a R ww R R ww R R b
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Find the equivalent resitance between a and b if R=398ohms


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- A mass spectrometer is being used to separate common oxygen-16 from the much rarer oxygen-18, taken from a sample of old glacial ice. (The relative abundance of these oxygen isotopes is related to climatic temperature at the time the ice was deposited.) The ratio of the masses of these two isotopes is 16 to 18, the mass of oxygen-16 is 2.66-10-26 m S they are singly charged and travel at 5.106 in a 1.25 T magnetic field. What is the separation Ad=2r₂-2r₁ between their paths when they hit a target after traversing a semicircle? Ion source F=qE FE Ad= F = qvB FB Things to Prepare: 1. Make a list of information given to you. + m Bout V 12r₁ 212 m₂ 2. Identify the formula for the radius of the trajectory for particles in the magnetic field. 3. Set - up the formulae in step 2 for the two for the particles. 4. How can you manipulate the formulae in step 3 to solve for the answer? Bout kg, andQUESTION 13 Given that the following is a series of 8 LED lights ΩΩΩ ΩΩΩΩΩ And Convert 240 from decimal to an 8 bit binary representation by selecting all the lights that would be lit (on). 27 26 25 24 3 22 21 2 128 64 32 16 8. 4 2 1 200Is B2+ Paramagnetic or Diamagnetic?
- I 3 a ↑ R1 $220 R2 330 R3 390 I2 I3 vi 12V A * В Calculations: Node Equα tion: Σ I i-ΣΙ out 11 + 12 = 13 Loop Equation: Loop 1: – 11(R1) + 12(R2) – V1 = 0 Loop 2:QUESTION 16 Given that the following is a series of 8 LED lights Ω Ω Ω ΩΩΩΩΩ And Convert 192 from decimal to an 8 bit binary representation by selecting all the lights that would be lit (on). 27 26 25 24 23 22 21 2 128 64 32 16 8. 4 1In a standard RLC circuit that we are looking at R = 0.075 Ω , L = 1.2 H and C = 1.6 F. The initial charge carries by the capacitor is Q0 = 0.045 C. The switch is closed at time t = 0. Calculate the value of Q, in coulombs, at time t = 1s.