Giraffe bending to drink. In a giraffe with its head 2.0 m above its heart and its heart 2.0 m above its feet. the (hydrostatic) gauge pressure in the blood at its heart, is250 torr. Assume that the giraffe stands upright and the Mood density is 1.06 × 10 3 kg/m 3 . In torr (or mm Hg), find the (gauge) blood pressure (a) at the brain (the pressure is enough lo perfuse the brain with blood, to keep the giraffe from fainting) and (b) at the feet (the pressure must be countered by tight-filling skin acting like a pressure stocking). (c) If the giraffe were to lower its head to drink from a pond without splaying its legs and moving slowly, what would be the increase in the blood pressure in the brain? (Such action would probably be lethal.)
Giraffe bending to drink. In a giraffe with its head 2.0 m above its heart and its heart 2.0 m above its feet. the (hydrostatic) gauge pressure in the blood at its heart, is250 torr. Assume that the giraffe stands upright and the Mood density is 1.06 × 10 3 kg/m 3 . In torr (or mm Hg), find the (gauge) blood pressure (a) at the brain (the pressure is enough lo perfuse the brain with blood, to keep the giraffe from fainting) and (b) at the feet (the pressure must be countered by tight-filling skin acting like a pressure stocking). (c) If the giraffe were to lower its head to drink from a pond without splaying its legs and moving slowly, what would be the increase in the blood pressure in the brain? (Such action would probably be lethal.)
Giraffe bending to drink. In a giraffe with its head 2.0 m above its heart and its heart 2.0 m above its feet. the (hydrostatic) gauge pressure in the blood at its heart, is250 torr. Assume that the giraffe stands upright and the Mood density is 1.06 × 103 kg/m3. In torr (or mm Hg), find the (gauge) blood pressure (a) at the brain (the pressure is enough lo perfuse the brain with blood, to keep the giraffe from fainting) and (b) at the feet (the pressure must be countered by tight-filling skin acting like a pressure stocking). (c) If the giraffe were to lower its head to drink from a pond without splaying its legs and moving slowly, what would be the increase in the blood pressure in the brain? (Such action would probably be lethal.)
Using the Experimental Acceleration due to Gravity values from each data table, Data Tables 1, 2, and 3; determine the Standard Deviation, σ, mean, μ, variance, σ2 and the 95% Margin of Error (Confidence Level) Data: Ex. Acc. 1: 12.29 m/s^2. Ex. Acc. 2: 10.86 m/s^2, Ex. Acc. 3: 9.05 m/s^2
In the Super Smash Bros. games the character Yoshi’s has a “ground pound” down special move where he launches himself downward to attack an enemy beneath him. A) If Yoshi flings himself downwards at 9.76 miles per hour to hit an enemy 10.5 m below him, how fast is Yoshi traveling when he hits the enemy? 1 mile = 1609 m B) How much time does it take Yoshi to hit the enemy beneath him?
Microbiology with Diseases by Body System (5th Edition)
Knowledge Booster
Learn more about
Need a deep-dive on the concept behind this application? Look no further. Learn more about this topic, physics and related others by exploring similar questions and additional content below.