In Applied Spectroscopy, the infrared reflectance spectra properties of a viscous liquid used in the electronics industry as a lubricant were studied. The designed experiment consisted of the effect...


In Applied Spectroscopy, the infrared reflectance spectra properties of a viscous liquid used in the<br>electronics industry as a lubricant were studied. The designed experiment consisted of the effect<br>of band frequency x1 and film thickness x2 on optical density y using a Perkin-Elmer Model 621<br>infrared spectrometer. (Source: Pacansky, J., England, C. D., and Wattman, R., 1986.) y.<br>Q4.<br>40<br>0.231<br>0.107<br>0.053<br>0.129<br>1.10<br>0.62<br>0.31<br>1.10<br>S05<br>S05<br>Sos<br>980<br>980<br>0.62<br>0.31<br>1.10<br>0.62<br>0.069<br>0.030<br>1.005<br>0.559<br>0.321<br>2.948<br>1.633<br>0.934<br>980<br>0.31<br>1.10<br>0.62<br>0.31<br>1235<br>1235<br>1235<br>Estimate the multiple linear regression equation.<br>

Extracted text: In Applied Spectroscopy, the infrared reflectance spectra properties of a viscous liquid used in the electronics industry as a lubricant were studied. The designed experiment consisted of the effect of band frequency x1 and film thickness x2 on optical density y using a Perkin-Elmer Model 621 infrared spectrometer. (Source: Pacansky, J., England, C. D., and Wattman, R., 1986.) y. Q4. 40 0.231 0.107 0.053 0.129 1.10 0.62 0.31 1.10 S05 S05 Sos 980 980 0.62 0.31 1.10 0.62 0.069 0.030 1.005 0.559 0.321 2.948 1.633 0.934 980 0.31 1.10 0.62 0.31 1235 1235 1235 Estimate the multiple linear regression equation.

Jun 02, 2022
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