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Rajasthan Polytechnic 2024 Syllabus (Available), Section & Subject Wise Syllabus – Check Here

By: Sunil Kushwaha

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The Rajasthan Polytechnic 2024 system is provided by the Directorate of Technical Education(DTE), Rajasthan. The exam constitutes the courses namely various technical/ engineering and non-engineering courses. The exam is held for those students who are seeking a career in the polytechnic field.

The Rajasthan Polytechnic syllabus 2024 will be made known by the Directorate of Technical Education (DTE). Through the syllabus, the students get to know the pattern of questions according to which they can prepare for the exam.

Before they set the timetable, it would be making sense to know the total topics covering the syllabus. Here the page is provided with the whole syllabus of Rajasthan Polytechnic 2024.

English and Communication Skills Syllabus

  • Narration
  • Transformation of sentences
  • Tenses
  • Common errors
  • Modals
  • Phrases
  • Idioms
  • Letter writing
  • Essay writing

Applied Physics Syllabus

  • Units and dimensions
  • Elasticity
  • Properties of liquids
  • Gravitation of satellites
  • Sound waves
  • Transfer of heat
  • Electro statistics
  • DC Circuits
  • AC Circuits
  • Semiconductor physics
  • Modern physics
  • Nuclear physics
  • Pollution and its control

Applied Chemistry Syllabus

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  • Atomic structure
  • Development of periodic table
  • Electrochemistry
  • Kinetic theory of gases
  • Carbon chemistry
  • Metals & Alloys
  • Pollution
  • Water
  • Fuels
  • Corrosion
  • Polymers
  • Cement and glass
  • Lubricant
  • Miscellaneous materials
  • New engineering materials

Applied Mathematics Syllabus

  • Introduction to different types of expansion
  • Complex number
  • Trigonometry
  • Matrices and determinants
  • Numerical integration
  • Two-dimensional coordinate geometry
  • Conic
  • Function
  • Differential calculus and its applications
  • Integral calculus
  • Differential equation
  • Vector algebra

Computer and Information Technology Fundamentals Syllabus

  • Introduction to computer
  • Operating system
  • Introduction to Windows XP
  • Information concepts and processing
  • Computer and communication
  • Internet
  • Information processing
  • Powerpoint

Applied Mechanics Syllabus

  • Force
  • Coplanar forces
  • Moment
  • Application of principles of forces and moments
  • Center of gravity
  • Friction
  • Simple machines
  • Rectilinear motion
  • Motion under gravity
  • Projectiles
  • Newton’s law of motion
  • Impact and collision
  • Circular motion
  • Work, energy, and power

Engineering Drawing Syllabus

  • Introduction to drawing instruments
  • Lines, lettering, and dimensioning
  • Geometrical construction and engineering curves
  • Scales
  • Theory of orthographic projections
  • Projection of lines
  • Projection of plane
  • Projection of solids
  • Conversion of pictorial views into orthographic views
  • Section of solid and development of surfaces
  • Isometric conversion
  • Sections and conventions
  • Rivets and riveted joints
  • Screw, threads, and fasteners
  • Foundation bolt and locking devices
  • Keys and pulleys
  • Shaft couplings
  • Bearings
  • Building drawing

Polytechnic Diploma Course First Semester Syllabus 

101 English & Communication Skills
102 Applied Physics
103 Applied Chemistry
104 Applied Mathematics
105 Computer & Information Technology Fundamentals
106 Applied Mechanics
107 Engineering Drawing
108 Workshop Practice
109 Electrical & Electronics Workshop

English & Communication Skills
1. Narration, Voice, Basic Sentence Patterns. (Nine basic 5 sentence patterns)

2. Transformation of Sentences, Determiners, Preposition. 7

3. Tenses, Common errors (Nouns, Pronouns, Articles, 7 adverbs, Punctuation, Preposition, etc.)

4. Modals in Conversational Usage, Prefix, Suffix, 4 Idioms & Phrasal verbs :
Modals
Can, Could, Should, Will, Would, May, Might, Must, Need not, Dare not, Ought to, Used to.

Phrases
At all; Instead of; Despite; As well as; Set up; Upset; Lookup; Call off; Call out; Come across; Set right; Look other.

Idioms
Work up (excite); Break down; Stand up for; Turn down; Pass away; Pass on; Back up; Back out; Carry out; Done for (ruined); Bring about; Go through; Ran over; Lookup (improve); Pick out (selected).

