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Calculating Vibration Frequency and Time for a Car Passing Through a Pothole, Schemes and Mind Maps of Modern dance

A detailed analysis of the vibration frequency and time required for a car to pass through a pothole. The car has a mass of 1800 kg and is carrying 3 passengers with a total mass of 200 kg. The car is supported by 4 springs with a spring constant of 18,000 n/m. The document walks through the calculations to determine the total mass of the car and passengers, the load on each spring, the vibration frequency of the springs, and the time required for the car to complete two vibrations. This information could be useful for students studying topics related to vehicle dynamics, mechanical vibrations, or automotive engineering. A practical problem-solving scenario that could be used for study notes, lecture notes, assignments, or exam preparation.

Typology: Schemes and Mind Maps

2021/2022

Uploaded on 07/24/2023

ferdi-ariansah
ferdi-ariansah 🇮🇩

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KELOMPOK
1
1. Defriyan Hidayat (2210951005)
2. Raditya Alfabi Haureza (2210952042)
3. Jauhari Satria Verdi (2210953059)
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pf4
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Download Calculating Vibration Frequency and Time for a Car Passing Through a Pothole and more Schemes and Mind Maps Modern dance in PDF only on Docsity!

KELOMPOK

  1. Defriyan Hidayat (2210951005)
  2. Raditya Alfabi Haureza (2210952042)
  3. Jauhari Satria Verdi (2210953059)

SOAL 1

 Sebuah mobil memiliki massa 1800 kg dan kemudian mobil tersebut ditumpangi oleh 3 orang dengan massa total 200 kg. Mobil ini ditopang oleh 4 buah pegas yang mempunyai tetapan gaya sebesar 18.000 N/m dan kemudian melewati sebuah lubang di tengah- tengah jalan, maka hitunglah frekuensi getaran pegas mobil dan waktu yang diperlukan untuk menempuh dua getaran?

 (^) A. Menghitung frekuensi getaran pegas mobil menggunakan persamaan berikut:

 (^) B. Menghitung periode waktu satu getaran