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MCAT Chemical and Physical Foundations Physics Medium PYQ Pattern Practice

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Learn + Solve: Shortcut, Trap & Fast Route Click to view shortcut, steps, and common mistake
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Solve this faster with the right shortcut first

Shortcut used: Draw the system, convert to SI units, select one governing equation, solve symbolically, and verify direction, magnitude, and dimensions.
Solve in 3 steps:
  1. Mark the given values and the exact target.
  2. Apply the relevant formula, rule, or concept.
  3. Check the final value against the options.
Common mistake: Do not choose an option before confirming the exact demand of the question.
Question 5 Multiple Choice Question
Question
PASSAGE 2 — BLOOD FLOW MODEL A researcher models blood as an incompressible fluid flowing steadily through a horizontal artery. A section of radius 2.0 mm narrows to radius 1.0 mm. The volume flow rate is 4.0 × 10⁻⁶ m³/s. For a separate calculation, assume laminar flow obeys Poiseuille's law, Q = ΔPπr⁴/(8ηL). Blood density is 1000 kg/m³. QUESTION 5: Approximately what is the blood speed in the 1.0 mm-radius section?
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MCAT Chemical and Physical Foundations Physics
95s
Question 5
Medium Marks: 1.0 PYQ Pattern Practice

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Upgrade to unlock all Physics questions.

View Plans
Learn + Solve: Shortcut, Trap & Fast Route Click to view shortcut, steps, and common mistake
Learn + solve

Shortcut used, common trap, and the fastest solving route

Shortcut used: Draw the system, convert to SI units, select one governing equation, solve symbolically, and verify direction, magnitude, and dimensions.
Solve in 3 steps:
  1. Mark the given values and the exact target.
  2. Apply the relevant formula, rule, or concept.
  3. Check the final value against the options.
Common mistake: Do not choose an option before confirming the exact demand of the question.
Question

PASSAGE 2 — BLOOD FLOW MODEL A researcher models blood as an incompressible fluid flowing steadily through a horizontal artery. A section of radius 2.0 mm narrows to radius 1.0 mm. The volume flow rate is 4.0 × 10⁻⁶ m³/s. For a separate calculation, assume laminar flow obeys Poiseuille's law, Q = ΔPπr⁴/(8ηL). Blood density is 1000 kg/m³. QUESTION 5: Approximately what is the blood speed in the 1.0 mm-radius section?

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PYQ-style pattern Concept tagged
Draw the system convert to SI units select one governing equation solve symbolically and verify direction magnitude