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LCY/hr: - <br /> Loader = 60 min/hr divided by .2. C. min/Truck load cycle* _ cycles/hr <br /> cycles/hr x adj. Truck payload o, r unadjusted) <br /> 7TrucK loading time plus exchange time. <br /> adjusted production: <br /> ��LCY/hr x ,�� job efficiency** x altitude adj. _ LCY/hr <br /> Truck = 60 min/hr divided by min/cycle = //. / cycles/hr <br /> f/ cycles/hr x adj. truck ay load jyi g LCY/hr <br /> (unadjusted) <br /> adjusted production: <br /> 3yi. 9 LCY/hr x , &_r job efficiency** x�altitude adj. _ y LCY/hr <br /> • average for all—shifts utilized <br /> Production balancing: <br /> divided by 217�. a. / trucks required for team* <br /> loader LUY7Fr Truck LCY/F <br /> *round to nearest whole number = actual trucks utilized <br /> Note: For information on determinin themost efficient truck/loader team <br /> combination for a particular job, please refer to Section VII of the <br /> estimating manual. <br /> Net hourly production for team LCY/hr (use lower production figure <br /> between hourly loader production and hourly truck team production) <br /> Hourly fleet production LCY/hr/tears x �_ teams LCY/hr <br /> JOB COST: <br /> Teary cost/hr: Loader = 5 lyo.j6 /hr <br /> haul truck = g�,o; /hr x trucks = $ ». fc /hr <br /> = $ 9 c /hr team <br /> Fleet cost/hr = ,may. 9L /hr/team x i teams = /hr <br /> Total job hours: <br /> S C LCY divided by Y7L. LCY/hr = L. 9 hours <br /> tots materialvol. fleet prod. tota �o time <br /> hrs x Jy. /hr Total Job Cost <br /> tot. job time hourly fleet cost <br /> unit cost/LCY S`66G divided by ar:., G 70 /LCY <br /> total joTcost -to-tal material vol. - <br /> 37 <br />