Answer:
The acceleration of the object is 4 m/s²
Step-by-step explanation:
Newton's Second Law, also called the Fundamental Law of Dynamics, indicates that: "The change of motion is directly proportional to the printed driving force and occurs along a straight line along which that force is printed." This means that the acceleration of a moving object depends on the amount of force applied at a given time, in order to modify its trajectory or speed.
In summary, this law establishes that the net force applied to a body is proportional to the acceleration that body acquires. The constant of proportionality is the mass of the body, and this law can be expressed as:
F = m * a
where:
- F=Force
- m=mass
- a=acceleration
In this case it is necessary to know the acceleration, then:
![a=(F)/(m)](https://img.qammunity.org/2020/formulas/chemistry/middle-school/td26ym341u4sykjq2gaecijk44aasiymsf.png)
An object with a mass of 20 kg has a net force of 80 N acting on it. So,
Replacing:
![a=(80 N)/(20 kg)](https://img.qammunity.org/2020/formulas/physics/middle-school/whvzbqppp5cro06qwk515jmukg3vz3tsns.png)
Knowing that N is a unit of measure that is obtained as kg * m/s²:
a= 4 m/s²
The acceleration of the object is 4 m/s²