Paffenbarger, G.C., and Sweeney, W.T.: American Dental Association Specifications for Dental Materials, ed. 2, Chicago, III., 1956, American Dental Association, pp. 17-18.
2.
Gray, A.W.: Metallographic Phenomena Observed in Amalgams, J. Nat. D. A. 6: 513, 909, 1919.
3.
Ward, M.L., and Scott, E. 0.: Effects of Variations in Manipulation on Dimensional Change, Crushing Strength, and Flow of Amalgams, J. A. D. A. 19: 1683, 1932.
4.
Ward, M.L., and Scott, E. 0.: Further Studies of the Effect of Variations in Manipulation on Dimensional Changes and Flow of Amalgams, J. A. D. A. 22: 1164, 1935.
5.
Ward, M.L., Peyton, F.A., and Scott, E. 0.: New Concepts of Mercury Content in Amalgams, J. D. Res. 16: 316, 1937.
6.
Souder, W., and Sweeney, W.T.: Is Mercury Poisonous in Dental Amalgams? D. Cosmos73: 1145, 1931.
7.
Gayler, M.L.V. : The Setting of Dental Amalgams. IV, Brit. D. J. 58: 245, 1935.
8.
Worner, H.K., and Anderson, J.S.: The Influence of Some Manufacturing Variables on the Properties of Dental Amalgams, Australia Dent. J. 43: 269, 1939.
9.
Phillips, R.W. : Physical Properties of Amalgam as Influenced by the Mechanical Amalgamator and Pneumatic Condenser, J. A. D. A. 31: 1308, 1944.
10.
Phillips, R.W. , and Boyd, D.A.: Importance of the Mercury-Alloy Ratio to the Amalgam Filling, J. A. D. A. 34: 451, 1947.
11.
Strader, K.H. : Amalgam Alloy: Its Heat Treatment, Flow, Mercury Content and Distribution of Dimensional Change, J. A. D. A . 28: 1463, 1941.
12.
Stenbeck, S.: Bidrag till Kannedomen om Dentala Amalgam, Stockholm, 1950, A-B. Fahlcrantz , pp. 43-65, 84, 105, 106,117, 124, 133, and diagrams.
13.
Ware, A.L., and Docking, A.R.: The Effect of Manipulative Variables on Dental Amalgams. I, Australia Dent. J. 58: 283, 1954.
14.
Idem: The Effect of Manipulative Variables on Dental Amalgams. II, Australia Dent. J. 58: 355, 1954.
15.
Caul, H.J., and Schoonover, I.C. : Analysis of Dental Amalgams Containing Mercury, Silver, Gold, Tin, Copper, and Zinc, J. Res. Nat'l Bureau Standards26: 481, 1941.
16.
Phillips, R.W. , and Swartz, M.L.: Mercury Analysis of One Hundred Amalgam Restorations, J. D. Res. 28: 569, 1949.
17.
Ryge, G., Dickson, G., Smith, D.L., and Schoonover, I.C. : Dental Amalgam: The Effect of Mechanical Condensation on Some Physical Properties, J. A. D. A. 45: 269, 1952.
18.
Crawford, W.H. , and Larson, J.H.: Residual Mercury Determination Process , J. D. Res. 32: 713, 1953.
19.
Idem: Dental Restorative Materials: Amalgams, Acrylics, J. D. Res. 33: 414, 1954.
20.
Swartz, M.L. , and Phillips, R.W.: A Study of Amalgam Condensation Procedures With Emphasis on the Residual Mercury Content of the Increments, J. D. Res. 33: 12, 1954.
21.
Idem: Residual Mercury Content of Amalgam Restorations and Its Influence on Compressive Strength , J. D. Res. 35: 458, 1956.
22.
Von Hevesey, G.: Chemical Analysis by X-Rays and Its Applications , New York, N. Y., 1932, McGraw-Hill Book Co.
23.
Barrett, C.S.: Structure of Metals, ed. 2, New York, N. Y., 1952, McGraw-Hill Book Co.
24.
Semat, H.: Introduction to Atomic Physics, New York, N. Y., 1952, Rinehart & Co., Inc.
25.
X-Rays as an Analytical Chemical Tool.Symposium on X-Rays as an Analytical Chemical Tool, presented before the Division of Analytical Chemistry at the 122nd Meeting, American Chemical Society, Atlantic City, N. J., 1952, Analyt. Chem. 25: 688, 1953.
26.
Symposium on Fluorescent X-Ray Spectrographic Analysis, A.S.T.M., Special Technical Publication No. 157, Philadelphia, Pa., 1954. American Society for Testing Materials.
27.
SPG Fluorescent X-Ray Spectrometer Direction, No. 11693A, Milwaukee, Wis., 1951, General Electric Co.