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1. Hamming code can correct any one error; might there be a (14, 8) code that can correct any two errors? Optional extra: Does the answer to this question depend on whether the code is linear or nonlinear?
2. Design an error-correcting code, other than a repetition code, that can correct any two errors in a block of size N.
the index of refraction for red light in water is 1.331 and that for blue light is 1.340. what are the underwater angles of refraction for the blue and red components of the light
How rapidly atom are assembled in this protein synthesis
If I put 40g of ice at 0°C into a perfectly insulated cup containing 250g of coffee at 90°C, what will the final temperature be when the system comes into thermal equilibrium? Suppose that the specific heat of coffee is the same as that of water.
Estimate the average force exerted by a shot-putter on a 7.0-kg shot if the shot is moved through a distance of 2.4m
How long a pipe is needed to make a tuba whose lowest note is low C (frequency 129.9 Hz)? Assume that a tuba is a long straight pipe open at both ends
A block slides down an inclined plane, starting from rest and being pushed with a constant acceleration of 5.20 m/s2 over a distance of 20.4 cm. Find the total time the block is in motion
What temperature would the oxygen molecule have to be to have the same energy as the above photons
If a bird were to start out from the origin (where the student starts) and fly directly (in a straight line) to the school, illustrate what distance would the bird cover? Express your answer in miles.
A car drives north at 46 for 10 and then turns east and goes 5 at 60. At last, it goes southwest at 30 for 6.0. What is the average velocity.
Consider two semi-infinite sheet with equal magnitude, but opposite sign, surface charge densities. The plates are 0.2 m apart and have a voltage of 3 V across them. An electron enters from left through hole at velocity v0
Determine the tangential speed of the block when the string is 0.20 m from the axis.
How fast in kilometres per hour, should a sound source be moving toward you to make the observed frequency 5.0% greater than the true frequency? (Suppose that the speed of sound is 340 m/s.)
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