The Three Laws of Classical Mechanics:
First Law (Law of Inertia):
Every physical body continues in its state of rest or uniform motion in a straight line unless acted upon by a non-zero external resultant force. Inertia is the inherent resistance of matter to any alteration in its state of motion; mass is the quantitative measure of inertia.
Second Law (Fundamental Law of Dynamics):
The time rate of change of linear momentum of a body is directly proportional to the applied net force and takes place in the direction in which the force acts: $$\vec{F} = \frac{d\vec{p}}{dt}$$ Since momentum is $\vec{p} = m\vec{v}$, for constant mass $m$: $$\vec{F} = \frac{d(m\vec{v})}{dt} = m\frac{d\vec{v}}{dt} = m\vec{a}$$ Note: Newton's Second Law is the most fundamental law of mechanics because both the First and Third Laws can be mathematically deduced from it.
Third Law (Action and Reaction):
To every action, there is an equal and opposite reaction: $$\vec{F}_{12} = -\vec{F}_{21}$$ Key Fact: Action and reaction forces act simultaneously on TWO DIFFERENT bodies. Hence, they never form an equilibrium pair and never cancel each other!