chemical processing part 2

Digital Image Processing Part II pdf

Digital Image Processing Part II pdf

... Dilation Erosion 30 30 30 30 30 32 32 34 34 35 Contents Digital Image ProcessingPart II 2. 2.3 2. 2.4 2. 3 2. 3.1 2. 3 .2 2.3.3 2. 3.4 2. 4 2. 5 2. 6 2. 7 2. 8 2. 8.1 2. 8 .2 Properties of dilation and erosion ... Image Compression Summary References Problems 8 10 12 15 18 24 26 28 28 2. 1 2. 1.1 2. 1.1 2. 1 .2 2.1.3 2. 1.4 2. 2 2. 2.1 2. 2 .2 Morphological Image Processing Mathematical morphology Introduction Binary ...    (2. 2.7) Suppose that a structure element B can be represented as a dilation of two structure elements B1 and B2: B  B1  B2 (2. 2.8) A  B  A  ( B1  B2 )  ( A  B1 )  B2 (2. 2.9) In...

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encyclopedia of chemical processing

encyclopedia of chemical processing

... 1973 20 89 21 01 22 15 22 47 22 59 22 77 23 01 23 13 23 23 23 35 23 69 23 79 25 01 26 63 28 71 28 81 29 55 3031 324 7 ... 27 35 27 47 27 53 27 69 27 91 27 99 28 11 28 25 28 47 28 59 28 71 28 81 28 97 29 07 29 15 29 27 29 33 29 47 29 55 29 65 ... 57 371 379 397 627 651 881 128 1 128 9 1 325 1357 1865 20 53 22 91 24 61 26 25 26 55 27 91 29 33 29 47 29 75 Pipeline Technology...

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handbook of chemical processing equipment

handbook of chemical processing equipment

... from Petroleum, 22 2 iii 1 62 iv CONTENTS Spirits Production, 23 9 Closure and Recommended Web Sites, 24 1 Chapter Mass Separation Equipment 24 4 Introduction, 24 4 Absorption Equipment, 24 5 Adsorption ... Falls, TX 763 02- 9703 (Phone: 940- 723 -6366 Fax: 940- 723 -1360) API Heat Transfer Inc - 27 77 Walden Ave, Buffalo, NY 1 422 5 (Phone: 16-684-6700 Fax: 16-684 -21 29) Cust-O-Fab, Inc - 8888 W 21 st St, Sand ... Gulfport, MS 395 02 (Phone: 22 8-864-5410 Fax: 22 8-864-5555) Wiegmann & Rose (Xchanger Manufacturing Corp.) P.O Box 4187, Oakland, CA 94614 (Phone: 510-6 32- 8 828 Fax: 510-6 32- 8 920 ) Yuba Heat Transfer...

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chemical processing of ceramics

chemical processing of ceramics

... Fe3O4 + 3TiO2 + H2 nTiO2 + 2KOH → K2O(TiO2)n + H2O, n = or B HYDROTHERMAL METAL OXIDATION Zirconium Metal Zirconium metal powder (10–50 g) was reacted with water to form ZrO2 :21 Zr + 2H2O (at 300°C) ... Powder Chemical composition (wt%) ZrO2 Y 2O Al2O3 SiO2 Fe2O3 Na2O Cl– Ignition loss Crystallite size (nm) Average particle size (µm)a Specific surface area (m2/g)b Sintered specimens Bulk density ... process is shown in Figure 1. 12 ZrO2 was also produced by this method In the case of ZrO2, Zr plates were used. 32, 33 © 20 05 by Taylor & Francis Group, LLC 12 Chemical Processing of Ceramics, Second...

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mobile image processing part 3

mobile image processing part 3

... Image ProcessingPart no JJIL functions ApplyMaskRgb BinaryHeap Complex32Gray 32 Complex32IFFT Fft1d Gray16Gray8 Gray16LinComb Gray16Threshold Gray32Div Gray32Gray8 Gray32Scale2Gray8 Gray32Threshold ... Image ProcessingPart no 22 Class Project: Mobile Panorama Creation T Chu, B Meng, and Z Wang, Spring 20 10 http://ee368.stanford.edu/Project_10 Bernd Girod, David Chen: EE368 Mobile Image Processing ... David Chen: EE368 Mobile Image ProcessingPart no 19 CVCamera demo http://ee368.stanford.edu/Android Bernd Girod, David Chen: EE368 Mobile Image ProcessingPart no 20 Communications between phone...

