TUEE 2027 Syllabus & Exam Pattern: Programme-Wise Details

TUEE 2027 Syllabus

TUEE 2027 Syllabus: Tezpur University Entrance Examination (TUEE) for the 2027-28 academic session will be conducted in Computer-Based Test (CBT) mode at examination centres located in various cities across India. The candidates who are appearing for the TUEE 2027 must check the exam pattern and the syllabus from which questions will be asked.

ParticularsDetails
Exam ModeComputer-Based Test (CBT)
Duration2 Hours
Total Questions50 Questions
Question TypeMultiple Choice Questions (MCQs)
Options per Question4
Marks for Correct Answer+2 Marks
Negative Marking-0.5 Mark for each wrong answer
Descriptive QuestionsMay be included for some programmes

How will TUEE marking work?

Each correct answer will earn 2 marks, while 0.5 mark will be deducted for every incorrect answer. If all 50 questions are objective, the maximum possible score will be 100 marks. Candidates should therefore answer questions carefully because negative marking applies.

For some programmes, Tezpur University may also include a few descriptive-type questions in addition to the MCQs. Candidates should check the programme-specific examination details in the official prospectus before preparing.

TUEE 2027 Syllabus: Check Programme-Wise Syllabus for UG Courses

Tezpur University Entrance Examination (TUEE) 2027 is conducted for admission to various programmes at Tezpur University. If you are preparing for TUEE 2027, knowing the syllabus is important because the topics vary significantly according to the programme you choose.

The syllabus covers Design, Civil Engineering, Computer Science and Engineering, Electrical Engineering, Electronics and Communication Engineering, Mechanical Engineering, and Food Engineering and Technology programmes.

TUEE 2027 Syllabus and Exam Pattern

TUEE is conducted in Computer Based Test (CBT) mode. The examination is 2 hours long and generally consists of 50 questions. Each MCQ carries 2 marks, while 0.5 marks are deducted for every incorrect answer. Some programmes may also include descriptive questions.

BDes Design Syllabus

Candidates appearing for the Bachelor of Design (BDes) programme should prepare for:

  • Visualization and spatial reasoning
  • 2D and 3D shapes and spatial relationships
  • Scientific principles and everyday objects
  • Observation and design sensitivity
  • Classification, analysis, inference and prediction
  • Environment, society and cultural connections with design
  • Analytical and logical reasoning
  • Standard English reading and comprehension
  • Creativity, verbal and non-verbal analogies, metaphors, signs and symbols

BTech Civil Engineering – Lateral Entry

The Civil Engineering syllabus includes Mathematics and core Civil Engineering subjects.

  • Mathematics: Complex numbers, partial fractions, permutation and combination, binomial theorem, series, trigonometric ratios, properties of triangles, volume and surface area, coordinate geometry, functions, differentiation, integration, general aptitude and reasoning.
  • Civil Engineering: Building construction and materials, civil engineering drawing, surveying, structural mechanics, hydraulics, concrete technology, transportation engineering, RCC structure design, geotechnical engineering, steel structure design, environmental engineering and pollution control, and water resources engineering.

BTech Computer Science and Engineering – Lateral Entry

The syllabus covers 10+2-level Physics and Mathematics, along with:

  • C/C++ programming
  • Algorithms and data structures
  • Arrays, stacks, queues and linked lists
  • Sorting, selection and searching
  • Digital logic, logic gates, Boolean algebra and number systems
  • Computer networks, classifications, topology, OSI and TCP/IP basics
  • Database Management Systems, ER model and relational model
  • Query languages
  • Communicative English

BTech Electrical Engineering – Lateral Entry

Electrical Engineering preparation includes DC and AC circuit analysis, three-phase circuits, transformers, DC generators, DC motors, and induction motors. Important areas include Ohm’s law, KCL, KVL, circuit parameters, series and parallel circuits, nodal and loop analysis, network theorems, Thevenin and Norton theorems, maximum power theorem, phasors, RLC circuits, resonance, active and reactive power, three-phase Y and Δ circuits, transformers, generator characteristics, DC motor speed control, and induction motor slip and torque-speed characteristics.

