Linked from
The 63 pages that link to Mass, each with the reason it gives.
Angular momentumRelated: Mass weights each part's contribution to a body's angular momentum.
Newton's laws of motionRelated: Mass measures how strongly a body resists acceleration under a given net force.
Classical mechanicsRelated: Mass determines how strongly a body responds to a given force.
ForceRelated: In Newtonian mechanics, mass relates net force to acceleration.
DensityRelated: Density uses mass as its numerator.
ConcentrationRelated: Mass-based concentration measures solute relative to the mixture's mass.
Newtonian mechanicsRelated: It determines both resistance to acceleration and the strength of gravitational interactions.
MomentumRelated: Mass sets how much momentum a given velocity represents.
Specific heat capacityRelated: Specific heat capacity divides an object’s heat capacity by its mass.
GravityRelated: Newtonian gravity treats mass as both the source of attraction and the quantity accelerated.
Kinetic energyRelated: At a fixed speed, greater mass means greater kinetic energy.
Simple harmonic motionRelated: In a mass–spring oscillator, inertia combines with spring stiffness to determine the period.
Newton's second lawRelated: At a fixed net force, greater mass means smaller acceleration.
Newtonian gravityRelated: Newtonian theory assigns mass both resistance to acceleration and gravitational influence.
Centripetal forceRelated: At the same circular acceleration, greater mass requires greater net force.
Gravitational accelerationRelated: A body's gravitational force and its resistance to acceleration both depend on mass.
WeightRelated: At a fixed location, greater mass produces proportionally greater weight.
Gravitational potential energyRelated: In a uniform gravitational field, stored energy scales with the object's mass.
Specific gravityRelated: Mass and volume together determine the density used in the ratio.
Equilibrium pointRelated: Mass links any residual net force to acceleration.
Gravitational constantRelated: The product of two masses determines the force scale alongside G.
Gravitational forceRelated: Mass determines both the strength of Newtonian attraction and the curvature associated with matter.
Thermal inertiaRelated: More material generally means greater total heat capacity when composition is unchanged.
InertiaRelated: In classical mechanics, an object’s mass quantifies its resistance to acceleration.
Bulk densityRelated: It supplies the numerator in a bulk-density calculation.
Mass concentrationRelated: The numerator is the constituent’s mass.
MolalityRelated: The solvent's mass determines molality's denominator and does not depend on thermal expansion.
Inelastic collisionRelated: The bodies’ masses set how momentum is shared after impact.
Mechanical energyRelated: Mass sets kinetic energy at a given speed and gravitational potential energy near Earth.
Net forceRelated: For a given net force, mass determines the resulting acceleration.
Stellar orbitRelated: The masses of the star and surrounding bodies set the gravitational dynamics.
Multiple integralRelated: Integrating a density over a region gives the total mass of a body.
Edna St. Vincent MillayRelated: Millay contributed to this radical magazine, linking her early writing to Greenwich Village’s political culture.
Gravity of EarthRelated: Mass determines both an object’s resistance to acceleration and its gravitational response.
MechanicsRelated: Mass determines how strongly an object resists acceleration under a given force.
Equatorial bulgeRelated: Mass determines the gravitational strength opposing rotational distortion.
Intensive and extensive propertiesRelated: Mass is extensive because combining systems adds their masses.
No-hair theoremRelated: Mass is one of the three parameters retained in the theorem's external description.
Resultant forceRelated: The same resultant force produces different accelerations for different masses.
Weighing scaleRelated: A balance compares masses, while many electronic scales infer mass from force.
Physical objectRelated: It is a measurable property often used to characterize physical objects.
Newtonian dynamicsRelated: Inertial mass determines how much acceleration a given net force produces.