TP (AC) 2024
Textile Physics paper (YE 209) from BUTEX affiliated colleges' 2024 Level-2 Term-I finals. Covers CRL and CRE loading, swelling types with derivation, static charge measurement, birefringence by retardation, yarn packing, and Peirce cloth geometry assumptions.
TP (T&N) 2024
Textile Physics exam (YE 209) from BUTEX affiliated colleges' 2024 Level-2 Term-I finals. Covers static electricity minimization, thermal conductivity with wool comfort, Tg-Tm distinctions, infrared fibre investigation, and work of rupture numericals.
TP (BUTEX) 2024
Textile Physics-II exam (YME 329) from BUTEX's 2024 Level-3 Term-I finals, two hours and 70 marks. Questions address static electricity remedies, dielectric constants, jamming and crimp interchange derivations, packing fraction proofs, and Platt's equation limitations.
TP (AC) 2023
Two Textile Physics-II papers (YME-329) from BUTEX affiliated colleges, a two-hour 70-mark Level-3 exam. Questions cover static electricity, fibre migration measurement, idealized yarn geometry proofs, Peirce cloth models, and jamming conditions.
TP (AC) 2022
Textile Physics-II paper (YME 329), two hours and 70 marks, from BUTEX affiliated colleges' 2022 Level-3 Term-I finals. Questions address static electricity theories, fibre migration, twist effects on yarn, Peirce geometry derivations, and Platt's equation.
TP (AC) 2021
Textile Physics-II question paper (YME 329) from BUTEX affiliated colleges' 2021 Level-3 Term-I finals. Covers dielectric constants, static charge theories, yarn diameter and linear density relations, contraction factor numericals, Peirce model proofs, and drape coefficients.
TP (AC) 2020
Textile Physics-II exam (YME 329), two hours and 70 marks, from BUTEX affiliated colleges' 2020 Level-3 Term-I finals. Questions address dielectric properties, tracer fibre migration measurement, ideal yarn geometry proofs, and Peirce cloth geometry calculations.
TP (CU) 2014
Second-year irregular final examination (2014) in Textile Physics-I from the University of Chittagong. Questions address creep behaviour, stress-strain curves, moisture regain of cellulosic fibres, heat of wetting, and fibre friction.
TP (CU) 2012
Textile Physics-1 question paper (TE-207) from the University of Chittagong's 2012 second-year finals, 40 marks over two hours. Questions cover work of rupture, FTIR fibre structure investigation, glass transition comparisons, friction effects, and optical orientation factors.
TP (CU) 2011
Textile Physics-1 paper (TE 207) from University of Chittagong's 2011 second-year finals, two hours and 40 marks. Questions cover heat of sorption and wetting, swelling proofs, infrared absorption methods, torsional rigidity, dichroism, and luster factors.
TP (CU) 2010
Textile Physics-1 exam (TE 207) from University of Chittagong's 2010 second-year finals, two hours and 40 marks. Includes elastic and work recovery, swelling derivations, thermal expansion of thermoplastics, heat of sorption, and crystallinity measurement by X-ray diffraction.
TP (CU) 2009
Textile Physics-1 exam (TE-207) from University of Chittagong's 2009 second-year finals, two hours and 40 marks. Covers stress-strain curves, flexural and torsional properties, fibre structure investigation by X-ray and electron microscope, and swelling measurements.
TP (CU) 2008
Textile Physics-1 question paper (TE-207) from University of Chittagong's 2008 second-year finals, three hours and 40 marks. Covers fibre structure investigation methods, transverse swelling relations, dichroism, luster factors, and flexural property importance.