Find acceleration of car attached to spring scale

In summary, the purpose of finding the acceleration of a car attached to a spring scale is to determine its rate of change of velocity. A spring scale measures acceleration using Hooke's law and factors such as mass, spring stiffness, and external forces can affect its accuracy. The acceleration can be calculated by dividing the measured force by the mass of the car. This measurement has various real-world applications in industries such as automotive, sports science, and technology development.
  • #1
the_d
127
0
A 20.8 kg mass attached to a spring scale rests
on a smooth, horizontal surface. The spring
scale, attached to the front end of a boxcar,
reads T = 38.7 N when the car is in motion. If the spring scale reads zero when the car is at rest, determine the acceleration of the
car, when it is in motion.
 
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  • #2
Use Newton's 2nd law?
 
  • #3


To find the acceleration of the car, we can use Newton's Second Law, which states that the net force on an object is equal to its mass multiplied by its acceleration (F=ma). In this scenario, the net force is the tension force (T) measured by the spring scale.

We know that the mass of the car is 20.8 kg and the tension force measured by the spring scale is 38.7 N. Therefore, we can set up the equation as follows:

F=ma
38.7 N = (20.8 kg) a

Solving for a, we get the acceleration of the car to be 1.86 m/s^2.

This means that for every second the car is in motion, its velocity will increase by 1.86 m/s.

It is also important to note that the fact that the spring scale reads zero when the car is at rest tells us that there is no external force acting on the car. This means that the only force acting on the car is the tension force from the spring scale, which is causing the car to accelerate.

In conclusion, the acceleration of the car attached to the spring scale is 1.86 m/s^2.
 

Related to Find acceleration of car attached to spring scale

1. What is the purpose of finding the acceleration of a car attached to a spring scale?

The purpose of finding the acceleration of a car attached to a spring scale is to determine the rate of change of the car's velocity over time. This can be useful in understanding the car's motion and performance, as well as for safety and optimization purposes.

2. How does a spring scale measure acceleration?

A spring scale measures acceleration by using Hooke's law, which states that the force exerted by a spring is directly proportional to the displacement of the spring. As the car attached to the spring scale accelerates, the spring will stretch or compress, allowing the scale to measure the force and calculate the acceleration.

3. What factors can affect the accuracy of the acceleration measurement on a spring scale?

Several factors can affect the accuracy of the acceleration measurement on a spring scale, including the mass of the car, the stiffness of the spring, and any external forces acting on the car. Additionally, any friction or resistance on the scale can also impact the accuracy of the measurement.

4. How can the acceleration of a car attached to a spring scale be calculated?

To calculate the acceleration of a car attached to a spring scale, the force measured by the scale must be divided by the mass of the car. This will result in the car's acceleration in meters per second squared (m/s²).

5. What are some real-world applications of finding the acceleration of a car attached to a spring scale?

The measurement of acceleration using a spring scale has numerous real-world applications, such as in the automotive industry for testing and optimizing vehicle performance. It can also be used in sports science to analyze the acceleration of athletes and in research and development for new technologies such as self-driving cars.

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