CHEM 001A Lecture Notes - Lecture 11: Joule, Chemical Equation, Electromagnetic Spectrum

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Hess" la(cid:449: much thermochemical data has measured and tabulated, ca(cid:374) use to (cid:272)al(cid:272)ulate h (cid:448)alues fo(cid:396) (cid:396)ea(cid:272)tio(cid:374)s not yet measured. Uses hess" la(cid:449: hess" la(cid:449) of heat su(cid:373)(cid:373)atio(cid:374): fo(cid:396) (cid:272)he(cid:373)i(cid:272)al e(cid:395)uatio(cid:374) that (cid:272)a(cid:374) (cid:271)e (cid:449)(cid:396)itte(cid:374) as su(cid:373) of t(cid:449)o or more steps, enthalpy change for the overall equation is the sum of enthalpy changes for the individual steps. Inspection tells us that: our rxn. (3) = 2 * rxn. (1) + rxn. (2, h (rxn) = [2*(-393. 5) + 566. 0] kj/mol rxn, = (-787. 0 + 566. 0) kj/mol rxn, = - 221. 0 kj/mol/rxn. * the standard state of a substance is its most stable form under 1 bar pressure and 25oc. Chapter 7: a quantum model of atoms: waves, particles, and periodic properties: ch. Wave nature of light: wave described by wavelength, frequency and amplitude, wavelength, (lambda), - distance between any two adjacent identical points of wave. Periodicity in space: f(cid:396)e(cid:395)ue(cid:374)(cid:272)(cid:455), (cid:894)(cid:374)u(cid:895), - number wavelengths that pass fixed point in one second.

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