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European Journal of Physics Education Vol. 2 No. 2 2011 ISSN 1309 7202 Tam bade Trajectory of Charged Particle in Combined Electric and Magnetic Fields Using I interactive Spreadsheets Popeye S. Tam
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01
Step 1: Gather the necessary information about the charged particle, including its mass, charge, initial velocity, and the strength and direction of any external fields.
02
Step 2: Use the principles of Newtonian mechanics or electromagnetic theory to calculate the forces acting on the charged particle.
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Step 3: Apply the laws of motion or the Lorentz force equation to determine the acceleration of the charged particle.
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Step 4: Integrate the acceleration with respect to time to find the velocity as a function of time.
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Step 5: Integrate the velocity with respect to time again to obtain the position as a function of time, also known as the trajectory of the charged particle.
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Step 6: Plot the trajectory of the charged particle using appropriate coordinate systems to visualize its path through space.
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Step 7: Analyze the trajectory to understand the motion of the charged particle, including its trajectory shape, velocity changes, and any deviations from an expected path.
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Step 8: Use the trajectory information to make predictions or calculations related to the charged particle's behavior in a given system or experiment.

Who needs trajectory of charged particle?

01
Physicists and researchers studying the behavior of charged particles in various fields, such as particle physics, nuclear physics, and plasma physics.
02
Engineers working on particle accelerators or designing charged particle detectors.
03
Astrophysicists investigating the movement of charged particles in space, such as in magnetospheres or the solar wind.
04
Medical researchers and radiation oncologists studying the path of charged particles in cancer treatment using techniques like proton therapy.
05
Scientists simulating or modeling the behavior of charged particles in computer simulations for various applications.
06
Students and educators learning about electromagnetism and particle dynamics in physics courses.
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Trajectory of charged particle refers to the path followed by a charged particle in an electric or magnetic field.
Researchers or scientists conducting experiments involving charged particles are required to file trajectory of charged particle.
To fill out trajectory of charged particle, one must record the initial position, velocity, and charge of the particle, along with the properties of the electric or magnetic field.
The purpose of trajectory of charged particle is to analyze the motion of charged particles in different fields and understand their behavior.
Information such as initial position, velocity, charge of the particle, and properties of the electric or magnetic field must be reported on trajectory of charged particle.
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