← All PADI Flashcard Decks

PADI Physics & Physiology of Diving Flashcards

6 cards from real PADI practice questions. Tap to flip, then mark Knew It or Still Learning — missed cards come back until you master them.

Read the first 6 PADI Physics & Physiology of Diving flashcards as text
  1. What is 'oxygen toxicity' and under what conditions does it become a concern for recreational divers?

    Answer: A dangerous reaction to high partial pressures of oxygen, primarily a risk with nitrox at depth

    Oxygen toxicity occurs when the partial pressure of oxygen exceeds safe limits (1.4 ATA working limit), causing convulsions — mainly a risk with nitrox at deeper depths.

  2. What physiological process does Henry's Law describe in the context of diving?

    Answer: The amount of gas dissolved in a liquid is proportional to the partial pressure of that gas above the liquid

    Henry's Law explains why more nitrogen dissolves into a diver's blood and tissues at greater depths — as partial pressure increases, more gas goes into solution.

  3. What is 'barotrauma' as it relates to scuba diving?

    Answer: Tissue damage caused by unequal pressure between an air space and surrounding water pressure

    Barotrauma is injury to body tissues (ears, sinuses, lungs) caused by failure to equalize the pressure difference between an enclosed air space and the surrounding water.

  4. Which technique does PADI recommend for equalizing ear pressure during descent?

    Answer: Valsalva maneuver (pinch nose and gently blow)

    The Valsalva maneuver — pinching the nose and gently blowing — opens the Eustachian tubes to equalize pressure on the eardrums during descent.

  5. What is hypercapnia and what typically causes it in scuba divers?

    Answer: A buildup of carbon dioxide in the blood, often caused by skip breathing or overexertion

    Hypercapnia is CO2 buildup resulting from inadequate ventilation, often triggered by skip breathing (holding breath between inhales) or heavy exertion underwater.

  6. What is the 'squeeze' that affects a diver's mask during descent, and how is it corrected?

    Answer: The mask presses against the face as external pressure increases; corrected by exhaling air into the mask through the nose

    Mask squeeze occurs because the airspace inside the mask becomes a low-pressure zone relative to surrounding water as depth increases; exhaling through the nose equalizes the pressure.