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Create separate graphs for position vs. time, velocity vs. time, and acceleration vs. time.

Using logger pro to analyze a video. Create separate graphs for position vs. time, velocity vs. time, and acceleration vs. time. For each of these graphs, there should be the x-component and the y-component on the same set of axes. Put appropriate best-fits all 6 graphs.

Identify the two topics in this lesson that you found most interesting and important, and explain why. Provide a brief but comprehensive overview of those two topics to demonstrate your understanding.

Think about the six main topics addressed in this lesson: force and motion, the nature of matter, theories of sound, aspects of light, how electricity works, and magnetism. Identify the two topics in this lesson that you found most interesting and important, and explain why. Provide a brief but comprehensive overview of those two topics […]

Write a review about the Comparision of the Quark- Quark- Potential and the Spring Potential in classical mechanics.

Write a review about the Comparision of the Quark- Quark- Potential and the Spring Potential in classical mechanics. The Quark Quark Potential should include the calculation of the potential energy in quantum chromo dynamics and inlude the mesons (quark antiquark) and baryons.

Write a review about the Comparision of the Quark- Quark- Potential and the Spring Potential in classical mechanics.

Write a review about the Comparision of the Quark- Quark- Potential and the Spring Potential in classical mechanics. The Quark Quark Potential should include the calculation of the potential energy in quantum chromo dynamics and inlude the mesons (quark antiquark) and baryons.

Explore how the light detected from exoplanets could provide information on the nature of the type of planet. Analyze existing data of discovered exoplanets from online resources, establishing any trends in variables e.g. mass, radius.

Extrasolar planets, also known simply as exoplanets, are planets that exist outside of the solar system. Just like the solar system, exoplanetary-star systems consist of different planet types such as gas giants and terrestrial planets. Gas giant planets are mostly made up of Helium & Hydrogen. They are much larger in size and tend to […]

Write a review about the Comparision of the Quark- Quark- Potential and the Spring Potential in classical mechanics.

Write a review about the Comparision of the Quark- Quark- Potential and the Spring Potential in classical mechanics. The Quark Quark Potential should include the calculation of the potential energy in quantum chromo dynamics and inlude the mesons (quark antiquark) and baryons.

What sources of error would exist in a real lab that are not present in this simulation? What would be more challenging in a real lab that was easy here?

PHYS 2121 Minilab – Induced Current. You’re working on a project to build a rail gun – in order to most accurately test your rail gun simulation, you need to be able to calculate effects of induced current on your system. You build a simulator that moves a rail at constant velocity to check that […]

A mirror is used to produce an inverted image the same size as the object. If that image is 25.0cm from the mirror, what is the mirror’s radius of curvature?

Where would you have to place a 41.5cm tall object to form: a. A virtual image 67.43cm from a concave mirror with a focal length of 16.00cm? b. A real image that is 12.8cm tall and 82.4cm from its mirror? A mirror produces an upright image that is three times as far away from the […]

A wave travels 0.75 times as fast in shallow water as it does in deep water.  What will the wavelength of the wave in deep water be, if its wavelength is 2.7 cm in shallow water?

Periodic waves in deep water have a wavelength of 2.7 mm. The waves then hit a boundary at an angle of 35° and the waves then have a wavelength of 2.2 mm in the shallow water. With what angle does the water propagate into the shallow water? Use the circle below to draw the waves […]

If the screen is then removed to a point 15m from the lens, by how much will the separation between the film and the lens have to change from part a?

An object 8.0cm high is placed 80.cm in front of a converging lens of focal point 25cm.  Determine the image position and height. A lamp 10.cm high is placed 60.cm in front of a diverging lens of focal length 20.cm.  Calculate the image position and height. A typical single lens camera has a converging lens […]

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