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Signal processing Part 1 pot

Signal processing Part 1 pot

... 350 400 450 500 (b) Model gm4 Amplitude 0 .2 0.1 −0.1 −0 .2 50 100 150 20 0 25 0 Samples (c) Model gm4+noise Amplitude 0 .2 0.1 −0.1 −0 .2 50 100 150 20 0 25 0 Samples Fig Channel impulse responses: ... 20 −40 −60 0 .2 0.4 0.6 0.8 MSE (dB) Samples 1 .2 1.4 1.6 1.8 x 10 (b) Model gm4 NLMS PNLMS 20 −40 −60 0 .2 0.4 0.6 0.8 MSE (dB) Samples 1 .2 1.4 1.6 1.8 x 10 (c) Model gm4+noise NLMS PNLMS 20 ... 20 −40 −60 0 .2 0.4 0.6 0.8 MSE (dB) Samples 1 .2 1.4 1.6 1.8 x 10 (b) Model gm4 NLMS IPNLMS 20 −40 −60 0 .2 0.4 0.6 0.8 MSE (dB) Samples 1 .2 1.4 1.6 1.8 x 10 (c) Model gm4+noise NLMS IPNLMS 20 ...

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Signal processing Part 2 pptx

Signal processing Part 2 pptx

... 48(8), 22 05 22 10 Zoltowski, M D and K T Wong (20 00b) ESPRIT-based 2- D direction finding with a sparse uniform array of electromagnetic vector sensors IEEE Trans Signal Process 48(8), 21 95 22 04 New ... Propagat AP-31 (2) , 23 1 23 6 Gong, X., Z Liu, Y Xu and M I Ahmad (20 09) Direction-of-arrival estimation via twofold mode-projection Signal Processing 89(5), 831–8 42 Guo, X., S Miron and D Brie (20 08) Identifiability ... Applied Signal Processing 20 05(1), 74–84 Miron, S., N Le Bihan and J I Mars (20 06) Quaternion MUSIC for vector-sensor array processing IEEE Trans Signal Process 54(4), 121 8– 122 9 Nehorai, A and...

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Signal processing Part 5 ppt

Signal processing Part 5 ppt

... 1.876 h -2 h-13 h -22 h-x h-y Average 23 6 26 8 154 95 20 6 001 33 821 688 144 793 946 22 668 22 5 – 1.790 1.818 1.767 1.7 32 1.411 1.7 62 13 13 12 13 13 – 1.748 1.773 1. 728 1.689 1.676 1.7 32 13 13 12 13 ... 26 8 154 95 20 6 001 33 821 688 144 793 946 22 668 22 5 – 1.790 1.818 1.767 1.7 32 1.411 1.7 62 5 – 76 80 68 66 47 – 1.905 1.895 1. 925 1.901 1.901 1.903 16 15 15 16 16 – 24 20 32 34 53 – 1 .21 2 1 .27 9 ... compression 128 Signal Processing Name Size y-1 y-4 y-14 y-mit Average 23 0 20 3 531 929 784 328 85 779 – DNA3 bps 1.871 1.881 1. 926 1. 523 1.8 82 m-7 m-11 m-19 m-x m-y Average 114 647 49 909 125 703 729 17...

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Signal processing Part 6 pptx

Signal processing Part 6 pptx

... minimiser of the cost E Tested set 28 , 44, 52 30, 31, 32 50, 51, 52 Ave 14.6, 16.6, 12. 6 16.9, 21 .0, 20 .7 10.8, 12. 7, 10.8 Std Dev 2. 4, 2. 4, 2. 2 3.1, 2. 7, 2. 7 1.7, 1.9, 1.7 Table SNR improvements ... distribution of (a) Speakers Ave SNR (M, M) (F, F) (F, M) 20 .1 20 .2 20 .2 Min SNR 10.4 10.3 10 .2 Max SNR 28 .9 27 .6 28 .9 Ave num of periods 16.1 11 .2 14.0 Table Average, minimum and maximum SNRs (dB) ... Signal Processing, vol 51, no 9, pp 22 70 -22 79, Nov 20 03 [7] 166 Signal Processing Sethares, W A.; & Staley, T W Periodicity transform, IEEE Trans on Signal Processing, vol 47, no 11, pp 29 53 -29 64,...

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Signal processing Part 7 pot

Signal processing Part 7 pot

... Signal Processing 0. 02 0. 022 0 .25 0. 024 0. 026 dilation (a) amplitude (a.u.) 0 .2 0.15 0.1 0. 028 0.03 0.0 32 0.034 0.036 0.05 0.038 0.04 25 00 3000 3500 4000 frequency (rad/s) 4500 5000 0.1 0 .2 0.3 ... where k6 = k4 e k7 = − D2 4γ D 2 (20 ) (21 ) 180 Signal Processing 0 .2 scale (a) 0.15 0 .2 scale (a) 0.15 0 .25 0.3 0.35 0 .25 0.3 translation time (s) 0.35 (a) 8 (c) 0.15 0 .2 0 .2 scale (a) 0.15 scale ... 15 25 0 NAA amplitude (a.u.) damping factor (a.u.) estimated 20 0 10 150 100 50 at 3447 rad/s at 27 72 rad/s −5 0.1 0 .2 0.3 translation (s) (a) 0.4 0.5 24 00 25 00 26 00 27 00 28 00 frequency (rad/s) 29 00...

