a technical scuba diver (under water) is practicing in a large water tank with a radius of 26.0m. if she reaches a depth of 33.0m, find the absolute pressure on the diver at this point.
a technical scuba diver (under water) is practicing in a large water tank with a radius...
A scuba diver whose 12L tank is filled with air at a pressure of 150atm at a depth of 15m where the water pressure is 2.5atm. If she uses 30L of air per minute, the same pressure as the water pressure, how long can she stay at that depth? Please show work
A SCUBA tank, an air tank used for breathing under water, is initially filled with gas at a pressure of 2.2x107 Pa and 24 oC. The tank has a volume of 16.0 L. If the tank will continue to provide air until it reaches a pressure of 2.2x106 Pa, how many moles of gas will it provide to a diver diving in water at 6 oC? Give your answer to at least three significant figures.
A scuba diver creates a spherical bubble with a radius of 2.0 cm at a depth of 30.0 m where the total pressure (including atmospheric pressure) is 4.00 atm. What is the radius of the bubble when it reaches the surface of the water? (Assume atmospheric pressure to be 1.00 atm and the temperature to be 298 K.)
A scuba diver creates a spherical bubble with a radius of 3.5 cm at a depth of 30.0 m where the total pressure (including atmospheric pressure) is 4.00 atm. What is the radius of the bubble when it reaches the surface of the water? (Assume atmospheric pressure to be 1.00 atm and the temperature to be 298 K.) Express your answer using two significant figures.
9. A scuba diver is in fresh water has an air tank with a volume of 0.0100 m3. The air in the tank is initially at a pressure of 1.00 × 107 Pa. Assume that the diver breathes 0.500 L/s of air. Density of fresh water is 1.00 × 103 kg/m3. How long will the air in the tank last at 17.4 m? Answer is in min
Exercise 5.85 Part A A scuba diver creates a spherical bubble with a radius of 2.5 cm at a depth of 30.0 m where the total pressure (including atmospheric pressure) is 4.00 atm What is the radius of the bubble when it reaches the surface of the water? (Assume atmospheric pressure to be 1.00 atm and the temperature to be 298 K.) Express your answer using two significant figures. r= cm Submit My Answers Give Up Provide Feedback Continue
3) A breathing mixture of oxygen and nitrogen is prepared for a scuba diver who is going to descend 400 ft below the ocean surface. At that depth, the diver breathes a gas mixture that has a total pressure of 8.00 atm. If the partial pressure of the oxygen in the tank at that depth is 1200 mmHg, what is the partial pressure, in atmospheres, of the nitrogen in the breathing mixture?
a scuba diver tank contains 0.18 kg of O2 compressed into a volume of 4.0 L. calculate the gas pressure inside the tank at 15 degrees Celsius.
A scuba diver releases a balloon containing 115.0 L of helium attached to a tray of artifacts at an underwater archaeological site (see photo). When the balloon reaches the surface, it has expanded to a volume of 316.0 L. Image Credit: Jonathan Blair / Getty Images 3rd attempt Part 1 (1 point)See HintSee Periodic Table The pressure at the surface is 1.000 atm. What is the pressure at the underwater site? atm Part 2 (1 point)See Hint If pressure increases...
A scuba diver descends to 40 meters below the surface and has a 10 liter tank that contains air at 9 MPa and 7 C. Assume that the water has a density of 1000 kg/m3 and that atmospheric air is 100 kPa. He breathes at 5 liters/min. How long can he stay at the 40 meter depth? answer should be around 34.6 minutes