Newton's Second Law - Basic Acceleration Calculations (a = F / m)
In this exercise, students will explore Newton's Second Law of Motion by calculating acceleration using the formula \( a = \frac{F}{m} \), where they will solve real-world problems involving varying forces and masses to understand the relationship between force, mass, and acceleration in a fun and interactive way. Engage with hands-on experiments and simulations to see these principles in action!
Questions
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MultiChoice
A force of 40 N is applied to a 10 kg object. What is its acceleration?
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MultiChoice
Calculate acceleration when a 100 N net force acts on a 20 kg mass.
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MultiChoice
A 15 N force acts on a 3 kg object. What acceleration is produced?
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MultiChoice
Find the acceleration of a 25 kg box pushed with a net force of 50 N.
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MultiChoice
A 200 N force acts on a 50 kg load. What is the acceleration?
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MultiChoice
Calculate acceleration for an 18 N force applied to a 6 kg object.
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MultiChoice
A net force of 90 N acts on a 15 kg object. Find acceleration.
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MultiChoice
What acceleration results from a 35 N force on a 7 kg mass?
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MultiChoice
A force of 120 N acts on a 30 kg cart. Calculate acceleration.
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MultiChoice
Find the acceleration of a 2 kg body acted upon by an 8 N net force.
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MultiChoice
A net force of 64 N acts on a 16 kg object. What is its acceleration?
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MultiChoice
Calculate acceleration when 75 N is applied to a 15 kg mass.