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January 14th, 2016, 09:26 AM
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Join Date: Mar 2012
EAMCET Weightage For

I want to get information about the EAMCET weightage Formula as well as Intermediate weightage Formula. So here can you provide me information about it?

As per your request here I am providing you information about the EAMCET weightage Formula as well as Intermediate weightage Formula.

Here I am telling you about it as you want.

EAMCET weightage Formula:

Applicants EAMCET score x 75/160.
Thus, to calculate the actual contribution of your marks in the total EAMCET score, multiply the same by 0.46875.


Intermediate weightage Formula:

Applicants Intermediate score x 25/600. Thus, to calculate the actual contribution of your marks in the total EAMCET score, multiply the same by 25 and divide by 600.

EAMCET Weightage Calculator
Total Score = EAMCET weightage + Intermediate weightage
Total score obtained by a applicants is the summation of EAMCET weightage and Intermediate weightage.
The maximum score is 100.

Physics

1st Year

Measurements, Units And Dimensions: We can expect 1-2 bits in this chapter. (Better to learn basics and leave the chapter for slow learners)
Elements of Vectors: In this Chapter we can expect 2-3 bits, this chapter is the subset of the vectors in Mathematics so learning this chapter in Mathematics can be useful even in Physics
Kinematics: The most easy topic - just a few formulae and any problem can be solved. Important models include not only but also Pulley-Rope Problems, Block Problems etc. In this chapter 2-3 Questions are expected.
Dynamics: In this chapter, we can expect 3-4 questions. Concentrating on Kinetic Energy and Potential Energy, at least 1-2 problems can be answered.
Collisions: A mark can easily be scored if the chapter is given a little attention. Topics like Co-efficient of Restitution are favorite topics for examiners.
Center of Mass (CM): Another mark is for sure from this topic.
Friction: 1-2 marks are expected off this topic. Slightly tricky. Easy if understood. Difficult otherwise.
Rotatory Motion: 1-2 Questions expected. Even from the Engineering syllabus point of view, the primary topic in the 1st Year of Engineering is based on this topic. So be sure to get grip on Moment of Inertia Problems.
Gravitation: Simple topic. Can expect 1 bit from this chapter. Formulae is everything
Simple Harmonic Motion (SHM): Roughly has 3-4 Models in the entire syllabus. Concentrate on Fundamentals.
Elasticity: 1 Bit is expected and it is based on basic formula that is within the reach of the syllabus.
Temperature And Thermal Expansion of Materials: 1-2 bits are expected from this chapter.
Thermo Dynamics: 1 bit is expected and will be based on a very basic formula in most cases.
Transmission of Heat, Surface Tension: 3 bits expected from these 2 chapters. Only basic formulae and can easily be scored.

2nd Year

Fluid Mechanics: Problems are based on Bernoulli's theorem. 2 questions are expected from this chapter.
Wave Motion: String Laws, Vibrating Strings, Harmonics etc., we can expect a theory bit for this chapter. So 2-3 questions from this unit.
Optics: One of the most important topics next only to Current Electricity. 2-3 Questions are expected from this chapter.
Physical Optics: 2-3 bits are expected. Topics like polarization phenomenon are important.
can be asked.

Atomic Physics: 1 bit is expected from this chapter from topics like Nuclear Fusion, Nuclear Fission, Characteristic X-Ray Spectra, Moseley's Law and its importance etc.

Nuclear Physics: 1 bit is for sure in this chapter. Mostly a theory bit.
Semi-Conductor Devices, Communication Systems: 2-3 bits expected from these chapters. Can be general also.

Magnetism: 3-4 easy bits expected from this chapter.
Electronics: One of the important topics. 3-4 bits expected from this chapter.
Current Electricity: A large number of problems are expected from this chapter. 1 bit is for sure in computing the net resistance in a given circuit.
Thermo Electricity: Seebeck Effect, Thomson's Effect etc., a bit is expected in theory of this chapter.
Electromagnetics: 3-4 bits are expected from this chapter as a large variety of problems

Chemistry

Atomic Structure :- We can expect 1 or 2 bits in this chapter. In this chapter, one must be perfect in concepts like characteristics of Hydrogen spectrum, Debroglies Hypothesis, Uncertainty Principle and Wave Functions

Concept of Equivalent Weight
Percentage composition of compounds and calculation of emperical and molecular formulae of compunds
Balancing of Red-Ox reactions by ion electron method and oxidation number method
Red-Ox reactions and electrode processes

States of Matter / Gases :- In this chapter, we expect 2-3 bits. Preference should be given to calculations. The main concepts are Ideal Gas Equations, Average, Root Mean Square and Most Probable Velocity

Solutions :- We may expect 1-2 bits from this chapter. Concentration must be more on topics like Raoult's Law, RLVP, Elevation of Boiling POint, Depression in freezing point, Osmosis, Abnormal molar mass etc.

Electro Chemistry :- A very important chapter. 3-4 bits are expected. Some of the important topics in this chapter are.. Equivalent and Molar Conductance, Kohlrausch's Law, Electrolytes and Non-Electrolytes, Red-Ox reactions, Faraday's laws, Electrochemical series (very important), Nernest Equation.


