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LCY/hr: <br /> Loader = 60 min/hr divided by 2 C. min/Truck load cycle* = Z.r. / cycles/hr <br /> 3 4 cycles/hr x o. —LCY adj. Truck payload /o, r (unadjusted) <br /> *Truck oading time Plus exchange time. <br /> adjusted production: <br /> -7/o LCY/hr x�& job efficiency** x .86 altitude adj. = o-72 LCY/hr <br /> Truck 60 min/hr divided by -a3. S min/cycle = —a cycles/hr <br /> cycles/hr x _a adj. truck ay load 78 6 LCY/hr <br /> (unadjusted) <br /> adjusted production: <br /> 78. G LCY/hr x ,s-3 job efficiency** x .H altitude adj. LCY/hr <br /> Waverage for a1T—shi fts utilized <br /> Production balancing: <br /> -- -7 --2� divided by S y. 8 = 9. z trucks required for team* <br /> loader LF.Y7Fr Truck LLY/hr <br /> *round to nearest whole number actual trucks utilized <br /> Note: For information on determining the most efficient truck/loader team <br /> combination for a particular job, please refer to Section YII of the <br /> estimating manual . <br /> Net hourly production for team = y��. 2 LCY/hr (use loner production figure <br /> between hourly loader production and hourly truck team production) <br /> Hourly fleet production = 5/93. Z LCY/hr/team x / teams LCY/h: <br /> JOB COST: <br /> Team cost/hr: Loader = E /yo.x-6 /hr <br /> haul truck = 9 oS' /hr x 1 trucks = E hr <br /> = $ i o,y.3� /hr team <br /> Fleet cost/hr = o/ . ,� /hr/team x / teams = E loi 3 /hr <br /> Total job hours: <br /> LCY divided by -,If,?. ;t, LCY/hr = hours <br /> tots material Vol. fleet prod. tota Jo time <br /> 3S_a_ hrs x S /a/ /hr = S �, �_� Total Job Cos <br /> tot. job time hourly fleet cost <br /> unit cost/LCY = 23 divided by /c, ' ? _ a. oG /LCY _ <br /> tots jobcost tota materia Vol. <br /> 35 <br />