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Blocks with masses of 1.0 kg, 2.0 kg, and 3.0 kg are lined up in a row on a frictionless table. All three are pushed forward by a 17 N force applied to the 1.0 kg block.

Blocks with masses of 1.0 kg, 2.0 kg, and 3.0 kg are lined up in a row on a frictionless table. All three are pushed forward by a 17 N force applied to the 1.0 kg block. Part A:
How much force does the 2.0 kg block exert on the 3.0 kg block?

Part B
How much force does the 2.0 kg block exert on the 1.0 kg block?

The 2.0 kg block exert8.5 Newtonon the 3.0 kg blockThe 2.0 kg block exert14¹/₆ Newtonon the 1.0 kg blockFurther explanationNewton's second law of motionstates that the resultant force applied to an object is directly proportional to the mass and acceleration of the object.F = Force ( Newton )m = Object's Mass ( kg )a = Acceleration ( m )Let us now tackle the problem !We will use Newton's 2nd law formula for this problem.Part A:The force acting on the 3.0 kg block could be calculated as follows:Part B:The force acting on the 1.0 kg block could be calculated as follows:Learn moreImpacts of Gravity :brainly.com/question/5330244Effect of Earth’s Gravity on Objects :brainly.com/question/8844454The Acceleration Due To Gravity :brainly.com/question/4189441Newton's Law of Motion:brainly.com/question/10431582Example of Newton's Law:brainly.com/question/498822Answer detailsGrade:High SchoolSubject:PhysicsChapter:DynamicsKeywords:Gravity , Unit , Magnitude , Attraction , Distance , Mass , Newton , Law , Gravitational , Constant...

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