NicholesE. J. “Discussion of ‘Artificial Illumination from the Architect's Standpoint’,” by W. S. Kellogg, transactions of the illuminating engineering society, Vol. 1, 1906, p. 52.
2.
CrouchC. L. “The Relation Between Illumination and Vision,” illuminating engineering, Vol. 35, November 1945, p. 747.
3.
CottrellC. L. “Measurement of Visibility: Visibility, A Measurable Quality of a Seeing Task,” illuminating engineering, Vol. 46, February 1951, p. 95.
4.
BlackwellH. R. “Use of Performance Data to Specify Quantity and Quality of Interior Illumination,” illuminating engineering, Vol. 50, June 1955, p. 286.
5.
ies lighting handbook, Third Edition, Illuminating Engineering Society, New York, N. Y., 1959.
6.
MarksA. M. “Multilayer Polarizers and their Application to General Polarized Lighting,” illuminating engineering, Vol. 54, February, 1959, p. 123.
7.
GoodbarI. “The Effect of Specular Reflection on Visibility: Part III—New Charts for Brightness Contrast Calculations,” illuminating engineering, Vol. 54, August 1959, p. 489.
8.
ChorltonJ. M., and DavidsonH. F. “The Effect of Specular Reflection on Visibility: Part II—Field Measurements of Loss of Contrast,” illuminating engineering, Vol. 54, August 1959, p. 482.
9.
FinchD. M. “The Effect of Specular Reflection on Visibility: Part I—Physical Measurements for the Determination of Brightness and Contrast,” illuminating engineering, Vol. 54, August 1959, p. 474.
10.
Office Lighting Committee of the IES, “Recommended Practice for Office Lighting,” illuminating engineering, Vol. 55, June 1960, p. 313. (Approved January 5 1966, by American National Standards Institute as “American National Standard Practice for Office Lighting,” Al 32.1.)
11.
American Standard Guide for School Lighting, A23.1-1962, American National Standards Association, New York, 1962. Also illuminating engineering, Vol. 57, April 1962, p. 253.
12.
Committee on Recommendations of Quality and Quantity of Illumination of the IES, “An Interim Statement on Reflected Glare,” illuminating engineering. Vol. 57, August 1962, p. 561.
13.
BlackwellFL R. “A General Quantitative Method for Evaluating the Visual Significance of Reflected Glare, Utilizing Visual Performance Data,” illuminating engineering, Section I, Vol. 58, April 1963, p, 161.
14.
BlackwellH. R. “A Recommended Engineering Application of the Method for Evaluating the Visual Significance of Reflected Glare,” illuminating engineering, Vol. 58, April 1963, p. 217.
15.
SampsonF. K. “Field Evaluation of Reflected Glare,” illuminating engineering, Vol. 58, April 1963, p. 250.
16.
GoodbarI. “Point-By-Point Prediction of Contrast Losses,” illuminating engineering, Section I, Vol. 58, April 1963, p. 262.
17.
CrouchC. L., and KaufmanJ. E. “Practical Application of Polarization and Lighting Control for Reduction of Reflected Glare,” illuminating engineering, Vol. 58, April 1963, p. 277.
18.
BlackwellH. R. “Discussion of ‘Practical Application of Polarization and Lighting Control for Reduction of Reflected Glare’,” by C. L. Crouch and J. E. Kaufman, illuminating engineering, Vol. 58, April 1963, p. 283.
19.
FryG. A. “Prescribing Levels of Illumination,” illuminating engineering, Vol. 58, July 1963, p. 486.
20.
BlackwellH. R. “Specifications of Interior Illumination Levels Required in Installations Differing in Layout and Lighting Materials,” illuminating engineering, Vol. 60, April 1965, p. 243.
21.
ies lighting handbook, Fourth Edition, Illuminating Engineering Society, 345 East 47th Street, New York, N. Y. 10017, 1966.
22.
BlackwellH. R. “A More Complete Quantitative Method for Specification of Interior Illumination Levels on the Basis of Performance Data,” illuminating engineering, Vol. 64, April 1969, p. 289.
23.
SampsonF. K. contrast rendition in school lighting, Educational Facilities Laboratories, 477 Madison Avenue, New York, N. Y. 10022, 1970.
24.
Committee on Recommendations for Quality and Quantity of Illumination of the IES, “A Method of Evaluating the Visual Effectiveness of Lighting Systems,” RQQ Report No.. 4. illuminating engineering, Vol. 65, August 1970, p. 504.
25.
LewinL, and GriffithJ. W. “Veiling Reflection Control by Candlepower Distribution,” illuminating engineering, Vol. 65, October 1970, p. 594.
26.
HelmsR. N. “Evaluation of the Visual Effectiveness of Selected Luminous Environments by the RCS Method,” Ph.D. dissertation, Ohio State University, 1971.
27.
GoodbarLButtolphL. J.BrenemanE. J., and CrouchC. L. “Applying the Factors of Veiling Reflections to Field Use and Measurement,” paper presented at the 17th Session of commission Internationale d'eclairage (CIE), Barcelona, Spain, September, 1971.
28.
SquillaceS. S., and DiLauraD. L. “Comprehensive Prediction of Contrast Losses,” paper presented at the Annual IES Conference, Chicago, Illinois, August 1971.
29.
“New Methods for Evaluating Lighting Systems,” architectural record, October 1971, p. 139.
30.
ies lighting handbook, Fifth Edition, Illuminating Engineering Society, 345 East 47th Street, New York, N. Y. 10017, 1972.
31.
JonesB. F., and SampsonF. K. “Contrast Rendition Factor Calculation and Measurement for the Standard Classroom Task,” journal of the illuminating engineering society, Vol. 1, January 1972, p. 128.
32.
Committee on Recommendations for Quality and Quantity of Illumination of the IES, “The Predetermination of Contrast Rendition Factors for the Calculation of Equivalent Sphere Illumination,” RQQ Report No. 5, journal of the illuminating engineering society, Vol. 2, January 1973.
33.
BlackwellH. R.HelmsR. N., and DiLauraD. L. “Application Procedures for Evaluation of Veiling Reflections in Terms of ESI, journal of the illuminating engineering society, to be published in four parts.
34.
Joint Task Committee on School Lighting, “American National Standard Guide for School Lighting,” A23.1, journal of the illuminating engineering society, to be published.
35.
Office Lighting Committee of the IES, “American National Standard Practice for Office Lighting,” A132.1, journal of the illuminating engineering society, to be published.