Changes in motion are affected by the mass of the object. Newton's Second Law of Motion states that Force = (mass)(acceleration), or F=ma. This can be rewritten as: acceleration = Force/mass, or a=F/m. Acceleration is a measure of the rate of change of velocity of an object. If the same force is used, the objects with a bigger mass will accelerate at a lower rate.
The ball is the independent variable in this scenario as we can manipulate or change its properties (such as mass, size, material) to observe how it affects the motion down the ramp, which is the dependent variable.
Size of acceleration = (net force)/(mass)
Yes, the mass of a marble affects its motion because objects with larger mass have greater inertia, meaning they resist changes in their motion more. A heavier marble will require more force to move it compared to a lighter marble of the same size.
F=mxa, m = can be small or large, a = change the motion (acceleration), F = the cause of the change the motion F1 changes the motion of m1 at a F2 changes the motion of m2 at a (same force, same size mass) (F1+F2) changes the motion of (m1 +m2) at a So it takes twice the force (F1+F2) to move twice the mass (m1 + m2) at the same change in motion (acceleration). If (F1 + F2) were to move smaller mass (m1) the acceleration would be larger. The "why" is hidden in the formula.
for a given force, a better drag coefficient will yield a greater velocity
yes
Size affects acceleration in terms of mass. If the size or mass is bigger, acceleration will be lower and vice versa.
structure and composition of the motion
The second law is about how the force affects the motion. A relatively small force could make, say, a tennis ball accelerate a lot (e.g. changing its direction completely), but could not make the motion of, for example, a truck change very much. This is because the mass of the objects are very different. Similarly, if two objects had the same mass, a large force would change the motion a lot, where as a small force not so much. So the change in motion depends on the size of the force and the mass of the object.
The factor that least affects a compound's tendency to change state is the size or mass of the compound's individual particles. Larger or heavier particles generally have a higher tendency to change state due to stronger intermolecular forces.
simple if you are talking about the mass/size of somthing eg. the rocks mass affects the water levels
The moment of inertia graph represents how an object's mass is distributed around its axis of rotation. It shows how the object's mass is concentrated and how it affects its rotational motion. The shape of the graph can indicate the object's size, shape, and density distribution, which in turn affects its rotational inertia and how it responds to external forces.