Real-World Applicationshard
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The critical temperature for Bose-Einstein condensation of a gas in a 3D harmonic trap is Tc=frachbaromegakBleft(fracNzeta(3)right)1/3T_c = \\frac{\\hbar \\omega}{k_B} \\left( \\frac{N}{\\zeta(3)} \\right)^{1/3}. If the trap contains N=1.202times106N = 1.202 \\times 10^6 atoms, the trap frequency is omega=200pi\\omega = 200\\pi rad/s, and zeta(3)approx1.202\\zeta(3) \\approx 1.202 is the Riemann zeta value, what is the critical temperature TcT_c in microkelvins (mu\\muK)? (Use hbar=1.054times1034\\hbar = 1.054 \\times 10^{-34} J\cdot s and kB=1.38times1023k_B = 1.38 \\times 10^{-23} J/K).