After landing on an unfamiliar planet, a space explorer constructs a simple pendulum of length 54.0 cm. The explorer finds that the pendulum completes 103 full swing cycles in a time of 127 s Part A What is the magnitude of the gravitational acceleration on this planet? Express your answer in meters per second per second. • View Available Hint(s) Iplanet = m/s² Submit
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- Part A A 210 g mass attached to a horizontal spring oscillates at a frequency of 5.50 Hz. At t = 0s, the mass is at x = 4.40 cm and has vz = -44.0 cm/s. Determine the period. Express your answer with the appropriate units. • View Available Hint(s) HÁ Value Units %3D Submit Part B Determine the angular frequency. Express your answer with the appropriate units. • View Available Hint(s) µAA spinning wheel rotates at 320 RPM (revolutions per minute). What is the period of the spinning wheel (time for one revolution)?A) 0.00313 s B) 0.186 s C) 5.2 × 10–5 s D) 5.33 s E) not enough information to knowFor the oscillating object in the figure, what is its maximum speed?(Figure 1) Express your answer to three significant figures and include the appropriate units. For the oscillating object in the figure, what is its maximum acceleration? Express your answer to three significant figures and include the appropriate units.
- Dynamics questionPlease answer question and just send me the paper solutions asap dont type the answer please question 1 please give me the right solutions and answers please and label the given and draw a diagram and show the work please help me faster asapPart A After landing on an unfamiliar planet, a space explorer constructs a simple pendulum of length 55.0 cm. The explorer finds that the pendulum completes 96.0 full swing cycles in a time of 129 s What is the magnitude of the gravitational acceleration on this planet? Express your answer in meters per second per second. > View Available Hint(s) Tempiates Symbols undo rego Tését keyboard shortcuts Help 9planet m/s? Submit Prevlous Anawere
- The second power of the distance from the inertia axis to an element of area is used to calculate the: a)Area of an object. b)Gravitational potential energy of an object. c)Centroid of an object. d)Second moment of area or moment of inertia of an object.Objective: To investigate how the magnitude of radius (R) affects the time period (T) of an object performing uniform circular motion. Theory: The time (t) required for one complete revolution for an object performing Uniform Circular Motion is called the period (T) Distance convered 2tR T = speed 2nR T= Thus Period T is directly proportional to the radius R CAUTION: You will be whirling washer above your head, conduct the experiment in a place with plenty of room away from people and breakable stuff (like windows and computer monitors) Make sure your apparatus is securely built. Make sure that you wear safety goggles. Materials: 1 Aluminum Tube, 1 m. Fishing Line, (5) Metal Washers, Permanent Marker, Scissors Stopwatch, Tape Measure Procedure: 1) Measure out and cut one meter of fishing line. 2) Tie a single metal washer around one end, and string the other end through the tube. Tie four washers at the other end in a group 3) Measure 0.15m from the single washer and use a permanent…Hang a mass from a spring. We are interested in the moment where you pull the mass down ( before you release it) to the highest point that the mass moves to. We also care about when the mass is moving its fastest. Sketch the scenario, identifying the system, the zero reference point, and initial and final points. At what point in the mass’s motion is it moving the fastest? Explain.