Our website is a unique platform where students can share their papers in a matter of giving an example of the work to be done. If you find papers
matching your topic, you may use them only as an example of work. This is 100% legal. You may not submit downloaded papers as your own, that is cheating. Also you
should remember, that this work was alredy submitted once by a student who originally wrote it.
This report "Calculation of the Projectile Motion of a Ping Pong Ball with Drag Included" discusses using a Eula-Lagrange equation that is derived by minimizing action presents an easy way of having a solution of motion system equations. The report analyses the kinetic and potential energy of the system…
Download full paperFile format: .doc, available for editing
Extract of sample "Calculation of the Projectile Motion of a Ping Pong Ball with Drag Included"
Introduction
With increased complexity in mechanical systems it presents a lot difficulty or completely impossible attempting modeling the system by Newtonian mechanics and because of this the alternative to the classical method is resorting to Lagrangian mechanics.in this method there is introduction of Lagrangian unit expressed as L=T-V in which case T gives kinetic energy (KE) while V is potential energy.
Using a Eula-Lagrange equation that is derived by minimizing action presents an easy way of having a solution of motion system equations. With the equation depending on the degree of freedom it exhibits the general coordinate system that is given by
Calculation of the projectile motion of a ping pong ball with drag included
The range of the ball is expressed as
Calculating the movement catapult arm with a fixed mass (non-pivoting)
This involves the application of the see saw model principle in which case both the projectile mass and the counter mass are to be attached to the beam. In physical terms it may obviously be seen that with the counter weight being much heavy when compared to the mass of the projectile, the former will take charge of the motion. Viewing the system from the long term angle it will; be realized that the system will have a periodic motion. The system is similar to a dual mass pendulum as similar to a metronome. As in this case the point of interest is in launching of a projectile motion in which case the periodic oscillation is not of interest. As the projectile motion of the equation upon release being in conformation with the simplified case of kinematics, then it is only important to put into consideration differential equation of projectile motion before release and this means application of Euler-Lagrangian equation will come into play.
Position of the mass
The first step is for the position of the two masses involved to be established and for the degree of freedom in x components and y components to be limited the positions as a function of which is in turn a function of time.
Putting into vectors the traced path of m1 the associated position vector p1 is given by
Now the m2 coordinates are expressed by
x2 = −l2 sin(_) and y2 = l2 cos(_).
The position vector associated with m2, P2, path is given by :
The Kinetic Energy (KE) and Potential Energy (PE) of system
KE for a mass =
In order to find velocity to be used in KE equation the position function is used by finding the derivative.
To find m1 velocity we take the derivative for each component of P1.
For m1, this gives us a velocity ( ) given by
( ) =< l1 cos(), l1 sin() >
For velocity of m2 we have
( ) =< l2 cos(), l2 sin() >
Now equipped with both KE and PE it is simple to calculate Lagrangian relationship
Equations of motion
Applying Euler-Lagrange equation to the Lagrangian relation yields the equation
Solving this equation gives equation of motion as
The parameters used in calculation were as follow
Range
Calculating the range will involve using of the x and y velocity of the projectile upon release od the ball
For a case where air friction is not put into picture , a projectile will be expected to the following
In these equations y0, y˙0, x0, and x˙0 are the initial conditions that should be found from the system at time of release and are functions of of and . Through picking appropriate release times y can be set at 0 which is the moment the time of the ball hitting the ground and this helps in finding the solution to the kinematic equation. And through use of value of t that obtained in x equation, it will be possible to obtain the range of projectiles for different angles of ball release.
The variation of range with angle of release is as shown in figure 1.
From the figure it can be seen that the angle with maximum range is 38.5 with a range of 66.9m
Ping pong with Hinged Counterweight
This system resembles a double pendulum. The uniqueness of this system is that more of the PE in the counterweight is converted to KE of the projectile. In this system there is dependence on both and meaning that the two motion equations are to be applied to get the solution.
Mass position
This involves the changing of only the counter mass position. Here it is like geometric addition of the initial position vector in the case of m1 with a new position vector being obtained from the new point.
Thus we have
Equations of motion
With application of Euler-Lagrange equation to the Lagrangian we have the equation
Solving this equation gives equation 1 of motion as
Solution of ELE with respect to
This gives as equation
The following are the parameters used in calculation
Figure 2 shows the variation of range with angle
The figure reveals that the angle having a maximum range is 19 with the range being 394.5m which is about 6 times for the range involving seesaw model.
