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ASA 118 – Docking Endorsement Practice Exam Questions and Correct Answers (Verified) Plus Rationales 2026 Q&A | Instant Download PDF

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ASA 118 – Docking Endorsement Practice Exam Questions and Correct Answers (Verified) Plus Rationales 2026 Q&A | Instant Download PDF ASA 118 – Docking Endorsement Practice Exam Questions and Correct Answers (Verified) Plus Rationales 2026 Q&A | Instant Download PDF

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ASA 118 – Docking Endorsement
Practice Exam Questions and Correct
Answers (Verified) Plus Rationales
2026 Q&A | Instant Download PDF
Q1. What is the primary factor that affects docking maneuvers?

• A) Compass heading
• B) Tidal currents and wind ✓
• C) Battery charge level
• D) Engine oil temperature

Rationale: Docking is most influenced by external forces such as current and wind,
which significantly affect boat handling .




Q2. What are the four forces affecting docking?

• A) Wind, Waves, Tide, Temperature
• B) Prop Wash, Prop Walk, Wind, Current
• C) Engine, Rudder, Sails, Anchor
• D) Speed, Direction, Draft, Weight

Rationale: The four key forces affecting docking maneuvers are propeller wash,
propeller walk, wind, and current .




Q3. What effect does prop walk have on a single-screw boat in reverse?

• A) The boat moves sideways in forward
• B) The stern moves sideways in reverse ✓
• C) The boat turns more easily
• D) The engine stalls

Rationale: Prop walk causes the stern to move laterally in reverse due to propeller
rotation direction .

,Q4. In which direction does a right-hand propeller tend to walk the stern in
reverse?

• A) Port ✓
• B) Forward
• C) Starboard
• D) Downwind

Rationale: A right-handed propeller in reverse pulls the stern to port (left). Most
right-handed propellers cause the stern to walk to port when in reverse .




Q5. What effect does a left-hand propeller have in reverse?

• A) Stern walks to port
• B) Stern walks to starboard ✓
• C) No walk effect
• D) Boat goes straight

Rationale: A left-hand propeller spins counter-clockwise in reverse, pulling the stern
to the right (starboard) .




Q6. What is the most effective way to stop forward motion when approaching a
dock?

• A) Increase throttle in forward
• B) Shift to neutral and wait
• C) Turn the wheel hard to starboard
• D) Apply reverse thrust ✓

Rationale: Applying reverse thrust counteracts forward momentum and brings the
boat to a stop safely. Reverse thrust should be applied in short, controlled bursts .




Q7. What is the best approach angle when docking in calm conditions?

, • A) 90 degrees
• B) 60 degrees
• C) 30 to 45 degrees ✓
• D) Parallel

Rationale: A 30-45 degree approach angle allows the helmsman to adjust speed and
position while maintaining control .




Q8. What is the key speed principle when approaching a dock?

• A) Approach at maximum speed
• B) Approach at the minimum speed necessary for control ✓
• C) Maintain cruising speed
• D) Use full throttle

Rationale: Low speed allows time to react and reduces damage from potential
impact .




Q9. What is the main danger when docking too fast?

• A) You miss the dock
• B) Damage to the boat or dock ✓
• C) You don't tie off
• D) The boat won't respond

Rationale: Momentum increases with speed and can cause serious impact damage if
control is lost .




Q10. What is the most challenging wind condition for docking?

• A) Headwind
• B) Tailwind
• C) Strong wind on the beam (crosswind) ✓
• D) No wind

, Rationale: Beam wind pushes the boat sideways, complicating alignment and
increasing collision risk .




Q11. What is the best method to account for a strong crosswind when docking?

• A) Dock with the wind
• B) Ignore it
• C) Approach at a steeper angle and use reverse to correct drift ✓
• D) Use full throttle

Rationale: A steeper approach angle and timely reverse corrections help offset the
boat's sideways drift caused by crosswind .




Q12. Which docking technique compensates for lateral drift from current?

• A) Sidling
• B) Crabbing into current (bow angled upstream) ✓
• C) Broadside approach
• D) Full reverse

Rationale: Pointing the bow slightly into the current reduces sideways drift—a
technique called "crabbing" .




Q13. How does a crosswind affect a single-screw vessel during docking?

• A) Pushes bow into dock
• B) Pushes stern sideways equally
• C) The bow turns downwind faster than the stern ✓
• D) No effect on the vessel

Rationale: The bow has more windage and less lateral resistance, causing it to turn
downwind faster than the stern .

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