Lab 15 Kenal Physiology 124 Water Hypotonic V8 Isotonic Saline Time Volume Ml Sg Clevels Meq L Time Volume Ml 1 (55.16 KiB) Viewed 19 times
Lab 15 Kenal Physiology 124 Water Hypotonic V8 Isotonic Saline Time Volume Ml Sg Clevels Meq L Time Volume Ml 2 (20.14 KiB) Viewed 19 times
Lab 15 - Kenal Physiology 124 Water (hypotonic) V8 isotonic saline) Time Volume (ml) SG Clevels (mEq/L) Time Volume (ml) SG Cr levels (mEq/L) 0 40 1.020 7188.1 0 105 30 | 1.021 410 4 1.025 170 4104 meal 30 per/ S1-3 165 ML 1-oso 30 30 nasale magle 60 60 los mL 119-7 IIML 1.030 (1.029 meel 90 20 m2 90 -110 /188-1 /10mL 11.030 (183.9. mean melly 120 120 12mL 513 megle 1.030 171 megle Sprite (hypertonic, non-caffeinated) Diet Coke (hypotonic, caffeinated) Time Volume (ml) SG C levels (mEq/4) Time Volume (ml) SG ar levels (mEq/L) o 102.6 0 a เศ 108214 50 1.005 400 Solias ( 15 ml 1.050 SIB 30 MEGIL el 30 684, 1.005 51.3 60 49 mL 1000 34.2 60 90 1.000 oneel 90 IML 1014 85. Sok 15 1.02083.5 [1-100 si 3 120 120 SmL 1102.6 pelgly Table 15.3. Urinalysis results for all samples. 3. For your control sample, you measured some properties in two ways: pH by pH paper and Multistix. and SG by refractometer and Multistix. Do your results agree with each other? Explain why you think this happened.
Lab 15 - Renal Physiology 125 Discussion 1. Use your results in Table 15.3 to compare and explain the results between these pairs: Water drinker and V8 drinker Water drinker and Sprite drinker Water drinker and Diet Coke drinker 2. Explain why an animal with longer loops of Henle would produce smaller volumes of more concentrated urine.
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