Speed is not directly relative to mass. An object's speed is determined by its velocity, which is a measure of both the speed and direction of its motion. While mass can affect an object's acceleration and how it responds to external forces, it does not directly determine its speed.
Momentum = mass x speed so speed = momentum/mass or V=P/m
1/1840 the mass if a hydrogen atom.
The Earth's speed relative to the center of the galaxy is approximately 514,000 miles per hour.
The atomic mass of xenon is about 131.29 atomic mass units.
The relationship between the speed and mass of an object is that the speed of an object is affected by its mass. In general, the greater the mass of an object, the more force is needed to accelerate it to a certain speed. This means that objects with more mass require more energy to move at the same speed as objects with less mass.
Mass IS relative to the speed you are going.
if we reach the speed of light our mass start converting into energy according to the mass energy relation when a particle accelerated it must radiate energy. and therefore the mass convert into energy as the velocity increase . relative mass (at velocity =v)=mass/1-v(power2)/c(power2) relative mass is present mass of object at tht velocity. then mass at (rest present mass )c (power2) why it is impossible for a particle too have a speed of light
relative atomic mass
relative Atomic Mass
electron = relative charge = 1- relative mass = 1/1840 proton = relative charge = 1+ relative mass = 1 neutron = relative charge = 0 relative mass = 1
It is a measure which gives the relative mass of an element (or compound) - relative to 12C having a mass of 12.
the relative atomic mass for the element potassium is 39.0983
Speed must be specified relative to something. Relative to the Sun, the speed of Earth is about 30 km/second. Relative to the Milky Way, or relative to the Local Group, you would get different numbers.
The relative atomic mass of copper is approximately 63.55. To calculate the relative formula mass of copper, you sum the atomic masses of its atoms, which in this case would just be the atomic mass of copper. Therefore, the relative formula mass of copper would be 63.55.
Approximately 4.01
The relative atomic mass of magnesium is approximately 24.305.
The relative formula mass of iodine is 253.8 g/mol.