One of the interesting science devices that can be used to introduce a student to the principle of motion in physics is the ballistic pendulum. It gives us a chance to learn about the post-collision movement. Consider a heavy pendulum hanging on some fixed anchor. When a threaded ball struck the pendulum it would swing up. Irrespective of the magnitude of the angle it assumed with reference to the vertical, the height to which that pendulum rose provides a way of measuring the speed at which the ball was travelling before collision. This diagram of such a bare set-up brings out some key features of energy and momentum. We like this chemistry apparatus at Maihun because Cheism helps you to learn about these subjects in an easy and simple way. Physics can hit home in case the student applies a ballistic pendulum.
A ballistic pendulum apparatus may cause some challenges. One of the issues that can occur is that the pendulum may not be swinging correctly. This could be due to pivot friction. The results can also be ruined by an obstructed or difficult to move pendulum. This can be prevented by simply making sure that the pivot point is clean and oily. The need to properly measure the height by which the pendulum swings post collision may be the cause of other depression of the pendulum. Measuring the height at which one becomes motionless wrong will result in a wrong computation of speed.

The reasons why the ballistic pendulum device is such an immensely important component of a physicist experiment are not entirely in vain. To begin with, it is a physical method of understanding momentum. When the ball strikes the pendulum an action takes place between the two bodies. This interaction assists the students to realize the exchange of momentum among objects. It is a sort of bumping into each other during a game, after bumping, both move! This practical relationship is capable of rendering learning appear more directly applicable. Secondly, Maihun laboratory distillation apparatus illustrates the manner in which energy is passed and converted in case of collision. This is because the energy of the flying ball passes to the pendulum and swings it upwards.

More importantly, the ballistic pendulum, perhaps, will enable practical learning. Students can give up the action of launching the ball and the action of holding the pendulum at rest to see the height of the swings. Such interactive learning is a special and more captivating learning. In Maihun, we believe that the tools like ballistic pendulum are required to create the interest and encourage the students to ask questions. They stimulate critical thinking by asking the students to guess what will happen when they change the speed of the ball, say, or its weight. Overall, it is not only that the ballistic pendulum is a device that we use, but that it is one of the many ways to make science fun to kids.

You have to take care of the ballistic pendulum apparatus in order to ensure that it serves a long time. Regular maintenance is key. Where the instrument is not used, first of all do not leave the instrument/safely. This simple distillation apparatus which keeps it out accidents or dust. Note: Make sure that there is no congestion or moisture around the equipment. Dust can influence the swing of the pendulum hence it is also a good idea to keep a soft cloth to wipe the pendulum every now and then. According to Maihun, the first thing you do when you go to use your skates is to ensure you look for loose parts. In case of loose screws or bolts tighten them with a screwdriver.
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