PREP GUIDE QUESTION ELITE TEST BANK & CLOSE-
QUARTERS MANEUVERING MASTERCLASS
This premium exam bank delivers the most comprehensive preparation
available for the ASA 118 Docking Endorsement, features curriculum-
aligned multiple-choice questions, and includes expert rationales in bold
italic format to ensure a perfect score on your certification. Specifically
engineered to maximize downloads on Docsity and Stuvia, the study guide
masterfully breaks down complex close-quarters maneuvering tactics,
propeller walk dynamics, and advanced spring line mechanics. It serves
as an indispensable academic asset for student mariners, sailing
instructors, and charter captains looking to master vessel control under
heavy wind and current conditions.
Section 1: Propeller Dynamics & Pivot Points
(Questions 1–13)
1. What is the fundamental cause of the lateral force
known as "propeller walk"?
A) The shape of the sailboat's rudder blade
B) The difference in water pressure at the top and
bottom of the propeller's rotation arc
C) The aerodynamic windage of the cabin trunk
D) The longitudinal placement of the keel
Answer: B
Rationale: Prop walk occurs because the propeller
blades at the bottom of their rotation arc operate in
,deeper, higher-pressure water than the blades at
the top. This creates asymmetric thrust, pushing the
stern laterally.
2. When a single-screw vessel with a right-handed
propeller is placed in reverse, which direction will
the stern naturally swing?
A) To starboard
B) Straight back
C) To port
D) Downwind
Answer: C
Rationale: A right-handed propeller rotates
counter-clockwise in reverse gear. The higher
blade efficiency at the bottom of the arc kicks or
"walks" the stern forcefully to port.
3. Where is the typical pivot point of a modern fin-
keel sailboat when moving ahead with steady
forward steerageway?
A) At the transom
B) Approximately 25% to 33% aft from the bow
C) At the exact geometric center of the waterplane
D) At the lower tip of the rudder
Answer: B
Rationale: When making headway, hydrodynamic
,resistance against the forward hull and leading
edge of the keel establishes a pivot point located
roughly one-quarter to one-third of the way aft
from the bow.
4. How does the pivot point shift when a sailboat
transitions from making headway to making
sternway?
A) It moves forward toward the stem
B) It remains completely stationary
C) It shifts significantly aft, typically near the rudder
post
D) It drops lower down the keel profile
Answer: C
Rationale: As water flows over the hull from stern
to bow during reverse propulsion, the point of
rotation shifts aft, locating itself closer to the
cockpit and rudder assembly.
5. What is the phenomenon known as "rudder
authority" or "wash"?
A) The friction of the hull against the dock
B) The immediate steering force created by the
propeller discharge hitting the rudder blade in
forward gear
C) The suction created by water entering the
, propeller cavity
D) The rolling motion caused by wave action
Answer: B
Rationale: Rudder wash provides instant turning
leverage when entering forward gear from a
standstill because the engine actively forces water
across the rudder blade before the boat even
moves through the water.
6. Why do you lack immediate steering control when
first engaging reverse gear from a standstill?
A) The engine cannot deliver high RPM in reverse
B) The propeller discharge moves forward,
bypassing the rudder entirely
C) The keel completely stalls out
D) The wind immediately overpowers the boat
Answer: B
Rationale: In reverse, the propeller draws water
from aft and discharges it forward across the hull,
leaving the rudder completely dependent on the
boat building up actual sternway through the water
to function.
7. To achieve a tight, 360-degree pivot to starboard
in a right-handed single-screw vessel, what
technique should be used?