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Signal processing Part 8 doc

Signal processing Part 8 doc

... 34.7 34.6 34.5 26 25 24 sw 23 22 21 2 0 21 22 23 25 26 27 27 sx 15 14 13 12 11 10 27 26 25 24 sw 23 2 21 20 21 22 23 24 26 26 25 24 sw 23 22 20 21 22 23 Fig The average correlation value after averaging ... (A2) (A3) (A4) (A1) (A2) (A3) (A4) 0. 022 8 0.0357 0. 023 4 0. 024 8 0. 021 8 0.0383 0. 023 2 0. 021 9 0. 021 8 0.0383 0. 023 2 0. 021 9 0. 027 4 0.0407 0.0806 0.0450 0.0198 0.03 72 0.0199 0. 022 7 0.0183 0.03 62 0. 021 2 ... , where that of original scheme is 34.93 [dB] depicted by dot lines 25 32 31 30 29 28 27 26 25 24 sw 23 22 20 21 22 23 25 26 27 sx Fig The average correlation value after averaging collusion attack...

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Signal processing Part 10 pot

Signal processing Part 10 pot

... and 2 , the filter coefficients are f R1 = f R2 = sin (2 1 − φD1 ) sin(φD2 ) − sin(φD1 ) sin (2 2 − φD2 ) , sin( 2 − φD2 ) sin (2 1 − φD1 ) − sin(ω1 − φD1 ) sin (2 2 − φD2 ) sin(φD1 ) sin( 2 − φD2 ) ... ∏ (2 )− Λ(k) = =1 k exp − ∏ (2 ) =1 −1 ˆ ˆ {y( ) − s( ) }2 2 2 ˆ y2 ( ) exp − 2 2 (26 ) We use rather its logarithmic form, L(k) := ln Λ(k) = k k ˆ ˆ ˆ s ( ) y ( ) − ∑ s2 ( ) ∑ σ =1 2 =1 (27 ) ... sin(φD2 ) sin( 2 − φD2 ) sin (2 1 − φD1 ) − sin(ω1 − φD1 ) sin (2 2 − φD2 ) (26 ) (27 ) Furthermore, the stability of the allpole filter is guaranteed if the equation tan(ω1 − φD1 ) < − sin ω1 sin ω2...

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Signal processing Part 14 docx

Signal processing Part 14 docx

... , k2 )WN n1 k1 WN n2 k2 (20 ) − − | Gi (k1 , k2 )|φGi (k1 , k2 )WN n1 k1 WN n2 k2 (21 ) − − φGi (k1 , k2 )WN n1 k1 WN n2 k2 (22 ) gi ( n , n ) = N2 N −1 N −1 ∑ ∑ k =0 k =0 gφi (n1 , n2 ) = N2 ... as ⎛ 2 ⋅ ⋅ 2 ⋅ ⋅ √ cos cos ⎜ 4 ⎜ 2 ⋅ ⋅ 2 ⋅ ⋅ 1 ⎜ √ cos cos ⎜ ⎜ 4 ⎜ 2 ⋅ ⋅ 2 ⋅ ⋅ ⎜ √ cos cos ⎜ 4 ⎜ 22 ⋅ ⋅ 2 ⋅ ⋅ √ cos cos 4 √ ⎞ ⎛ 1 /2 1/ 1 /2 √ ⎜ 1 /2 0√ 1/ −1 /2 ⎟ ⎟ ⎜ ⎝ 1 /2 −1/ 0√ 1 /2 ⎠ ... While, B = yields 2( 1 − c)(1 + r2 s2 ) − 2( a − b)(1 − 2( r2 + s2 ) − r2 s2 ) = 0, 2( 1 − c)(1 + r3 s3 ) − 2( a − b)(1 − 2( r3 + s3 ) − r3 s3 ) = 0, (47) (48) where ri and si (i = 1, 2, 3) are diagonal...

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Signal processing Part 16 pot

Signal processing Part 16 pot

... Quantization Integer Quantization 28 .6187 20 . 123 5 20 .1810 26 .0 527 16 .20 06 16 .23 70 18 .20 63 16.4104 16.4547 17.4039 12. 7097 12. 7 722 13.7535 11.63 52 11.7054 16.5814 4.8 823 23 .4873 29 3.0187 ˆ Table Noise gain ... algorithm 20 iterations to converge to the solution D = diag{0.050638, −0.608845, −0.9515 72}   3.588878 0.735966 0.010417 0. 728 171 0.5567 62  T =  2. 45 724 1 1.51 423 2 2. 058856 0.1 422 04 ˆ and ... minimize (25 ) for D = αI with a scalar α The algorithm converges after 20 iterations to converge to the solution D = −0.779678 I   3 .25 2790 −0.081745 −0.198376 1 .22 0068 −0.7 924 87  T =  −1.71 722 5...

