Projectiles | Jamb(UTME)
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Guess what! your imagination is now a reality.
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In this post, we have enumerated a good number of points from the topic Projectiles which was extracted
from the Jamb syllabus. I would advice you pay attention to each of the point knowing and understanding them by heart.
Happy learning.
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The table of content below will guide you on the related topics pertaining to "Projectile" you can navigate to the one that captures your interest
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Table of Contents
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Here are 50 easy-to-understand points covering calculation of range, maximum height, time of flight, and applications of projectile motion:
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Projectile Motion Basics
- Projectile motion occurs when an object is launched into the air and moves under the influence of gravity.
- The motion is two-dimensional, consisting of horizontal and vertical components.
- Air resistance is often neglected in basic projectile motion problems.
- The horizontal velocity remains constant since there is no acceleration in that direction.
- The vertical velocity changes due to gravity
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Range of a Projectile
- The range is the horizontal distance a projectile travels before hitting the ground.
- The formula for range is:
paragraphparagraphwhere is the initial velocity, is the angle of projection, and is acceleration due to gravity.
- The range is maximum when the angle of projection is .
- Range increases with greater initial velocity .
- The range is zero if the object is projected straight up .
- For the same initial speed, complementary angles yield the same range.
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Maximum Height
- The maximum height is the highest vertical position reached by the projectile.
- The formula for maximum height is:
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- At maximum height, the vertical velocity becomes zero momentarily.
- The greater the angle of projection, the higher the maximum height up to .
- Maximum height is independent of the horizontal velocity.
- Increasing the initial velocity increases the maximum height.
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Time of Flight
- The time of flight is the total time the projectile spends in the air.
- The formula for time of flight is:
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- Time of flight depends on the vertical component of the initial velocity .
- Doubling the initial velocity doubles the time of flight.
- Time of flight is longer for steeper angles of projection.
- For vertical motion , the time of flight is maximum for the given velocity.
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Key Observations
- Range, maximum height, and time of flight are interconnected.
- If the launch angle is increased beyond , the range decreases, but the height and time increase.
- Horizontal and vertical motions are independent of each other.
- At , the projectile reaches maximum height.
- The horizontal velocity at any time is .
- The vertical velocity at any time is:
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- Displacement in the vertical direction is given by:
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Applications of Projectile Motion
- Sports: Understanding projectile motion helps in predicting the trajectory of balls in games like football, basketball, or cricket.
- Space Exploration: Rockets follow projectile motion paths in their initial phases.
- Artillery and Ballistics: Engineers use projectile motion principles to design and aim artillery.
- Aviation: Pilots and engineers analyze projectile motion during takeoffs and landings.
- Physics Experiments: Projectile motion is studied in labs to understand kinematics and dynamics.
- Entertainment: Stunt coordinators in movies use projectile motion to plan action scenes.
- Engineering: Architects use projectile motion concepts to design curved structures like arches.
- Water Fountains: The motion of water in fountains follows a projectile trajectory.
- Diving and Gymnastics: Athletes analyze projectile motion for precise landing and jumps.
- Agriculture: Farmers use projectile motion principles in designing irrigation systems.
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Practical Considerations
- Air resistance can reduce the range and maximum height in real-world situations.
- In games like golf, wind direction affects the trajectory of the ball.
- Launching objects on other planets requires accounting for different gravity values.
- Parabolic paths in projectile motion are ideal; real-world trajectories deviate slightly.
- In cannonball firing, elevation angles are adjusted to maximize range.
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Solving Projectile Motion Problems
- Break the motion into horizontal and vertical components for simplicity.
- Use for horizontal velocity and for vertical velocity.
- Time of flight is calculated using vertical motion equations.
- The range is computed using horizontal motion and time of flight.
- Maximum height is determined using vertical motion equations.
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Jamb(utme) key points solving problems involving projectile motion
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Here are 30 projectile motion questions with solutions:
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Question 1: Finding Time of Flight
- A ball is projected vertically upwards with a velocity of . How long will it stay in the air?
- Solution:
- Total time of flight :
-
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Question 2: Maximum Height
- What is the maximum height reached by the ball in Question 1?
