J. Gasiot et al. Nucl. Instrum. Methods 1980, 175, 96-97.* |
R. G. Johnson et al. Anal. Calorim. 1984, 5, 133-141.* |
E. N. Lewis, et al. Anal. Chem. 1995, 67, 3377-3381.* |
J. V. Jensen et al. in “Proc. Int. Congr. Catal. 6th” vol. 2, G. C. Bond et al, ed., 1977, Chemical Society, 796-805.* |
G. A. D'Netto et al. Int. Chem. Eng. Symp. Ser. 1984, 87, 247-254.* |
J. Doppelbauer et al. Appl. Phys. B 1983, 33, 141-147.* |
A Baiker et al. Can. J. Chem. Eng. 1985, 63, 138-145.* |
S. Sharma et al. J. Catal. 1988, 110, 103-116.* |
S. Lundgren et al. Rev. Sci. Instrum. 1994, 65, 2696-2703.* |
X.-D Xiang et al. Science 1995, 268, 1738-1740.* |
C. L. Hill et al. J. Mol Catal. A: Chem. 1996, 114, 103-111.* |
S. Vignes et al, Compt. Rend. Congr. Ind. Gaz. 1961, 78, 405-411.* |
K. Katayama et al, Bull. JSME 1969, 12, 1439-1447.* |
U. Hoffmann et al, ACS Symp. Ser. 1978, 65, 189-200.* |
E. Takegoshi et al, Int. J. Thermphys. 1984, 5, 219-228.* |
J. L. Trostel Jr. et al, Proc. Int. Symp. Adv. Refract. Metall. Ind. 1988, 1, 41-52.* |
S. M. J. Akhtar et al, NIST Spec. Publ. 1988, 752, 345-351.* |
A. M. Hallen et al, Mod. Dev. Powder Metall. 1988, 21, 755-763.* |
K. Inoue et al, Trans. JWRI 1989, 18, 73-77.* |
R. C. Enck et al, Ceram Trans. 1990, 5, 214-221.* |
D. L. Balageas et al, High Temp.—High Pressures 1991, 23, 517-528.* |
A. Sasaki et al, Akita Kogyo Koto Gakko Kenkyu Kiyo 1992, 27, 11-18.* |
T. Baba et al. Thermochim. Acta 1993, 218, 329-339.* |
L. Vozar et al, High Temp.—High Pressures 1993, 25, 593-597.* |
L. Kehoe et al, IEEE Trans. Compon., Packag., Manuf. Technol. part A, 1995, 18, 773-780.* |
H. Wang et al, Ceram. Trans. 1996, 74, 609-618.* |
H. Wang et al, Therm. Conduct. 1996, 23, 119-126.* |
R. Brandt et al, High Temp.—High Pressures 1976, 8, 469-478. |
K. Inoue Trans. JWRI 1991, 20, 35-40. |
T. Mitsuhashi et al, Proceedings of the Fourth International Symposium on Advanced Nuclear Energy Research 1992, JAERI-M-92-207, 302-307. |
L. I. Kiss et al, Dev. Appl. Ceram. New. Met. Alloys, Proc. Int. Symp. 1993, 143-154. |
H. R. B. Orlande et al, Heat Transfer 1994, Proc. Int. Heat Transfer Conf., 10th 1994, 6, 403-408. |
L. I. Kiss et al, Recent Metall. Adv. Light Met. Ind., Proc. Int. Symp. 1995, 415-421. |
M. R. Kulkarni et al, HTD 1996, 327, 19-23. |
Hoffmann et al. Chem. Abstr. 88, 111103x, Apr. 1978.* |
T. Y. R. Lee et al, J. Heat Transfer, 100, 720-724, Nov. 1978.* |
M. A. Bucknam et al. Trans. J. Br. Ceram. Soc. 82, 18-23, Jan. 1983.* |
H. L. Lee et al, J. Am. Ceram. Soc. 68, C12-C13, Jan. 1985.* |
S. M. J. Akhtar et al, Chem. Abstr. 110, 182454w, May 1989.* |
A. Bernasconi et al, Rev. Sci. Instrum. 61, 2420-2426, Sep. 1990.* |
G. S. Sheffield et al, Ceramic Bulletin, 70, 102-106, Jan. 1991.* |
Ts Velinov et al, Meas. Sci. Technol. 1993, 4, 1266-1268.* |
M. Reichling et al, J. Appl. Phyus. 75, 1914-1921, Feb. 1994.* |
D. M. Todorovic et al, J. Appl. Phys. 76, 4012-4021, Oct. 1994.* |