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Signal processing Part 17 pot

Signal processing Part 17 pot

... J.; Falkenstein, M.; Hohnsbein, J & Kolev, V (20 04) Parallel systems of error processing in the brain Neuroimage, Vol .22 (2) , pp.590-6 02 Zabala, M (20 02) Apport d’exercice d’imagerie mentale dans ... gamma band Brain, Vol. 121 ( 12) , pp .23 01 -23 15 Dammann, O & Leviton, A (20 04) Biomarker epidemiology of cerebral palsy Ann Neurol., Vol.55 (2) , pp.158-161 Dammann, O & Leviton, A (20 06) Neuroimaging ... imagery Behavioral and Brain Sciences, Vol.17 (2) , pp.187 20 2 and pp .22 9 23 8 Kaukola, T.; Satyaraj, E.; Patel, D.D.; Tchernev, V.T.; Grimwade, B.G et al (20 04) Cerebral palsy is characterized by protein...

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Signal processing Part 18 doc

Signal processing Part 18 doc

... �� �� (21 ) Substituting (21 ) in (19) we would reach to the conservation of mass equation for ultrasonic propagation in the vocal tract: �� � �� �� � � � � � �� (22 ) We would rewrite (18 ,22 ), i.e ... and small �� ��, variations of pressure and density around the equilibrium 2. 2 .2 Dissipation mechanisms In section 2. 2.1 we observed that under three conditions of having an ideal gas with an ... reaches around 0.1 �� �� in sound frequency of 100 KHz which is less than dB/m 3 .2. 2 Dispersion As stated in 2. 2.1 and 2. 3.1, one precondition of linearity for ultrasound propagation in air is that...

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Laser chemical processing (LCP) of poly silicon thin film

Laser chemical processing (LCP) of poly silicon thin film

... Res Appl vol 20 , pp.915– 922 , 20 12 20 LASER CHEMICAL PROCESSING (LCP) CHAPTER LASER CHEMICAL PROCESSING (LCP) 2. 1 Introduction This chapter details the laser-induced physical and chemical interactions ... Tm is 1683 K 𝜔= 2 𝑐 λ 𝛾= 𝛾𝑚 𝑇 Tm (2. 5) (2. 6) The refractive index is then calculated by: 24 LASER CHEMICAL PROCESSING (LCP) (𝑛∗ )2 = 𝜀1 + 𝑖 2 (2. 7) Assuming parameters 𝜔 𝑝𝑙 = 2. 50 x 1016 s-1 ... ………………………………………… 12 13 15 References……………………………………………………… Chapter 18 Laser Chemical Processing (LCP) 2. 1 Introduction…………………………………………………… 2. 2 Laser chemical processing …………………………………… 2. 3 Optics………………………………………………...

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APPENDIX A TO PART 136 METHODS FOR ORGANIC CHEMICAL ANALYSIS OF MUNICIPAL AND INDUSTRIAL WASTEWATER pot

APPENDIX A TO PART 136 METHODS FOR ORGANIC CHEMICAL ANALYSIS OF MUNICIPAL AND INDUSTRIAL WASTEWATER pot

... 12. 8 - 27 .2 13.1 - 26 .9 14 .2 - 25 .8 2. 8 - 37 .2 14.6 - 25 .4 13 .2 - 26 .8 7.6 - 32. 4 D - 44.8 13.5 - 26 .5 D - 40.8 13.5 - 26 .5 12. 6 - 27 .4 14.6 - 25 .4 12. 6 - 27 .4 14.5 - 25 .5 13.6 - 26 .4 10.1 - 29 .9 ... 10.1 - 29 .9 13.9 - 26 .1 6.8 - 33 .2 4.8 - 35 .2 10.0 - 30.0 11.8 - 28 .2 12. 1 - 27 .9 12. 1 - 27 .9 14.7 - 25 .3 14.9 - 25 .1 15.0 - 25 .0 14 .2 - 25 .8 6.9 6.4 5.4 17.9 5 .2 6.3 11.4 25 .9 6.1 19.8 6.1 7.1 ... 15 .2 - 26 .0 10.1 - 28 .0 11.4 - 31.1 D - 41 .2 17 .2 - 23 .5 16.4 - 27 .4 8.4 - 40.4 D - 50.4 13.7 - 24 .2 D - 45.9 13.8 - 26 .6 11.8 - 34.7 17.0 - 28 .8 11.8 - 34.7 14 .2 - 28 .5 14.3 - 27 .4 3.7 - 42. 3...

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w