Classification of Elements and Periodicity in Properties :- In this chapter 1 or 2 theory bits based on the concept of Periodic trends in physical and chemical properties of elements - Atomic Radii, Ionic Radii, Inert Gad Radii, Ionization Energy, Electron gain energy, Electronegativity - Metallic and Non-Metallic Nature, Nature of Oxides, Diagonal relationship.

Chemical Bonding and Molecular Structure :- This is very important chapter for the concept which could be applied else where. The main concepts here are Crystal Lattice Energy Calculation, Born Habers' Cycle, VESPR theory and Hydrogen Bonding.

Stoichiometry :- This is very problematic and important chapter. One needs to know the formulae thoroughly and need to perform calculations faster. 3-4 questions are expected. The main concepts are :


Solid State :- 2-3 bits are expected from this topic. Seven Crystal Systems, Bragg's Equation, Calculation of Density, Packing of solids and voids, point and crystal defects, electrical and magnetic properties.

Chemical Kinetics :- In this topic we have two sub-topics - Chemical Equilibrium and Acids & Bases... Some of the important topics in chemical kinetics factors affecting reaction rates, Rate law, Units of rate constant, Order and molecularity..


Surface Chemistry :- 2 marks can easily be answered if some attention is paid towards the below topics :

Difference between Physical and Chemical Adsorption
Catalysis
Difference between True and Colloid Solutions
Examples of some colloidal solutions
Emulsions and Micelles
+ve and -ve charged sols
Hardy Schulze law.

Hydrogen And Its Compounds :- 1 or no bits expected from this topic. Going through the lines in text-book is enough

Alkali And Alkaline Earth Metals :- II A Group Elements. 1 or no theory bits expected.

p-Block Elements - Group 13 to 17 Elements - 3,4,5,6,7A Group Elements :- We may expect 5-6 bits for all these chapters. The following properties of each group needs some special focus

Study perfectly all the equations because they can be asked in multiple concept questions indirectly
Oxides, Halides and Hydrides formation reactions
Preparations of their compounds

Equilibrium :- 1 bit is expected. It is better to concentrate on the law of mass action, activation energy, order and molecularity, relation between Kp and Kc, LeChatlier's Principle.
Acids & Bases :- We can expect 2-3 bits. Some of the important topics are conjugate acid base pairs and their relative strengths, ionic product of water, buffer solutions, buffer capacity, solubility effect and common ion effect.

Thermodynamics :- 1-2 bits are expected from this topic. The Telugu Akademy text book has enough content for this topic. Go through line by line for better scoring. Some important topics are - calculating the enthalpy, exothermic and endothermic reactions, Cp and Cv relation, Hess' law and Gibbs Free Energy.


Group 18 Elements - Noble Gases :- 1 or no bits expected from this topic.

Transition Elements - d-Block Elements :- 2-3 bits expected. Some important aspects of this chapter are :

General Characteristics
Colors of visible radiation
Magnetic Properties
Alloys
Inner Transition (Lanthenides) - Lanthenide Contraction
Coordinate Compounds - IUPAC nomenclature theory - Bonding and EAN Rule
Isomerism

General Principles of Metallurgy :- 1-2 bits are expected. Some important topics are - concentration methods (froath floatation, liquation), reverboratary and blast furnaces, extraction of copper, zinc, iron, steel and silver

Environmental Chemistry :- 1 bit is expected. Go through the text-book line by line.

Basic Principles and Techniques in Organic Chemistry :- The basic chapter of Organic Chemistry. A bit is expected from IUPAC Nomenclature, substitution, addition, elimination and rearrangement reactions with examples, Inductive effect, Electromeric effect, Resonance and Hyperconjugation.

Hydrocarbons :- 2-3 bits from this chapter are expected. Important topics - General Properties of Alkanes, Cycloalkanes, Alkenes, Cis-Trans Isomerism etc.,

Alkynes & Aromatic Hydrocarbons :- 1-2 bits from this topic. Better to concentrate on Benzene, Resonance and Aromaticity, Chemical Properties, Aromatic Hydrocarbons - Introduction, IUPAC Nomenclature, addition reaction of - Hydrogen, halogens, Hydrogen Halides and Water.

Stereo Chemistry :- 1-2 bits are expected.

Halo Alkanes & Halo arenes, Alcohols / Phenols and Ethers, Aldehydes and Ketones, Carboxylic Acids, organic Compounds Containing Nitrogen - Nitrobenzene :- 8-9 bits in all are expected. Concentrate on formation reactions, reactions with other compounds.

Polymers & Biomolecules :- 3-4 bits are expected. Complete theory bits. Read Proteins, Vitamins, Carbohydrates, Nucleic Acids, DNA, RNA etc

Chemistry on Everyday Life :- 2 bits from this chapter. Text-Book Reading is sufficient.

Last edited by Neelurk; February 13th, 2020 at 09:40 AM.
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