T. Kemp et al, Rev. Sci. Instrum. 66, 176-181, Jan. 1995.* |
L. Fabbri et al. Rev. Sci. Instrum. 66, 3593-3600, Jun. 1995.* |
J. E. Graebner Rev. Sci. Instrum. 66, 3903-3906, Jul. 1995.* |
J. C. Lambropoulos et al, Polym. Preprints 37, 66-67, Aug. 1996.* |
H. Wang et al, Chem. Abstr. 126, 66126x, Feb. 1997.* |
N. V. Kul'kova et al. Khim. Prom. 44, 656-658, Sep. 1968.* |
L. M. Gratton et al. Appl. Spectrosc. 32, 310-316, Jul. 1978.* |
P. C. M. van Woerkom et al. Appl. Optics, 19, 2546-2550, Aug. 1980.* |
D.R. Kember et al. J. Cem. Soc., Faraday Tans 2, 1981, 77, 1321-1329.* |
M. M. McClory et al. J. Chem. Phys. 90, 628-633, Feb. 1986.* |
G. Georgiades et al. Angew. Chem. Int. Ed. Engl. 26, 1042-1043, Oct. 1987.* |
M. R. Prairie et al. J. Catal. 1991, 129, 130-144.* |
B. S. Clausen et al. J. Catal. 1991, 132, 524-535.* |
A. M. Vassallo et al. Appl. Spectrosc. 46, 73-78, Jan. 1992.* |
D. Mazzarese et al. J. Electron. Mater. 21, 329-333, Mar. 1992.* |
B. Wangmaneerat et al. Appl. Spectrosc. 46, 1447-1453, Oct. 1992.* |
P. W. Morrison, Jr. et al. J. Vac. Sci. Technol., A 11, 490-502, Mar. 1993.* |
J. A. Anderson J. Catal. 1993, 142, 153-165.* |
K. S. Finnie et al. Chem. Aust. 60, 180-182, Apr. 1993.* |
J. R. Markham et al. Appl. Spectrosc. 48, 265-270, Feb. 1994.* |
R. Stangl et al. Proc.-SPIE 2255, 685-696, Apr. 1994.* |
M. Takeuchi et al. Shigen to Kankyo 4, 429-434, Jun. 1995.* |
H. Uetsuka et al. Surface Science 363, 73-78, Aug. 1996.* |
Maldague, X. and S. Marinetti “Pulse Phase Infrared Thermography,” J. Appl. Phys, 79[5]: 2694-2698, Mar. 1, 1996. |
Philip W. Morrison, Jr., et al., “In Situ Infrared Measurements During Hot Filament CVD of Diamond in a Rotating Substrate Reactor,” Diamond and Related Materials, vol. 5 (1996) pp. 242-246. |
H. Hardisty, et al.; “Thermal Imaging in Electronics and Rotating Machinery,” British Journal of NDT, vol. 36, No. 2, pp. 73-78. |
Patent Abstracts of Japan, 07-226884, Naoki, Abstract Only. |
Charles E. Berkoff, et al., “A Multiple Cell Apparatus for of Catalysed Chemical Reactions the Rapid Evaluation”, Chemistry and Industry, vol. 17 (Jan. 1981), pp. 6869. |
F.C. Moates, et al., “Infrared Thermographic Screening of Combinatorial Libraries of Heterogenous Catalysts”, Ind. Eng. Chem. Res. (1996), vol. 35, pp. 4801-4803. |
Bruce Posner, et al., “Catalytic Antibodies: Perusing Combinatorial Libraries”, TIBS, vol. 19, (Apr. 1994), pp. 145-150. |
J.T. Richardson, et al., “Characterization and Deactivation of NiO-THO2”, Applied Catalysis, vol. 48 (1989), pp. 159-176. |
Hanak, J.J., “The ‘Multiple-Sample Concept’ in Materials Research: Synthesis, Compositional Analysis and Testing of Entire Multicomponent Systems,” Journal of Materials Sciences, pp. 964-971 (1970). |
Hanak, J.J., “Compositional Determination of rf Co-Sputtered Multicomponent Systems,” The Journal of Vacuum Science and Technology, vol. 8, (1971). pp. 172-175. |