Conrad, Carl M., Role of velocity gradient in determining the cuprammonium fluidity of cellulose. Ind. Eng. Chem., Anal. Ed.13, 526-33 (1941).
2.
Fuwa, T., Some tensile properties of cotton yarn. Textile World64, 3577, 3579, 3581 (Dec. 15, 1923).
3.
Gralen, N., and Svedberg, The, The molecular weight of native cellulose. Nature152, 625 (1943).
4.
Haas, Heinz, Beiträge zur Kenntnis der Einwirkung der Wärme auf die Baumvolle. Dissertation, Würzburg, June, 1935.
5.
Knecht, E., and Muller, E.F., Some further notes on the action of heat on cotton cellulose. J. Soc. Dyers and Colourists41, 43-7 (Feb. 1925 ).
6.
Kraemer, E., Molecular weights of cellulose and cellulose derivatives. Ind. Eng. Chem.30, 1200-3 (1938).
7.
Lemon, B.J., and Robson, J.J., Ordnance keeps 'em rolling. India Rubber World109(5), 463-7472 (1944).
8.
Philippoff, W., Die Bedeutung der Viscosität für die Chemie der Cellulose. Cellulosechem.17, 57-77 (1936).
9.
Tiltman, A.H. , and Porritt, B.D., The effect of heat on cotton. Initial changes in tensile strength of unproofed fabric. IndiaRubber J.76, 245-8 (1928).
10.
Truesdale, R.A., The influence of heat on physical properties of yarns. Textile Recorder40 (472), 52-4 (Aug. 15, 1922).