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do it carefully ASAP otherwise I will report. dohat. ELEMENT CORRUGATOR TABLE 1 - NUMBER OF FAULTS OR STOPS EXTRUDER HEAD MATERIAL SLICER TURNING AND

do it carefully ASAP otherwise I will report.

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ELEMENT CORRUGATOR TABLE 1 - NUMBER OF FAULTS OR STOPS EXTRUDER HEAD MATERIAL SLICER TURNING AND TRANSPORT SYSTEM MOLD 25 GRAND TOTAL 25 1 1 6 0 40 40 120 27 12 20 11 42 35 Spider Hoover Barrel Olur Vacuum pump Cuttingar Drive chain Gearboxes Distributor box Reduction garbox Cylinder Pin Encoder Needle bearing That bearings Given Level detector Solenoid valve 147 12 39 42 35 20 9 5 22 20 9 5 45 2 47 55 8 55 78 27 le F 65 85 19 22 12 19 34 127 13 120 7 8 5 4 12 7 9 20 4 4 8 10 10 92 45 47 Bag Site Photocall Heat exchanger Pressure gauge Microswitch AC motor Gened motor Pin Pyrometer Hydraulic piston Potentiometer Resistance Roller Sensor Blower Thermocouple Hopper So 2 2 45 85 110 3 39 22 22 20 70 90 8 10 10 Martenance unt 3 1 14 15 Pneumatic Valve Fans Overall (frequency 74 437 74 1998 355 272 141 103 90 Current Assets Cash AVR Inventory Total HOFFMAN COMPANY Balance sheet Current Liabilities 3,150.00 A/P 4,100.00 N/P 6,400.00 Total 13,650.00 Long Term Debt Owners' Equity 2,475.00 5,400.00 7,875.00 28,000.00 Fixed Assets Net P & E 41,300.00 Common R/E Total 15,000.00 4,075.00 19,075.00 TOTAL ASSETS 54,950.00 Total Liab & Equity 54,950.00 HOFFMAN COMPANY Income Statement Sales 46,000.00 Costs 37,600.00 Taxable Income 8,400.00 Taxes 2,940.00 Net Income 5,460.00 Dividends 2,400.00 RE 3,060.00 * Weage 11 lane inclined at an angle a to the horizontal. A particle of mass m slides down the face of the vedge, starting from rest. At a later time t, the speed V of the wedge, the speed v of the particle nd the angle 3 of the velocity of the particle below the horizontal are as shown in the diagram. et y be the vertical distance descended by the particle. Derive the following results, stating in i) and (iii) the mechanical principles you use: :) V sina = usin( 8 - a); i) tan 8 = (1+k) tan a, where k = m/M; ii) 2gy = v*(1 + k cos 8). dy dt lence show that 29'y 12 , where gtan? 8 tan 3 +K gk tana and K = 1+k. Deduce K tana +1 r polinom genellikle ampirik bir korelasyon denklemi olarak kullanlr. Bu genel e u ekilde yazlabilir: = = ag+a, x + ax + ax + tanan al an, regresyon ile belirlenecek katsaylar olarak da adland ELEMENT CORRUGATOR TABLE 1 - NUMBER OF FAULTS OR STOPS EXTRUDER HEAD MATERIAL SLICER TURNING AND TRANSPORT SYSTEM MOLD 25 GRAND TOTAL 25 1 1 6 0 40 40 120 27 12 20 11 42 35 Spider Hoover Barrel Olur Vacuum pump Cuttingar Drive chain Gearboxes Distributor box Reduction garbox Cylinder Pin Encoder Needle bearing That bearings Given Level detector Solenoid valve 147 12 39 42 35 20 9 5 22 20 9 5 45 2 47 55 8 55 78 27 le F 65 85 19 22 12 19 34 127 13 120 7 8 5 4 12 7 9 20 4 4 8 10 10 92 45 47 Bag Site Photocall Heat exchanger Pressure gauge Microswitch AC motor Gened motor Pin Pyrometer Hydraulic piston Potentiometer Resistance Roller Sensor Blower Thermocouple Hopper So 2 2 45 85 110 3 39 22 22 20 70 90 8 10 10 Martenance unt 3 1 14 15 Pneumatic Valve Fans Overall (frequency 74 437 74 1998 355 272 141 103 90 Current Assets Cash AVR Inventory Total HOFFMAN COMPANY Balance sheet Current Liabilities 3,150.00 A/P 4,100.00 N/P 6,400.00 Total 13,650.00 Long Term Debt Owners' Equity 2,475.00 5,400.00 7,875.00 28,000.00 Fixed Assets Net P & E 41,300.00 Common R/E Total 15,000.00 4,075.00 19,075.00 TOTAL ASSETS 54,950.00 Total Liab & Equity 54,950.00 HOFFMAN COMPANY Income Statement Sales 46,000.00 Costs 37,600.00 Taxable Income 8,400.00 Taxes 2,940.00 Net Income 5,460.00 Dividends 2,400.00 RE 3,060.00 * Weage 11 lane inclined at an angle a to the horizontal. A particle of mass m slides down the face of the vedge, starting from rest. At a later time t, the speed V of the wedge, the speed v of the particle nd the angle 3 of the velocity of the particle below the horizontal are as shown in the diagram. et y be the vertical distance descended by the particle. Derive the following results, stating in i) and (iii) the mechanical principles you use: :) V sina = usin( 8 - a); i) tan 8 = (1+k) tan a, where k = m/M; ii) 2gy = v*(1 + k cos 8). dy dt lence show that 29'y 12 , where gtan? 8 tan 3 +K gk tana and K = 1+k. Deduce K tana +1 r polinom genellikle ampirik bir korelasyon denklemi olarak kullanlr. Bu genel e u ekilde yazlabilir: = = ag+a, x + ax + ax + tanan al an, regresyon ile belirlenecek katsaylar olarak da adland

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