Question 16 When aircraft travel at supersonic speeds a sonic-boom is heard on the ground. Explain the physics behind the formation of a sonic-boom with the aid of a diagram!!. Upload file first! Paragraph V B I U Lato (Recom... v 19px... ✓ </>
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- HelpA plane is landing and reported having a decibel reading of 67 dB. 1. What is the intensity of the plane? 2. If the power of the noise at a distance of 9500 m above ground? 3. How much more intense is a drum set with 97 dß compared to the plane?Clear my choice What is the frequency of a sound wave with a wavelength of 5.0 m if its speed is 330 m/s? Select one: 330 Hz O b. 5.0 Hz 0 с. 33 Hz Od. 66 Hz
- Question 7 Chapter 5 Homewo X + education.com/ext/map/index.html?_con=con&external_browser=0&launchUrl=https%253A%252F%252Fnewconnec X Co Course: PHSC1001.25: Physical Sc X omework 3 attempts left Hz Check my work Saved Note that the smaller frequency is subtracted from the larger one to avoid negative beats. A tone with a frequency of 409 Hz is sounded at the same time as a 437 Hz tone. What is the beat frequency?ST 10. An object of mas a tached to a song with spring constant 12.10 N/m. if he obetet i stretched 4.50 com from the equilibrium position and released, what is its maximum speed? m/s sf60 ssf60. 60 ssfeB AAN EE Tamat Parme Solving problems by relaung sinusordal wave and vector functions to their related engineering applications. You also must solve the problems of differential and integral calculus for your related works. Fart AaBb AaB AaE AD Cet Accide 1 Amg 1 Coe 1 Cor. 1 Part 1: A support beam, within an industrial building, is subjected to vibrations along its length; emanating from two machines situated at opposite ends of the bear. The displacement caused by the vibrations can be modelled by the following equations, x₁ = 4.2 sin(100nt +0.59) mm x₂ = 6.1 sin(100m - 0.42) mm O fype here to search Your senior engineer asked you the followings: (a) State the amplitude, periodic time, frequency and phase angle (in degrees) for each of these waves. Q Engah Sandad Complung IMG
- A convertible moves toward you and then passes you; all the while, its loudspeakers are producing a sound. The speed of the car is a constant 8.93 m/s, and the speed of sound is 342 m/s. What is the ratio of the frequency you hear while the car is approaching to the frequency you hear while the car is moving away? Number i eTextbook and Media 2 Save for Later -->> # 3 W e C $ 4 Units S d f X C Attempts: 0 of 3 used Submit Answer 205 % & * ( 6 7 8 9 t y 60 > b כ 8 Apr 30 i O P h j k n m alt ctriThe speed of sound in air is 340 m/s. what is the wavelength of a soundwave that has a frequency of 630 Hz? Can you Break down equation steps please so I can understand this better3. The figure below shows various positions of a child on a swing moving toward Mr. Doig on the ground blowing a 3-kHz whistle. If the child starts from rest at Point A a height 0.75 m above the ground, calculate the frequency the child hears at Points A, C, and E, on the swing forward. Additionally, calcu- late the frequency the child hears at Point Con the swing back. When does the child hear the highest pitch? Hint: you might want to use energy conservation. Here are some equations from a past unit: KE = mv² and PE = mgh. A B C D Whistle Whistle E