- Solution:
-
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Question 3: Horizontal Range
- A projectile is launched at with an initial velocity of . Find its range.
- Solution:
-
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Question 4: Velocity at a Given Time
- A projectile is launched at with . What is the vertical velocity after ?
- Solution:
-
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Question 5: Height at a Given Time
- Find the height of the projectile in Question 4 after .
- Solution:
-
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Question 6: Time to Reach Maximum Height
- How long does it take to reach the maximum height for a projectile launched at at ?
- Solution:
-
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Question 7: Maximum Height
- Find the maximum height for the projectile in Question 6.
- Solution:
-
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Question 8: Horizontal Displacement After Given Time
- A projectile is launched at with . Find its horizontal displacement after .
- Solution:
-
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Question 9: Total Time of Flight
- Calculate the total time of flight for the projectile in Question 8.
- Solution:
-
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Question 10: Range
- Find the range of the projectile in Question 8.
- Solution:
-
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Question 11: Finding Initial Velocity
- A projectile is launched at and lands away. Find its initial velocity.
- Solution:
-
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Question 12: Angle for Maximum Range
- At what angle should a projectile be launched to achieve maximum range?
- Solution:
- .
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Question 13: Projectile Fired from an Elevated Platform
- A projectile is launched from a height at with . How long is it in the air?
- Solution:
- Use .
- Solve the quadratic: .
- .
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Question 14: Range from Elevated Platform
- Find the range of the projectile in Question 13.
- Solution:
-
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Question 15: Impact Velocity
- What is the velocity of the projectile in Question 13 upon impact?
- Solution:
- .
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Question 16: Maximum Height from Elevated Platform
- A projectile is launched from a height of at with . Find its maximum height.
- Solution:
- Height above the platform:
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- Total height:
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- Total height:
Question 17: Horizontal Displacement After 2 Seconds
- A projectile is launched at with . Find the horizontal displacement after .
- Solution:
- .
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Question 18: Final Velocity of Projectile
- A projectile is launched at with . Find the velocity upon hitting the ground.
- Solution:
- , .
- Final velocity magnitude:
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Question 19: Range of a Projectile on a Cliff
- A projectile is launched horizontally from a high cliff at . Find the range.
- Solution:
- Time to hit the ground:
- Range:
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Question 20: Time of Flight for Object Thrown Downward
- An object is thrown downward from a height with . Find the time to hit the ground.
- Solution:
- Solve :
- Using the quadratic formula, .
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- Using the quadratic formula, .
- Solve :
Question 21: Time to Fall Back to Launch Height
- A projectile is launched at with . How long does it take to return to the launch height?
- Solution:
- Total time:
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- Total time:
Question 22: Horizontal Velocity After Given Time
- What is the horizontal velocity of the projectile in Question 21 after ?
- Solution:
- Horizontal velocity remains constant:
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- Horizontal velocity remains constant:
Question 23: Total Horizontal Range
- Find the total horizontal range for the projectile in Question 21.
- Solution:
- :
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- :
Question 24: Maximum Height for Horizontal Launch
- A ball is thrown horizontally at from a high building. What is its maximum height above the ground?
- Solution:
- Maximum height is the initial height:
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- Maximum height is the initial height:
Question 25: Impact Velocity for Horizontal Launch
- Find the velocity of the ball in Question 24 upon impact.
- Solution:
- , .
- Final velocity:
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Question 26: Angle of Impact
- Find the angle of impact for the ball in Question 24.
- Solution:
- .
- .
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Question 27: Time of Flight for Level Ground
- A projectile is launched at with . Find the time of flight.
- Solution:
- ,
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- ,
Question 28: Range for Level Ground
- Find the range for the projectile in Question 27.
- Solution:
- :
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- :
Question 29: Maximum Height for Level Ground
- Find the maximum height for the projectile in Question 27.
- Solution:
- :
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- :
Question 30: Range with Increased Initial Speed
- If the speed in Question 27 increases to , find the new range.
- Solution:
- :
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I recommend you check my article on the following:
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- Key Points and Summaries on Newton's Laws of Motion for Jamb(UTME Candidates)
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This is all we can take on "Jamb Physics Key Points and Summaries on Projectiles for UTME Candidates"
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