{"product_id":"9789355855015","title":"FUNDAMENTAL OF ELECTRICAL ENGINEERING K Scheme (II - Electrical - 312310)","description":"\u003cp\u003eSyllabus \tFundamental of Electrical Engineering - (312310)  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 4\t-\t4\t2\t10\t5\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 Interpret the given electric parameters. TLO 1.2 Explain the given terms of electric circuit. TLO 1.3 Explain the given effect of the electric current. TLO 1.4 Calculate work, power and energy for the given circuit.\tUnit - I Basic Electrical Parameters 1.1 Direct Current (DC),Alternating Current(AC), Voltage Source       and Current Source : Ideal and Practical. 1.2 Electric Current, Electric Potential, Potential Difference(PD),       Electro-Motive Force(EMF). 1.3 Electrical Work, Power and Energy. 1.4 Resistance, Resistivity, Conductivity, Effect of Temperature        on Resistance. 1.5 Types of Resistor and their application. 1.6 Heating Effect, Magnetic Effect, Chemical Effect of Electric       current.   (Chapter - 1) 2.\tTLO 2.1 Apply Ohm’s law to calculate internal \tresistance of the given circuit. TLO 2.2 Calculate equivalent resistance for the \tgiven circuit. TLO 2.3 Categorize the given type of network TLO 2.4 Apply the Kirchhoff’s current law and \tKirchhoff’s voltage law to calculate the \telectrical quantities in the given circuit.\tUnit - II D.C. Circuits 2.1 Ohm’s Law, Internal resistance of source, internal voltage drop,       Terminal Voltage. 2.2 Resistance in Series, Resistance in Parallel.(Theory and        Numerical) 2.3 Active, Passive, Linear, Non-linear Circuit, Unilateral Circuit and       Bi-lateral Circuit, Passive and Active Network, Node, Branch,       Loop, Mesh. 2.4 Comparison of Kirchhoff’s Current Law, Kirchhoff’s Voltage Law       (Simple numericals).  (Chapter - 2) 3.\tTLO 3.1 Describe the construction of the given \ttype of capacitor. TLO 3.2 Explain the working of the capacitor in the \tgiven circuit. TLO 3.3 Calculate equivalent capacitance in the \tgiven D.C. circuit. TLO 3.4 Define Battery and state its types  \tand connections. TLO 3.5 Plot charging and discharging curves for the given capacitor and battery.\tUnit - III Capacitors and Battery 3.1 Capacitor, it’s construction, Parallel Plate Capacitor. 3.2 Various connections of capacitor. 3.3 Energy Stored in Capacitor. 3.4 Charging and Discharging of Capacitor. 3.5 Breakdown voltage and Di-electric strength. 3.6 Applications of Capacitor. 3.7 Types of battery, Construction, series and parallel connection        of Battery. 3.8 Charging and Discharging of Capacitor and battery.       (Chapter - 3) 4.\tTLO 4.1 Interpret the terms related to a magnetic \tcircuit. TLO 4.2 Calculate various parameters of the given \tmagnetic circuit. TLO 4.3 Compare the series and parallel magnetic \tcircuit based on the given criteria. TLO 4.4 Plot B-H curve and hysteresis loop of the \tgiven magnetic materials.\tUnit - IV Magnetic Circuits 4.1 Magnetic lines of force, Flux, Flux density, Magnetic flux       intensity. 4.2 Magneto-Motive-Forces (MMF), Ampere Turns (AT), Reluctance,       Permeance, Reluctivity. 4.3 Electric and Magnetic circuit :  Series Magnetic and Parallel       Magnetic Circuit. 4.4 Magnetization Curve (B-H Curve). 4.5 Magnetic Hysteresis, Hysteresis Loop, Applications.       (Chapter - 4) 5.\tTLO 5.1 Describe the use of Faraday’s laws of \telectromagnetic induction in the given \tapplication. TLO 5.2 Distinguish between the given type of \te.m.fs. TLO 5.3 Apply Faraday’s laws to calculate induced \te.m.f. in the given circuit. TLO 5.4 Calculate self-inductance and energy \tstored in the magnetic field of the given \tcircuit.\tUnit - V Electromagnetic Induction 5.1 Development of Induced e.m.f. and Current, Faraday’s Laws        of Electromagnetic Induction. 5.2 Static and dynamic emf, Lenz’s Law, Fleming’s Right hand rule. 5.3 Self Inductance, Coefficient of Self-inductance (L), Mutual        inductance, Coefficient of Mutual inductance (M), self  induced        e.m.f. and mutually induced e.m.f, Coefficient of Coupling. 5.4 Inductance in series. 5.5 Types of inductor, their application and Energy Stored in        Magnetic Field.   (Chapter - 5)\u003c\/p\u003e","brand":"Technical Publications","offers":[{"title":"Default Title","offer_id":48024571150628,"sku":"9789355855015","price":150.0,"currency_code":"INR","in_stock":true}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0671\/3661\/8788\/files\/9789355855015_1.jpg?v=1707204588","url":"https:\/\/bookstation.in\/products\/9789355855015","provider":"BookStation","version":"1.0","type":"link"}