That refers to any quantity in which you need to specify not only a number, but also a direction. Common examples include velocity; acceleration; force.
No, time is not considered a vector quantity in physics. It is a scalar quantity, meaning it has magnitude but no direction.
Weight is considered a vector quantity because it has both magnitude (amount of force) and direction (towards the center of the Earth).
No, time is not considered a vector in physics. It is a scalar quantity that represents the progression of events.
Weight is not a vector quantity because it lacks direction. Weight is a scalar quantity that only has magnitude. It is the force exerted on an object due to gravity, always directed towards the center of the Earth, but it is not considered a vector because it does not have directionality in the way vectors do.
Force is considered a vector quantity because it has both magnitude and direction. This means that in order to fully describe a force, you need to know not only how strong it is, but also in which direction it is acting.
No, time is not considered a vector quantity in physics. It is a scalar quantity, meaning it has magnitude but no direction.
Weight is considered a vector quantity because it has both magnitude (amount of force) and direction (towards the center of the Earth).
for a vector quantity it must have both magnitude and direction and since it has both magnitude and direction it is therefore considered a vector
No, time is not considered a vector in physics. It is a scalar quantity that represents the progression of events.
Weight is not a vector quantity because it lacks direction. Weight is a scalar quantity that only has magnitude. It is the force exerted on an object due to gravity, always directed towards the center of the Earth, but it is not considered a vector because it does not have directionality in the way vectors do.
bcoz it has driectionand maganitude
Simply explained, it has directionality.
Force is considered a vector quantity because it has both magnitude and direction. This means that in order to fully describe a force, you need to know not only how strong it is, but also in which direction it is acting.
A vector quantity.
displacement is a vector quantity
No, possession of magnitude and direction alone is not always sufficient for calling a quantity a vector. A vector must also obey the rules of vector addition and scalar multiplication to be considered a true vector in physics and mathematics.
Velocity is considered a vector quantity because it has both magnitude (speed) and direction. This means that in order to fully describe velocity, both the speed of an object and the direction in which it is moving must be specified.