{"product_id":"9789355857767","title":"Applied Mathematics  for MSBTE  K  Scheme (II - Common - 312301)","description":"\u003cp\u003eSyllabus \tApplied Mathematics - (312301)  Learning Scheme\t    Credits\tAssessment Scheme Actual Contact Hrs.\/Week\t   SLH\t   NLH\t\t  Paper Duration\tTheory\tBased on LL \u0026amp; TL\tBased on SL\tTotal Marks  CL\t TL\t LL\t\t\t\t\t\tPractical\t\t \t\t\t\t\t\t\tFA-TH\tSA-TH\tTotal\tFA-PR\tSA-PR\tSLA\t \t\t\t\t\t\t\tMax\tMax\tMax\tMin\tMax\tMin\tMax\tMin\tMax\tMin\t 3\t1\t-\t-\t4\t2\t3\t30\t70\t100\t40\t-\t-\t-\t-\t-\t-\t100  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 Solve the given simple problem(s) based on rules of integration. TLO 1.2 Evaluate the given simple integral(s) using substitution method. TLO 1.3 Integrate given simple functions using the integration by parts. TLO 1.4 Solve the given simple integral by partial fractions.\tUnit - I Indefinite Integration 1.1 Simple Integration : Rules of integration and integration of standard functions. 1.2 Integration by substitution. 1.3 Integration by parts. 1.4 Integration by partial fractions.       (only linear non repeated factors at denominator of         proper fraction). (Chapter - 1) 2.\tTLO 2.1 Solve given examples based on \tdefinite Integration. TLO 2.2 Use properties of definite integration \tto solve given problems. \tUnit - II Definite Integration 2.1 Definite Integration : Definition, rules of definite integration with simple examples. 2.2 Properties of definite integral (without proof) and simple examples.  (Chapters - 2, 3) 3.\tTLO 3.1 Find the order and degree of given \tdifferential equations. TLO 3.2 Form simple differential equation for\tgiven elementary engineering \tproblems. TLO 3.3 Solve given differential equations using \tthe methods of Variable separable \tand \tExact Differential Equation (Introduce \tthe concept of partial differential \tequation). TLO 3.4 Solve given Linear Differential Equation.\tUnit - III Differential Equation 3.1 Concept of Differential Equation. 3.2 Order, degree and formation of Differential equations. 3.3 Methods of solving differential equations : Variable separable           form, Exact Differential Equation, Linear Differential Equation.      (Chapters - 4, 5) 4.\tTLO 4.1 Find roots of algebraic equations by using \tappropriate methods.  TLO 4.2 Solve the system of equations in three \tunknowns by iterative methods. TLO 4.3 Solve problems using Bakhshali \titerative methods for finding \tapproximate square root. (IKS)\tUnit - IV Numerical Methods 4.1 Solution of algebraic equations : Bisection method, Regula Falsi        method and Newton - Raphson method. 4.2 Solution of simultaneous equations containing three Unknowns        by Iterative method : Gauss Seidal and Jacobi’s method. 4.3 Bakhshali iterative methods for finding approximate square root.(IKS) (Chapters - 6, 7) 5.\tTLO 5.1 Solve given problems based on repeated \ttrials using Binomial distribution. TLO 5.2 Solve given problems when number of \ttrials are large and probability is very \tsmall. TLO 5.3 Utilize the concept of normal distribution \tto solve related engineering problems.\tUnit - V Probability Distribution 5.1 Binomial distribution. 5.2 Poisson’s distribution. 5.3 Normal distribution. (Chapter - 8)\u003c\/p\u003e","brand":"Technical Publications","offers":[{"title":"Default Title","offer_id":48024570986788,"sku":"9789355857767","price":316.0,"currency_code":"INR","in_stock":true}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0671\/3661\/8788\/files\/9789355857767_1.jpg?v=1707204584","url":"https:\/\/bookstation.in\/mr\/products\/9789355857767","provider":"BookStation","version":"1.0","type":"link"}