{"product_id":"9789355854506-2","title":"Basic Science - Chemistry for MSBTE  K  Scheme (I - Common - 311305)","description":"\u003cp\u003eSyllabus Basic Science (Chemistry) - 311305   Learning Scheme\tCredits\tPaper Duration Actual Contact Hrs.\/Week\tSLH\tNLH\t\t \t\t\t\t CL\tTL\tLL\t\t\t\t \t\t\t\t\t\t 4\t-\t4\t2\t10\t5\t1.5   Assessment Scheme\t Theory\tBased on LL \u0026amp; TSL\tBased on SL\tTotal Marks \tPractical\t\t FA-TH\tSA-TH\tTotal\tFA - PR\tSA - PR\tSLA\t MAX\tMAX\tMAX\tMin\tMax\tMin\tMax\tMin\tMax\tMin\t 30\t70\t100\t40\t50\t20\t50\t20\t50\t20\t250   Unit\tTheory Learning Outcomes (TLO’s) Aligned to CO’s\tLearning Content Mapped with Theory Learning Outcomes (TLO’s) and CO’s Unit - I  Chemical Bonding\t1.1\tExplain the properties of given material based on the bond formation. 1.2 Describe the molecular       structure of given solid, liquid and gases. 1.3 Describe the crystal       structure of the given solids. 1.4 Explain properties of       metallic solid. \t1.1\tIndican Chemistry :\t Philosophy of atom by\t Acharya Kanad 1.2 Electronic theory of valency : Assumtions chemical bonds : Types and characteristics of electrovalent bond, covalent bond, coordinate bond,\t hydrogen bond, metallic bond and Intermolecular forces of attraction. 1.3\tMolecular arrangement in solid, liquid and gases. 1.4 Structure of solids : crystalline and amorphous solids, Properties of metallic solid, Unit cell : simple cubic, body center cubic (BCC), face center cubic (FCC), hexagonal close pack crystals.  \t(Chapter - 1) Unit - II Electrochemistry and Metal Corrosion, its Prevention\t2.1\tDescribe mechanism of electrolysis of CuSO4 solution by using cu and pt rods. 2.2\tSolve numerical based on Faraday’s first and second law of electrolysis. 2.3\tDistinguish between primary and secondary cell. 2.4\tDescribe the phenomenon of the given type of corrosion and its prevention. 2.5 Identify the different factors affecting rate of corrosion for the given type of material. 2.6 Select the protective measures to prevent the corrosion in the given corrosive medium.  \t2.1\tElectrolyte : Types of electrolyte, ionization and dissociation, Cathode, Anode, Electrode potential : oxidation and reduction, Mechanism of electrolysis : Electrolysis, Electrochemical series for cations and anions. Mechanism of electrolysis of CuSO4 solution. 2.2\tFaraday’s  laws of \t electrolysis :  Faraday’s first and second law, relation\t between electrochemical\t equivalent and chemical\t equivalent, Numerical.\t Applications of electrolysis :\t Electro-refining of copper and Electroplating. 2.3\tDifference between primary and secondary cell. 2.4\tCorrosion : Definition and Types of corrosion Dry corrosion : Mechanism, Types of oxide film, Wet corrosion : Mechanism hydrogen evolution in acidic medium, oxygen absorption in neutral or alkaline medium, Galvanic cell action by Daniel cell. 2.5 Factors affecting the rate of corrosion. 2.6\tCorrosion control :\t Modification of environment, Use of protective coatings, coating of less active metal like Tin (Tinning), coating of more active metal like Zinc (Galvanizing), Anodic and cathodic protection, Choice of material-using pure metal and using metal alloy.  \t(Chapter - 2) Unit - III Engineering Materials and Catalysis \t3.1\tIdentify the ingredients of the given paints. 3.2\tList out salient properties of the given paint and varnish. 3.3\tDescribe the properties of insulating materials for the given application. 3.4\tDifferentiate the given types of structural polymers. 3.5\tDescribe the polymerization process of the given polymer. 3.6\tExplain the properties and uses of the given polymer, elastomer and adhesive. 3.7\tDescribe the application of relevant adhesives required for the given material. 3.8\tSuggest the lubricant for various types of machines in industry. 3.9 Select the relevant catalyst for given application.\t3.1\tPaints : Purposes of applying paint, Characteristics of paints, Ingredients of paints, Function and examples of each ingredient. 3.2\tVarnish : Types, Difference between paint and varnishes. 3.3\tInsulators : Characteristics, Classification, Properties and Application of Glass wool Thermocol. 3.4\tPolymer and Monomer : Classification on the basis of Molecular structure, on the basis of monomers (homo polymer and copolymer), on the basis of Thermal behavior(Thermoplastics and Thermosetting). 3.5\tTypes Polymerization\t Reaction, Addition\t Polymerization, Condensation Polymerization, Synthesis,\t properties and application of Polyethylene, Polyvinyl\t chloride, Teflon, Polystyrene, Phenol formaldehyde, Epoxy Resin. 3.6\tAdhesives : Characteristics, \tClassification and their uses 3.7\tLubricants : Classification, properties and Applications. 3.8\tCatalysis : Types of catalysis homocatalysis , \theterocatalysis . 3.9\tCatalyst : Types of Catalyst Positive, Negative and\t Autocatalyst, Catalytic\t Promoter and Catalytic\t inhibitor, Industrial\t application of catalyst. 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