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Product size 1 = 2.23 Mass fraction 1 (%) = 0.031 Product suze 2 = 3.27 Mass fraction 2 (%) = 0.059 Product size 3

Product size 1 = 2.23
Mass fraction 1 (%) = 0.031
Product suze 2 = 3.27
Mass fraction 2 (%) = 0.059
Product size 3 = 3.45
Mass fraction 3 (%) = 0.42
Product size 4 = 3.87
Mass fraction 4 (%) = 0.133
Product size 5 = 3.97
Mass fraction 5 (%) = 0.29
Product size 6 = 4.25
Mass fraction 6 (%) = 0.067
feed size 1 = 0.19
mass fraction 1 (%)= 0.040
feed size2 = 0.38
mass fraction 2 (%)= 0.054
feed size 3 = 0.45
mass fraction 3 (%) = 0.38
feed size 4 = 0.62
mass fraction 4 (%) = 0.197
feed size 5 = 0.87
mass fraction 5 (%) = 0.26
feed size 6 = 0.89
mass fraction 6 (%) = 0.069
(these values will be used)
image text in transcribed
Product size 1 (m) = 2.23
Mass fraction 1 (%) = 0.031
Product suze 2 (m)= 3.27
Mass fraction 2 (%) = 0.059
Product size 3 (m) = 3.45
Mass fraction 3 (%) = 0.42
Product size 4 (m) = 3.87
Mass fraction 4 (%) = 0.133
Product size 5 (m) = 3.97
Mass fraction 5 (%) = 0.29
Product size 6 (m) = 4.25
Mass fraction 6 (%) = 0.067
feed size 1 (m) = 0.19
mass fraction 1 (%)= 0.040
feed size2 (m) = 0.38
mass fraction 2 (%)= 0.054
feed size 3 (m) = 0.45
mass fraction 3 (%) = 0.38
feed size 4 (m) = 0.62
mass fraction 4 (%) = 0.197
feed size 5 (m) = 0.87
mass fraction 5 (%) = 0.26
feed size 6 (m) = 0.89
mass fraction 6 (%) = 0.069
(these values will be used)
Size reduction process will be applied to 80g of coffee beans to produce filter coffee in a hammer mill containing a high-speed rotor that is turning inside a cylindrical casing. The rotor, on which the swinging hammerheads were attached, rotates at 1800rpm. The coffee beans were crushed and pulverized between the hammers and the casing and remained in the mill until it was fine enough to pass through a screen having a screen hole of 3mm. The whole operation was carried out in 2.5 minutes. The crusher consumes 40kW of power, of which 5kW is required for the mill empty. Feed and product are separated according to their sizes by screen analysis and mass fractions retained on each screen are given "QUESTION 1 - Student Parameters" table. Calculate the constants for Kick's law and Rittinger's law and calculate the work index for Bond's crushing law. (35 points) You must SHOW ALL CALCULATIONS IN DETAIL and use correct mathematical symbol representation

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