If we assume the waves to be travelling in air, where the wave speed is v = (343 + 2)m/s, calculate the frequencies of each of the previous wavelengths. Question 3: Calculate the value of the min frequency and its uncertainty value from your wavelength measurement. Include some workings to show your calculation.
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- Calculate the value for the KB x-ray wavelength for molybdenum (Z=42) in meters. Moseley's law is in the attached image, and use 1.097E-7 m for Rydberg's -1 constant R. Enter the result in scientific notation, eg. if the value is 6371.0 km use 6.3710E+6 for an answer in meters. 1 λK Type your numeric answer and submit R(Z - 1)² 1² (1/2-1/2) n² Respond with the correct number of significant figures in scientific notation (Use E notation and only 1 digit before decimal e.g. 2.5E5 for 2.5 x 10³)Part CA 27-inch monitor is 24 inches wide and 14 inches high. What is the size of an individual pixel in square millimeters (mm²)?Express your answer in square millimeters to three significant figures.The figure below shows two snapshot graphs taken 10 ms [note units] apart, with the blue curve being the first snapshot. What are the following: To calculate the velocity divide the distance travelled by the time it took. Be careful of units. To calculate frequency, use v=fλ. (a) wavelength (b) speed (c) frequency (d) amplitude of the wave?
- For this problem, we want to estimate the answer, so our assumptions may be a little unrealistic. Suppose we want to estimate how much air we need to send to a space station, assuming we cannot recycle air. Suppose four astronauts are in a spherical space station. If each of them typically breathes about 500 cm³of air with each breathe, and take 15 breathes per minute (average resting value): a. What is the volume of air you would need in the space station if these four astronauts stayed for a full year? b. If the density of air is 1.25 kg/m³ and it costs (thanks to SpaceX) a mere $100/kg to send objects to the space station, how much money would the astronaut air supply cost?What is the absolute uncertainty for the two problems below?Find the uncertainty in kinetic energy. Kinetic energy depends on mass and velocity according to this function E(m,v) = 1/2 m v2. Your measured mass and velocity have the following uncertainties Sm = 0.38 kg and Sv = 0.1 m/s. What is is the uncertainty in energy, SE , if the measured mass, m = 3.1 kg and the measured velocity, v = -7.52 m/s? Units are not needed in your answer.
- Other than from the ranges of wavelengths shown inFigure 1.7, can you think of a way to distinguish radiowaves from infrared waves? Visible from infrared? That is,could you design a radio that could be tuned to infraredwaves? Could living beings “see” in the infrared region?How would I solve the empty chart just for experiment #1 using the experiment 1 data from the chart below and the formulas from the last picture?In order to observe emissions from celestial bodies Very Long Baseline Arrays (VLBA) have been developed. Explain why VLBA use multiple telescopes separated by long distances in terms of the wave nature of light. Include in your answer specific physics terminology, associated relevant equations, and a labelled diagram.