Lesson 7.1.2

7.1.2 Sliding filament theory of muscle contraction Quiz: Pearson Edexcel Biology, Unit 7

20 questions

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Lesson 7.1.2, Sliding filament theory of muscle contraction: 20 multiple choice questions for the Pearson Edexcel Biology (9BI0), Unit 7: Run for your Life, written with Revision Ninja.

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The 20 questions

  1. Which molecule binds to myosin to cause its detachment from actin?

    • ADP
    • Calcium ions
    • ATP
    • Troponin
  2. What does calcium bind to in muscle myofibrils to trigger contraction?

    • Myosin
    • Troponin
    • Actin
    • Tropomyosin
  3. Which band in the sarcomere remains constant in length during muscle contraction?

    • H zone
    • I band
    • A band
    • Z line
  4. What happens to the myosin head during the power stroke?

    • It unwinds
    • It expands
    • It pivots
    • It detaches
  5. What is the primary role of ATPase in muscle contraction?

    • Binding calcium ions
    • Hydrolysing ATP
    • Transporting sodium ions
    • Synthesising ATP
  6. Which structure in a muscle fibre stores calcium ions?

    • Sarcolemma
    • T-tubules
    • Sarcoplasmic reticulum
    • Mitochondria
  7. Muscle relaxation occurs when calcium ions are actively transported into which structure?

    • T-tubules
    • Myosin heads
    • Sarcolemma
    • Sarcoplasmic reticulum
  8. Which protein forms the thick filaments inside a myofibril?

    • Myosin
    • Actin
    • Tropomyosin
    • Troponin
  9. ATP binding to the myosin head is required for which process?

    • Binding to actin
    • Releasing calcium ions
    • Shortening actin filaments
    • Detaching from actin
  10. What directly triggers calcium release from the sarcoplasmic reticulum?

    • ATP hydrolysis
    • Depolarisation of T-tubules
    • Troponin binding
    • Myosin pivoting
  11. What happens if calcium cannot bind to troponin during muscle stimulation?

    • Myosin heads detach
    • Sarcomeres shorten completely
    • Continuous muscle contraction
    • Binding sites blocked
  12. What is the main function of tropomyosin in a resting muscle fibre?

    • Pumping calcium ions
    • Blocking binding sites
    • Anchoring myosin filaments
    • Hydrolysing ATP
  13. How many ATP molecules are hydrolysed per cross-bridge cycle?

    • Two
    • Zero
    • One
    • Three
  14. During muscle contraction, what happens to the length of actin and myosin filaments?

    • Doubles in length
    • Lengthens slightly
    • Shortens significantly
    • Remains unchanged
  15. Which structures mark the outer boundaries of a single sarcomere?

    • M lines
    • A bands
    • H zones
    • Z lines
  16. Which event immediately follows the power stroke during cross-bridge cycling?

    • Calcium release
    • ADP synthesis
    • ATP binds myosin
    • Tropomyosin detachment
  17. Cross-bridges form between myosin heads and which other structure?

    • Actin binding sites
    • T-tubules
    • Z lines
    • Sarcoplasmic reticulum
  18. A sarcomere shortens from 2.4 μm to 1.8 μm during muscle contraction. What is the percentage shortening?

    • 25%
    • 33%
    • 20%
    • 75%
  19. What happens to the H zone of a sarcomere during full muscle contraction?

    • Narrows and disappears
    • Widens significantly
    • Remains unchanged
    • Doubles in length
  20. Which state occurs when myosin heads remain bound to actin due to a lack of ATP?

    • Relaxed state
    • Rigor state
    • Power stroke state
    • Resting state

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