   NLH\t\t  Paper Duration\t  Theory\t Based on LL \u0026amp; TL\t Based on SL\t Total Marks  CL\t TL\t LL\t\t\t\t\t\tPractical\t\t \t\t\t\t\t\t\tFA-TH\tSA-TH\t Total\tFA-PR\tSA-PR\tSLA\t \t\t\t\t\t\t\tMax\tMax\tMax\tMin\tMax\tMin\tMax\tMin\tMax\tMin\t 3\t-\t2\t1\t6\t3\t3\t30\t70\t100\t40\t25\t10\t25\t10\t25\t10\t175  Sr. No.\tTheory Learning Outcomes(TLO's) aligned to CO's.\tLearning content mapped with Theory Learning Outcomes (TLO's) and CO's. 1.\tTLO 1.1\tDescribe the terms related to Magnetic circuit. TLO 1.2 \tDistinguish between electric and magnetic circuit. TLO 1.3\tInterpret magneto motive force in series and parallel magnetic circuit. TLO 1.4\tDescribe laws related to magnetic circuit. TLO 1.5\tClassify the types of induced electromotive force  \tUnit - I Magnetic circuits 1.1\tDefine and state units of Magnetic flux, Flux density, Magneto motive force, Magnetic field strength, Permeability. 1.2 \tElectric circuit and magnetic circuit analogy and differences. 1.3\tSeries and parallel magnetic circuit. 1.4\tFaraday's laws of electro-magnetic induction, Lenz's law, Fleming right hand and left hand rule. 1.5 \tDynamically and statically induced emf, self and mutual induced Electromotive force and its inductances. (Chapter - 1) 2.\tTLO 2.1\tCompare AC quantities with DC quantities. TLO 2.2\tDescribe terminology related to A.C. fundamentals. TLO 2.3\tDescribe different forms of representation for electrical quantity. TLO 2.4\tAnalyze A.C. circuits for different types of load. TLO 2.5\tExplain generation of three phase induced emf. TLO 2.6\tAnalyze three phase circuit for star and delta connection.  \tUnit - II A.C. fundamentals for single phase and polyphase circuits 2.1\tDefine A.C. and D.C. quantities, advantages of A.C. over D.C. 2.2\tSingle phase sinusoidal A.C. wave : instantaneous value, cycle, amplitude, time period, frequency, angular frequency, R.M.S. value, average value for sinusoidal waveform. 2.3\tVector, polar and complex forms representation of an ac quantity, phase angle, phase difference concept of lagging and leading. 2.4\tA.C. through pure resistance, inductance and capacitance. Its equation, vector diagram and waveform. 2.5\tDefine polyphase system and advantages of three phase system over single phase system. 2.6\tGeneration of three phase induced emf and its waveform. 2.7\tPhase and line currents, phase and line voltages in star connected and delta connected balanced load system. (Chapter - 2)    3.\tTLO 3.1\tExplain construction and working principle of given type of transformer. TLO 3.2\tSelect different types of transformer for the particular application. TLO 3.3\tDescribe construction and the working of DC motor. TLO 3.4\tSelect the type of DC motor for given application. \tUnit - III Transformers and DC motors 3.1\tTransformer construction and working principle, emf equation, voltage ratio, transformation ratio. 3.2\tAuto-transformer, Pulse transformer and Isolation transformer construction, working principle and applications. 3.3\tDC motor construction and working principle. 3.4\tDifferent types of DC motors with its schematic diagram. 3.5\tApplications of DC motors. (Chapters - 3, 4) 4.\tTLO 4.1\tExplain the construction and working principle of the given type of FHP motor. TLO 4.2\tSelect relevant FHP motor for the respective application. TLO 4.3\tDescribe the procedure to connect given motor for the given application.  \tUnit - IV Fractional horse power motors 4.1\tConstruction, working principle and application of split phase single phase AC induction motors. 4.2\tConstruction, working principle and application of universal motor and reversal of direction of rotation. 4.3\tConstruction, working principle and application of stepper motor. Only concept of speed control, stepper motor's reversal of direction of rotation. 4.4 \tConstruction, working principle, specification and application of linear induction motor  (Chapter - 5) 5.\tTLO 5.1\tExplain general safety rule of electrical system. TLO 5.2\tExplain and select the different types of protective devices. TLO 5.3\tDraw circuit connection diagram of protective devices. TLO 5.4\tDescribe earthing system and related terms. \tUnit - V Electrical protective devices 5.1\tElectrical general safety rules, Personal Protective Equipment (PPE), Selection of wires and cable as per application. 5.2\tType of fuses, operation, connection diagram and application of fuses, Miniature Circuit Breaker(MCB), Moulded Case Circuit Breaker (MCCB), Earth Leakage Circuit Breaker(ELCB)operation, connection diagram and general specification. 5.3\tDraw circuit connection diagram of Protective devices. 5.4\tNeed of Earthing, methods of earthing, types of earthing and factors affecting earthing as per Indian Electricity rule. (Chapter - 6)\u003c\/p\u003e","brand":"Technical Publications","offers":[{"title":"Default Title","offer_id":48024571085092,"sku":"9789355856180","price":195.0,"currency_code":"INR","in_stock":true}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0671\/3661\/8788\/files\/9789355856180_1.jpg?v=1707204587","url":"https:\/\/bookstation.in\/mr\/products\/9789355856180","provider":"BookStation","version":"1.0","type":"link"}