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- Which of the following statements describe principles or rules you should consider when writing an electron configuration? Select all that apply. Multiple answers: Multiple answers are accepted for this question Select one or more answers and submit. For keyboard navigation... SHOW MORE v a no two electrons can have the same spin in the same orbital b electrons occupy orbitals from higher to lower energy levels electrons should be divided among different orbitals within the same subshell to avoid pairing if possible d electrons occupy orbitals from lower to higher energy levels e paired electrons must have the same spin One more question about sulfur! Which of the following pictures represent orbitals in a sulfur atom in its ground state? Select all that apply. A. В. C. D. Е. B.Given f(x) = x+1 and g(x)= = cos x, determine the domain of the function f(g(x)).Evaluate the integral below between the limits t=0 to t (x=0) (x) Show that A+B -d[A] dt dx dt = K₂ = Products = = K₂ [A][B] K₂ (a − x)(b − x) 1 t(a - b) - In b(a - x) a(b - x)
- For a system rotating in three dimensions. what is the degeneracy of the level with I=4? What are the valid values of m,?Evaluate the limit of the function below X- COS X lim, pi infinity 1(c) Evaluate the commutator for the operators (a) x³ and — (b) px and p3 dx d² and e-cx (d) and ax² + bx + c dx²
- Use linear approximation, i.e. the tangent line, to approximate 2.86³ as follows: Let f(x) = x³. The equation of the tangent line to f(x) at a = 3 can be written in the form y = mx +b where: m = and b = Using this, we find our approximation for 2.86³ isConsider the real part of the spherical harmonic Y2,+2. At which values of ϕ do angular nodes occur? Identify the positions of the corresponding planes. Repeat the process for the imaginary part.A one-particle, one-dimensional system has the potential energy function V = V₁ for 0 ≤ x ≤ 1 and V = co elsewhere (where V, is a constant). a) Use the variation function = sin() for 0 ≤ x ≤ 1 and 0 elsewhere to estimate the ground-state energy of this system. b) Calculate the % relative error.