Free Ramsay Mechanical Reasoning Question and Answers — Questions and Answers
Question 1: What color should your automobile not be painted if you don't want it to quickly overheat on a sunny day?
- Matte black (Correct answer)
- Silver
- Any reflective colour
- Bright white
Correct answer: Matte black
Darker colors, especially matte finishes, absorb significantly more solar radiation than lighter or reflective colors. Matte black absorbs the most heat, causing the car's interior and exterior to heat up more quickly and to a higher temperature on a sunny day.
Question 2: How many rotations a second does C make?
- 5
- 10 (Correct answer)
- 15
- 20
Correct answer: 10
This question refers to a diagram of interconnected gears. To determine the rotations per second of gear C, one would typically use the gear ratio principle: the product of the number of teeth and rotations per second is constant for meshing gears. By comparing the number of teeth on gear C to a driving gear with a known rotation speed, the rotations per second for C can be calculated based on the specific gear configuration shown in the diagram.
Question 3: Which viewpoint has the most potential for error?
- A
- B
- C (Correct answer)
Correct answer: C
This question refers to a diagram, likely illustrating different viewing angles for a measurement. Viewpoint C, often depicted as an oblique or angled perspective, is most prone to parallax error. Parallax occurs when the apparent position of an object changes due to a change in the observer's position, leading to inaccurate readings compared to a direct, perpendicular view.
Question 4: Which line on the graph most accurately depicts the acceleration of a car leaving a stop sign?
- A
- B
- C (Correct answer)
Correct answer: C
This question refers to a speed-time graph. A car accelerating from a stop sign starts with zero speed and continuously increases its speed. Line C typically represents a curve that starts at the origin (zero speed, zero time) and shows a progressively increasing slope, indicating positive and possibly increasing acceleration, which accurately depicts a car leaving a stop sign.
Question 5: Which container is depicted in this graph with water inside it?
- A
- B (Correct answer)
- C
- D
Correct answer: B
This question refers to a graph showing the relationship between water volume and height for different container shapes. Container B would likely have a specific, non-uniform shape (e.g., wider at the bottom, narrower at the top, or vice versa) that results in a unique, non-linear curve on the graph as it fills with water. The graph for B would visually represent this specific volume-to-height characteristic.
Question 6: What liquid would reach boiling point the quickest?
- Mercury
- Alcohol (Correct answer)
- Water
Correct answer: Alcohol
Alcohol (specifically ethanol) has a significantly lower boiling point (approximately 78°C or 173°F) compared to water (100°C or 212°F) and mercury (357°C or 674°F). Therefore, when subjected to the same heat, alcohol will reach its boiling point and begin to boil the quickest.
Question 7: What letter best describes the northeast?
- A
- B
- C
- D (Correct answer)
Correct answer: D
This question refers to a diagram, likely a compass rose or a map. Assuming a standard orientation where North is at the top, East is to the right, South is at the bottom, and West is to the left, Northeast is the direction halfway between North and East. Letter D would typically be positioned in the upper-right quadrant, representing Northeast.
Question 8: Which magnets are repelled by one another?
- Pairs B and C
- Pairs A and D (Correct answer)
- All of them
- None of them
Correct answer: Pairs A and D
Magnets repel each other when like poles are brought together (North-North or South-South). This question refers to a diagram showing various magnet configurations. Pairs A and D would depict scenarios where two like poles are facing each other, resulting in a repulsive force between them.
Question 9: What amount of force is required to lift the weight using the lever?
- 29.4kg
- 34.3kg (Correct answer)
- 36.4kg
- 38.3kg
Correct answer: 34.3kg
To calculate the force required to lift a weight using a lever, one applies the principle of moments: the force multiplied by its distance from the fulcrum on one side must equal the weight multiplied by its distance from the fulcrum on the other side. Assuming the weight and distances are provided in the accompanying diagram, the calculation would be (Weight × Distance from fulcrum to weight) / (Distance from fulcrum to applied force).
Question 10: How much farther would Spring B be compressed by the same force if it compressed Spring A by 24 cm?
