Milestone 1. Calculation. IT & Computer Science Assignment.
Must use algodoo and create a simple step or stage and describe. For Milestone One you will submit the Qualitative Description of your Rube Goldberg Device Step. This milestone is due in Module Three and you will provide a basis for the development of the final project by using the concepts from the class to describe in words the interactions that explain the motion observed in the selected stage of your device. If you have not begun the design of a device, provide a reference to a device that you have found. Your submission will describe qualitatively what is going on during the selected step and at the transitions to/from the neighboring steps. Specifically, the following critical elements must be addressed: I. Step Selection: Select a step or stage in the Rube Goldberg device. Provide a concise description of the step. II. Selected Step A. Initial Velocity: Calculate the initial velocity of the object in the selected step. What does the initial velocity of the object tell you about the behavior of the object? B. Velocity and Force Calculations: Calculate the change in velocity that would be observed based on kinematics and force principles. Then, use Newton’s Second Law to calculate the force acting on the object. Guidelines for Submission: Your paper should be submitted as a 1- to 2-page Microsoft Word document with double spacing, 12-point Times New Roman font, and one-inch margins.
Milestone 1
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Milestone 1
Response I. Step Selection
In this step, I will choose a one-kilogram rubber block tied to another falling weight at a speed of 2 m/s^2 until it falls through a distance of ten centimeters off the edge of a flat surface. This phase requires me to compute the force needed to set the block in motion and keep it in a continuous state of motion using the following formula:
fs(max) = µsN
FK = µkN
Response II. Initial Velocity
Based on the above information, the block's initial velocity will be zero because the object is not in motion at the start of this process (Shapiro & De Berredo-Peixoto, 2013). A stationary object, the rubber block, remains at rest until an external force from the weight tied on the rubber acts on it.
Response B. Velocity and Force Calculations
A stationary block weighing 5kgs accelerating from zero (0) sp...
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