Projectile motion is the motion of an object thrown or projected into the air, subject to only the acceleration of gravity. The object is called a projectile, and its path is called its trajectory. The motion of falling objects, as covered in Problem-Solving Basics for One-Dimensional ...
Power Formula Specific Gravity Formula Projectile Motion Formulas Torque Formula (Moment of Inertia and Angular Acceleration) Spring Constant Formula Specific Heat Formula Amplitude Formula Torque Formula (Force at a Distance) Elastic Potential Energy Formula ...
f=ma is the same as f=(mv-mu)/t f=(mv-mu/t) = m (v-u)/t where (v-u)/t = a So they are the same thing just different way of writing it. For jumping I'd look at it as a vertical projectile motion: physics-formulas/Projectile_Motion y = (ut sin A) ...
FormulaDefinition and explanations vAC=vAB+vBCvAC=vAB+vBC vAC is the velocity of A with respect to C (vector)vAB is the velocity of A with respect to B (vector)vBC is the velocity of B with respect to C (vector) Kinematics (Quantitative Description of Projectile Motion) FormulaDefinition ...
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what am I missing from the formula? cos(theta) and sin(theta)? On the hanging block , it's not -g, it's mg ot -mg depending on your sign convention, and you're forgetting may. On your analysis of the block on the incline you need to use vector's components. Oct 7, 2004 #...
Projectile motion involves the motion of an object in (usually) two dimensions under the force of gravity. The behavior of the object in the x-direction and in the y-direction can be described separately in assembling the greater picture of the particle's motion. This means that "g" appears...
Projectile–It is the type of motion which has a horizontal displacement as well as vertical displacement. Oscillatory–It is the type of motion which is repetitive in nature within a time frame. If it is mechanical it is called vibration. ...
centripetal or radial acceleration (aR) as related to the radius of the circle and the period (T) or frequency (f) of the motion centripetal force formula ∑FR = m*(v²/r) centripetal force (Fr) as related to the object's mass (m), the object's speed (v) and the radius of ...
of projectile motion was a crucial one for Aristotelian mechanics, and the analysis of this problem represents one of the most impressive medieval contributions to physics. Because of the assumption that continuation of motion requires the continued action of a motive force, the continued motion of...