  • The syllabus also includes: Physics: Vector analysis, collisions, vibration and acoustics, electromagnetic theory, Maxwell’s equations, quantum mechanics, solid-state physics, superconductivity, diffraction and special relativity.
  • Mathematics: Differential calculus, ordinary and partial differential equations, linear and non-linear differential equations, Fourier series and matrices.

BTech Electronics and Communication Engineering – Lateral Entry

The ECE syllabus is broad and includes:

  • Electrical and electronic materials and components
  • Semiconductors, conductors and insulators
  • Passive components
  • Electronic devices, BJTs and FETs
  • Network analysis and network theorems
  • Electronic measurements and instrumentation
  • Analog electronic circuits
  • Digital electronic circuits
  • Boolean algebra, Karnaugh maps and logic circuits
  • Flip-flops, counters and registers
  • A/D and D/A converters
  • Control systems
  • Communication systems
  • Fourier series, modulation and sampling
  • Computer architecture and microprocessors
  • 8085 architecture and assembly language programming

BTech Mechanical Engineering – Lateral Entry

Mechanical Engineering covers several core engineering areas.

  • Engineering Mechanics: Force systems, moments, equilibrium, free-body diagrams, kinematics, kinetics, Newton’s laws and energy.
  • Solid Mechanics: Stress, strain, Hooke’s law, Poisson’s ratio, elastic constants, and stress-strain relationships.
  • Machine Design and Theory of Machines: Joints, gears, belt drives, brakes, bearings, mechanisms, machines, flywheels, friction and kinematic analysis.
  • Thermodynamics: Thermodynamic systems, laws of thermodynamics, cycles, entropy, Carnot cycle, heat engines, refrigerators and heat pumps.
  • Heat Transfer: Conduction, convection, radiation, heat exchangers, fins and mass transfer.
  • Fluid Mechanics: Fluid properties, pressure, fluid flow, Bernoulli’s equation, flow measurement, dimensional analysis, boundary layers, turbines and pumps.

The syllabus further includes IC engines, materials science, manufacturing technology and industrial engineering, including production systems, plant layout, PERT, CPM, production control and material handling.

BTech Food Engineering and Technology – Lateral Entry

For Food Engineering and Technology, the syllabus is divided into Part-I and Part-II.

Part-I: General Engineering – 40% Weightage

This section covers:

  • Thermodynamics
  • Heat and mass transfer
  • Fluid mechanics
  • Refrigeration and air conditioning
  • Steam and psychrometrics
  • Heat exchangers
  • Fick’s law of diffusion
  • Fluid flow, viscosity, Bernoulli’s equation and Reynolds number
  • Pipes, pumps and their applications

Part-II: Food Engineering and Technology – 60% Weightage

This section carries the higher weightage and includes:

  • Food Engineering Operations: Size reduction, mechanical separation, mixing, emulsification, homogenization, filtration, membrane separation, sedimentation, centrifugation, crystallization, extraction, distillation, evaporation, drying and dehydration.
  • Food Microbiology: Bacteria, pure culture techniques, microbial growth, growth curves, disinfecting agents, enzymes, biotechnology and fermentation.
  • Food Chemistry: Carbohydrates, proteins, amino acids, lipids, vitamins, minerals, food spoilage and food preservation.
  • Food Product Technology: Rice and wheat milling, malting, storage, quality control and assurance, HACCP, food adulteration, food analysis and important standards and organisations including BIS, AGMARK, FPA, PFA, FAO and FSSAI.

How to Prepare for TUEE 2027?

TUEE 2027 preparation should begin with the syllabus of the specific programme you are applying for. Make a topic-wise study plan and revise core concepts before moving to practice questions. Since the exam has negative marking, regular MCQ practice can also help you improve accuracy and avoid unnecessary attempts.

Final Words

The TUEE 2027 syllabus is programme-specific, so students should not follow a common preparation strategy for every course. Engineering candidates should focus strongly on their respective core subjects, while BDes aspirants should give more attention to visualization, reasoning, observation, language and creativity. Food Engineering candidates should particularly note the 40% General Engineering and 60% Food Engineering & Technology division.

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