- 8cm
- 12cm (Correct answer)
- 14cm
- 16cm
Correct answer: 12cm
This question relates to Hooke's Law (F=kx), where force is proportional to compression. If Spring A compresses 24 cm for a certain force, and Spring B is half as compliant (or twice as stiff) as Spring A, then for the same force, Spring B would compress half the distance of Spring A. Therefore, if Spring A compresses 24 cm, Spring B would compress 12 cm.
Question 11: During fire rescue operations, firefighters use a Halligan to strongly enter closed doors. Which Halligan could force open the door with the least amount of effort?
- A
- B
- C
- D (Correct answer)
Correct answer: D
This question refers to a diagram illustrating different ways to use a Halligan tool as a lever. To force open a door with the least amount of effort, the tool must be used to maximize mechanical advantage. This typically involves placing the fulcrum as close as possible to the resistance (the door frame) and applying force at the furthest point from the fulcrum, creating the longest possible lever arm. Option D would likely depict this optimal leverage.
Question 12: How much charge goes through a wire in three seconds at a current of 14 amperes?
- 33
- 49
- 42 (Correct answer)
- 51
Correct answer: 42
The amount of electric charge (Q) that flows through a wire is calculated by multiplying the current (I) by the time (t). Using the formula Q = I × t, we get Q = 14 amperes × 3 seconds = 42 Coulombs. Therefore, 42 units of charge pass through the wire.
Question 13: A cylindrical, air-filled, non-pressurized metal tank is submerged under water. The tank gradually sinks farther underwater as the air departs. Which of the following best explains this motion?
- The metal increases in density so it gets heavier
- Water replaces the air in the tank which makes it heavier (Correct answer)
- The bubbles provide a downward thrust on the tank
- The bubbles lower the density of the water which lowers its buoyancy
Correct answer: Water replaces the air in the tank which makes it heavier
As air escapes from the submerged tank, water, which is much denser than air, enters the tank to replace the displaced air. This influx of water significantly increases the overall mass and weight of the tank. Consequently, the tank's buoyancy decreases, causing it to sink farther underwater.
Question 14: Two identical automobiles are parked alongside a bridge. Which area(s) of the bridge would experience the highest deflection if it each had the same thickness?
- Below the cars
- Middle of the bridge (Correct answer)
- Under the towers
- All of the above will have equal deflection
Correct answer: Middle of the bridge
For a simply supported beam, such as a bridge, the maximum bending moment and thus the highest deflection typically occur at the point where the load is most concentrated or centrally distributed. When two identical cars are parked on the bridge, their combined weight creates the greatest stress and downward force in the middle of the bridge, leading to the highest deflection there.
Question 15: When a fire door is left open, a spring on the door pushes and forces it shut. What would happen to the process by which the door closes if the springs were made thicker?
- The door will not fully close
- The door will close slower
- The door will close faster (Correct answer)
- The door will make a screeching noise as it closes
Correct answer: The door will close faster
Thicker springs possess a higher spring constant, meaning they exert a greater restorative force when compressed. This increased force provides more energy to overcome the door's inertia and any friction, resulting in a quicker acceleration and faster closing time for the door. Essentially, a stronger spring applies more power to the closing mechanism.
Question 16: A bolt cutter possesses extended handles with handle grips that are positioned farther away as possible from the neck. Which of the following statements best explains this design?
- It makes the bolt cutter more durable when dropped accidentally
- The appearance of the tool is significantly more aesthetic with longer handles
- Longer handles make the cutting blade move faster
- It provides mechanical advantage which allows cutting through thick bolts. (Correct answer)
Correct answer: It provides mechanical advantage which allows cutting through thick bolts.
Bolt cutters are designed as a class 1 lever system. By extending the handles, the distance from the pivot point (fulcrum) to where the user applies force is increased. This design maximizes mechanical advantage, allowing a relatively small input force from the user to generate a significantly larger cutting force at the blades, enabling them to cut through thick bolts.
What color should your automobile not be painted if you don't want it to quickly overheat on a sunny day?