In the excel result this is seen to be obeyed for the sling setup where we have at angle 22.5 the range being 2.17m compared to the values of 1.6 and 1nd 1.83 for 90 and 45 degree release angle in the same sling length set up.
Location of pivot
Choosing to use a mass ration of 100:1which is just picked arbitrary with a counter weight of 200g and projectile of 2g being used. The result figure 3.
In the excel result it can be seen that for very small L2 the range was smallest and with an increase in L2 the range was also increased but the highest value of L2 resulted in a reduced range. This is an indication that the largest L2 was beyond the limit that is seen in the graph.
Mass relationship
When different masses of counterweights are used for the projectile of 2g the result will be as shown in the figure 5 below. This figure is obtained by use of a perfect engine model. The expectation would be that we should have the range having linear relationship with respect to mass ratio. This is seen to be true for the case involving small increases in counter weights where this have large effect on the range. However this trend changes at a certain point where increase in mass of counter weight does not have a significant effect.
In the excel result it is observed that this general trend is observed where it can be seen that for the 300g mass the range in higher when compared to that of the 133g mass.
Reference
Siano, D. B. (2001).Trebuchet Mechanics,
Read
More
Share:
CHECK THESE SAMPLES OF Calculation of the Projectile Motion of a Ping Pong Ball with Drag Included
The focus in this paper is on multiple sclerosis (MS), a degenerative disease involving the central nervous system of the human body.... The cause of multiple sclerosis is still not clear.... The significant heterogeneity of MS and the unpredictable course of the disease are key factors that make the treatment of MS challenging....
In the prehospital setting, paramedics are usually not equipped with the proper medical tools which would ensure the efficient delivery of health services.... his is the case with ECG machines, where the 12 lead ECG is sometimes not available.... .... ... ... Advanced Cardiac Studies 1- Why are MCL1 and MCL6 useful for cardiac monitoring in the prehospital setting when 12 lead ECG is not available?...
Introduction: Deng Xiao ping was a leader who can be considered as a person who transformed china from autocratic communism to capitalistic communism (I used this phrase as he adopted capitalist policies, copied from no where).... When discussing about the foreign policy of Deng Xiao ping, it is reasonable to mention about US....
f this experiment was performed on the moon where the force of gravity is 1/6 of the earth, we expect the initial velocity to be greater than when it would have been in the lab because the moon offers less resistance in terms of force to the motion of the projectile.... The higher the initial projectile motion This refers to the motion under the effect of gravity.... This experiment is going to investigate four aspects of projectile motion.... Similarly, If the experiment was performed on the moon, the target distance will be longer because the acceleration due to gravity acceleration is low hence the projectile will have an overall increased range....
Chire Koyama was a ping pong player who won the 1987 championship in India for china.... The paper "The Popularity of ping pong in China" discusses that the love of the game came when there was a push by the government to the people to play the game in order to show that the Chinese could prosper in sports.... ping pong became an Olympic sport in 1988 (Hong, 2008).... hina as a nation has focused less on other games rather than ping pong marking it not become a marginal country (Griffin, 2004)....
The same procedure was repeated for the ball with a mass of 5.... From the motion of the two balls projected horizontally, the balls are projected at the same initial velocity and same angle of elevation.... Taking the initial velocity in the vertical direction of the cannon ball to be vi and bearing in mind that the acceleration due to gravity is acting in the opposite direction (downwards).... At this point, the ball starts to accelerate downwards....
When discussing the foreign policy of Deng Xiao ping, it is reasonable to mention about the US.... This paper discusses three aspects to understand offensive and defensive realism, analysis of Chinese foreign policy through realism, to estimate the future power of China.... The analysis concentrates on economic and security concerns of foreign policy....
This paper ''The calculation of the Coefficient of Friction Using Projectile Motion'' tells that The friction between two bodies is proportional to the normal force acting on the surface.... he ball falls through the tube due to gravitational acceleration; however, it also experiences friction while moving through the line.... here µ is the coefficient of friction between the ball and the surface of the tube.... his gives the velocity of the ball while exiting the tube....
5 Pages(1250 words)Report
sponsored ads
Save Your Time for More Important Things
Let us write or edit the lab report on your topic
"Calculation of the Projectile Motion of a Ping Pong Ball with Drag Included"
with a personal 20% discount.