No, air resistance is a vector quantity because it has both magnitude and direction. It acts in the opposite direction to the motion of an object moving through the air.
Inertia is a scalar quantity. It is a measure of an object's resistance to changes in its state of motion and is directly proportional to its mass. Inertia does not have a direction associated with it, so it is considered a scalar.
Viscosity is a scalar quantity. It measures a fluid's resistance to deformation and is independent of direction in three-dimensional space.
Air pressure inside a tire is a scalar quantity because it only has a magnitude (a numerical value) and no direction.
Air pressure in a tire is a scalar quantity because it has magnitude but no specific direction associated with it.
A vector quantity is one that has a magnitude (a number), and a direction. No, resistance is not a vector quantity; it is a scalar quantity (only magnitude).
Inertia is a scalar quantity. It is a measure of an object's resistance to changes in its state of motion and is directly proportional to its mass. Inertia does not have a direction associated with it, so it is considered a scalar.
Viscosity is a scalar quantity. It measures a fluid's resistance to deformation and is independent of direction in three-dimensional space.
Air pressure inside a tire is a scalar quantity because it only has a magnitude (a numerical value) and no direction.
Air pressure in a tire is a scalar quantity because it has magnitude but no specific direction associated with it.
A vector quantity is one that has a magnitude (a number), and a direction. No, resistance is not a vector quantity; it is a scalar quantity (only magnitude).
scalar
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Air resistance is the force that opposes the motion of an object through the air. It depends on the speed of the object and its surface area exposed to the air.
No, air temperature is a scalar quantity because it has magnitude only and no direction associated with it. It is a measure of the average kinetic energy of particles in the air, without any specific direction.
Air resistance
Energy is gradually lost, through air resistance, and resistance in the string.Energy is gradually lost, through air resistance, and resistance in the string.Energy is gradually lost, through air resistance, and resistance in the string.Energy is gradually lost, through air resistance, and resistance in the string.
The resistance do obstruct the object. The object always travel slower with air resistance. Air resistance is higher with velocity and the object falling through air would have a limited velocity that it can't go through.