Physics, 10.11.2019 04:31 samehajamal1234567
In the model of the hydrogen atom due to niels bohr, the electron moves around the proton at a speed of 3.3 × 106 m/s in a circle of radius 5.7 × 10-11 m. considering the orbiting electron to be a small current loop, determine the magnetic moment associated with this motion. (hint: the electron travels around the circle in a time equal to the period of the motion.)
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4. a 75.0 g piece of ag metal is heated to and dropped into 50.0 g of water at the final temperature of the mixture is what is the specific heat capacity of silver? 5. a 465 g chunk of iron is removed from petrucci, ralph h.. general chemistry (p. 290). pearson education. kindle edition.
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What is the relationship between the direction of motion of the balloon and the wind currents
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Suppose that a mass of 2 kg is attached a spring whose spring constant is 50. the system is damped such that b = 12 . the mass is set in motion with an initial velocity of -8 m/s at a position 0 meters from equilibrium. set up and solve a differential equation that models this motion. write your solution in the form a cos ( ω t − α ) where α is a positive number. use your solution to fill in the information below: what is the amplitude of the motion? what is the value of ω ? what is the phase shift?
Answers: 1
In the model of the hydrogen atom due to niels bohr, the electron moves around the proton at a speed...
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