R23
CE · 4-1
23CE28
✓ VERIFIED VS. PUBLISHED SYLLABUS 2026-07-12
Prestressed Concrete
JNTUK R23 · CE · semester 4-1 · syllabus
This JNTUK R23 professional elective is listed for Civil Engineering (CE). It is listed in semester 4-1. It carries 3 credits. The published coverage runs across 5 units, from Unit I through Unit V.
Verified vs. published syllabus
Checked 12 Jul 2026
SOURCE DOCKET
Published evidence
✓ Verified
Checked 12 Jul 2026
Record Course 23CE28 · 5 published units
Verification scope The course structure, credits, and unit-wise syllabus are sourced directly from JNTUK's official R23 Civil Engineering course structure and syllabus.
5 units, from Unit I to Unit V. Tick off units as you cover them — your progress stays on this device.
Unit-wise syllabus
0 / 5 COVERED
UNIT 01 — Unit I
Flexural, shear; Torsional resistance and design of Prestressed concrete section. Types of flexural failure– code procedures‐ shear and principal stresses– Prestressed concrete members in torsion– Design of sections for flexure, Axial Tension, Compression and bending, shear, Bond
UNIT 02 — Unit II
Analysis of continuous beams –Elastic theory‐ Linear transformation and Concordant tendons‐Deflections of pre‐stressed concrete beams: Importance of control of deflections‐ factors influencing deflections ‐short term deflections of un‐cracked member–prediction of long term deflections.
UNIT 03 — Unit III
Analysis of end blocks: By Guyon’s method and Magnel’s method, Anchorage zone stresses‐ Approximate method of design‐anchorage zone reinforcement‐transfer of prestresses‐ pretensioned members‐Composite sections: Introduction Analysis for stresses‐ differential shrinkage‐ general design considerations.
UNIT 04 — Unit IV
Statically Indeterminate Structures: Advantages of Continuous Members— Effect of Prestressing Indeterminate Structures‐‐Methods of Achieving Continuity‐‐ Definitions of Common Terms‐‐Methods of Analysis of Secondary Moments‐‐‐Concordant Cable Profile‐ Guyon’s Theorem‐‐ Effect of Axial Deformation and Tertiary Moments‐‐‐Ultimate Load Analysis of Continuous Prestressed Members ‐‐‐Determination of Concordant Tendon Profile‐‐ Design of Continuous Prestressed Concrete Beams‐‐‐Design of Prestressed Portal Frames.
UNIT 05 — Unit V
Composite Construction of Prestressed and in situ Concrete: Composite Structural Members Types of Composite Construction ‐‐Analysis of Stresses‐‐Differential Shrinkage ‐‐‐Deflection of Composite Members ‐‐ Stresses at Serviceability Limit State‐‐‐ Flexural Strength of Composite Sections ‐‐ Shear Strength of Composite Sections ‐‐ Design of Composite Sections.