The object with the greatest mass is probably a supermassive black hole located in the center of a galaxy, such as the one in the Milky Way galaxy. These black holes are believed to have masses equivalent to millions or even billions of times the mass of our sun.
An object with greater mass will generally have greater inertia. Therefore, the object with the greatest mass among the options provided would have the greatest inertia.
Kinetic energy = one-half the product of an object's massand the square of its speed.So, the object with the greatest product of (mass) x (speed)2 has the greatest kinetic energy.
The greatest acceleration will occur in the object with the smallest mass. This is because acceleration is inversely proportional to mass when a constant force is applied (F = ma). The object with the smallest mass will experience the greatest acceleration when the same force is applied.
The object with the smallest mass would have the greatest acceleration when pushed with a force of 8.2 N, as acceleration is inversely proportional to mass when force is constant.
The object with the mass of 50g has the greatest density because density is mass divided by volume, and since volume is the same for both objects (since they are the same size), the object with the greater mass will have the greater density.
The object with the greatest mass.
An object with greater mass will generally have greater inertia. Therefore, the object with the greatest mass among the options provided would have the greatest inertia.
Kinetic energy = one-half the product of an object's massand the square of its speed.So, the object with the greatest product of (mass) x (speed)2 has the greatest kinetic energy.
The greatest acceleration will occur in the object with the smallest mass. This is because acceleration is inversely proportional to mass when a constant force is applied (F = ma). The object with the smallest mass will experience the greatest acceleration when the same force is applied.
The object with the smallest mass would have the greatest acceleration when pushed with a force of 8.2 N, as acceleration is inversely proportional to mass when force is constant.
Objects with the greatest mass will have the greatest force of gravity attracting them to the surface of the earth. Gravitational attraction is based on the mass of an object and the distance between the two "attractors" involved. For things on the Earth's surface, more mass equates to greater gravitational attraction. It's a direct relationship.
The object with the mass of 50g has the greatest density because density is mass divided by volume, and since volume is the same for both objects (since they are the same size), the object with the greater mass will have the greater density.
The greatest influence on the potential energy of an object is its mass and height above a reference point, such as the ground. The potential energy increases with an increase in mass and height because there is more gravitational potential energy stored in the object.
inertia just depends on mass. Big mass=hard to move.
Increasing the mass of an object will have the greatest impact on its kinetic energy, as kinetic energy is directly proportional to mass (KE = 0.5 * m * v^2). Doubling the mass of an object will double its kinetic energy, assuming the velocity remains constant.
An object has the most kinetic energy when it is moving at its maximum speed. Kinetic energy is directly proportional to an object's mass and the square of its velocity, so as speed increases, so does kinetic energy.
An object has the most density when it has the greatest mass for its volume compared to other objects of the same material. Density is calculated as mass divided by volume, so the object with the most mass in the least volume will have the highest density.