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- Compute the oxygen cost of cycling (ml · kg-1 · min-1) at work rates of 50, 75, 100, 125 W for a 60-kg person.Calculate the estimated O2 cost of horizontal treadmill running (ml . kg -1 . min -1 ) for a 70-kg subject at 150,200, and 235 m . min -1 .9. During maximum exercise, the oxygen diffusion capacity may increase as much a A. 3-fold B. 6-fold C. 9-fold D. 12-fold
- (asap within 30 min plz)what are the physiological changes you expect if you begin to runat a pace of10km/hr for 5 minutes and a vo2max is 45ml/kg/min?A forearm skeletal muscle has a hemoglobin concentration of 92 microM. An arterial occlusion of the upper arm determines a decrease in saturation at a rate of 15% per minute, and no change in blood volume. Find the muscle oxygen consumption in units of micromolo2/(100 mltissue-min).
- The oxygen cost of running on a flat surface at 200 m/min would be about: (hint: pay close attention to units in each answer choice). O 30 ml. kg-1 min-1 50 ml kg-1 min-1 12.42 METS 10.96 METSDebra weighs 154 lbs and completes a maximal GXT. It was determined she has a maximal MET capacity of 15.2 METS. Her RHR is 66 bpm and her HR at the final workload was 189 bpm. What is her VO2max in L/min?5G 76 Time remaining: 54 QUICK QuestiBingtes seconds Select following statements and select the most Questi appropriate answer. 35 Questi Statement one Fragile sloping roofs will require the use of a roof. 37 36 Questi ladder with individuals Questi attached by harness to the ladder 38 Questi 39 Statement two Questi The movement across the 40 slope is best achieved by following the line of the purlin bolts a) Statement one is true with statement two being untrue b) Statement one is false c) Both statement are true d) Both statements are false Prev Next Submit Answers
- Mark's maximal oxygen consumption on an exercise test is 55 ml/kg/min. What MET level did he acheive on his exercise test? Hint: When going from METS to ml/kg/min your multiply by 3.5 ml/kg/min. When going in the opposite direction, ml/kg/min to METS you divide by 3.5 ml/kg/min.Under certain circumstances, the respiratory quotient (RQ value) for an athlete exercising intensely can rise above 1. How is this possible?Calculate the 5 different volumes of BSA needed for the standard curve. Prepare a table showing the volume of BSA and water needed in the cuvette for each concnetration