5. Composition – 1. Unseen Passage, Precis Writing 2

6. Letter Writing, Paragraph Writing, Report Writing 3

7. Essay Writing – Essays on general and local topics related 2 to environmental problems.

Applied Physics

1. Units and Dimensions: 6
1.1 Idea of various systems of units
SI units – Basic, Supplementary and Derived Units, Prefixes & Symbols
1.2 Dimensions and Dimensional Formulae
1.3 Principle of Homogeneity of Dimensions
1.4 Dimensional Analysis
1.5 Applications and Limitations

2. Elasticity: 4
2.1 Elasticity
2.2 Stress and Strain
2.3 Elastic Limit & Hooke’s law
2.4 Young’s Modulus, Bulk Modules & Modulus of Rigidity, Poisson’s Ratio

  • Rajasthan Board of Diploma Civil Engineering second-year syllabus

Simple Stress and Strain:
1.1 Various mechanical properties
1.1.1 Elasticity
1.1.2 Plasticity
1.1.3 Ductility
1.1.4 Brittleness
1.1.5 Toughness
1.1.6 Hardness
1.2 Concept of stress and strain
1.2.1 Type of force – Direct, shear
1.2.2 Stress – Tensile, compressive, shear
1.3 Hook’s law
1.3.1 Statement of Hook’s law
1.3.2 Young’s modulus of elasticity
1.3.3 Tensile test diagram
1.3.3.1 Gauge length
1.3.3.2 Limit of proportionality
1.3.3.3 Elastic limit
1.3.3.4 Yield point, Yield strength
1.3.3.5 Ultimate stress
1.3.3.6 Rupture strength
1.3.3.7 Nominal stress
1.3.3.8 Proof stress
1.4 Working Stress and factor of Safety
1.5 Stress and strain calculations
1.5.1 Principle of superposition
1.5.2 Bar of homogeneous section
1.5.2.1 Bar of uniform cross-section
1.5.2.2 Bar of a steeped cross-section
1.5.3 Bar of the composite section
1.6 Temperature stresses
1.6.1 Homogeneous section
1.6.2 Composite section
1.7 Shear stresses
1.7.1 Modulus of rigidity
1.7.2 Complementary shear stress
1.7.3 Concept of single-shear and double-shear
1.7.4 Shear strain
1.8 Poisson’s ratio and volumetric strain
1.8.1 Lateral strain
1.8.2 Longitudinal strain
1.8.3 Volumetric strain
1.8.4 Bulk modulus
1.9 Relationship between elastic constants (Derivation)
1.9.1 E=3K(1-2/m)
1.9.2 E=2N(1+1/m)
1.9.3 E=9KN/(3K+N)

Compound Stress:

2.1 Introduction
2.2 Stress components on an inclined plane
2.2.1 Induced by direct stresses
2.2.2 Induced by simple shear
2.2.3 Induced by direct and simple shear stresses
2.3 Mohr’s circle:
2.3.1 For like direct stresses
2.3.2 For unlike direct stresses
2.3.3 For two perpendiculars direct stresses with a state of simple shear
2.4 Principal stresses and planes
2.4.1 Major principal stress
2.4.2 Minor principal stress
2.4.3 Mohr’s circle method for principal stresses

Strain Energy:

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3.1 Introduction
3.2 Strain energy from the stress-strain diagram
3.3 Proof resilience
3.4 Types of loading – gradual, sudden, impact
3.4.1 Stress in Gradual Loading
3.4.2 Stress in Sudden Loading
3.4.3 Stress in impact loading

Bending Moments and Shear Force:

4.1 Basic concept
4.1.1 Types of support
4.1.1.1 Movable hinge support (roller)
4.1.1.2 Immovable hinge support
4.1.1.3 Fixed support
4.1.2 Types of beam
4.1.2.1 Cantilever beam
4.1.2.2 Simply supported beam
4.1.2.3 Fixed-beam
4.1.2.4 Continuous beam
4.1.2.5 Overhanging beam
4.1.3 Types of Load
4.1.3.1 Point load
4.1.3.2 Distributed load – uniformly and non-uniformly
4.2 Shear force and bending moment
4.2.1 Concept and calculation of shear force and bending moment
4.2.2 Sign convention for shear force and bending moment
4.3 Bending moment and shear force diagrams (for point loads, U.D.L. and their combinations)
4.3.1 Cantilever beam
4.3.2 Simply supported beam
4.3.3 Simply supported beam with overhang

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