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- Elizabeth paton Hw Ahamic # 1018 A tuwc mas Gnp 204.64 Specific heat Gnup Mirium Mr20= 7,88 -562Klmot Ineeded to break annatome. 1) mr-Mr bond separation energy find the energynly ali.band Mr-Mr ih of Mr2 gas. 1) Determine wovelength (nm) that would break the ône: Mr-Mr bandM Gmail ▸YouTube K Draw Intermediate Maps > Aktiv Chemistry :Br-Br: Q New Tab Br: QuA.1. Provide two examples showing the E " character of C=0 corbom thru Co) Nu addifion, C+) Nu* addifion. Note: one eucemple for (1) and and one ex ample for (2).
- ( A 19. Find the point groups of the following molecules: Bri Br CI G W CI Br Br B Br.... Br CI Br F CI Br C Br... Br Br W CI CI CI D Brassymetric CI Cli Chu..... Br W Br CIcalculat dlta E for each complex Trans complex : G= 355 microsiemens A= 450 nm Cis complex : G=250 microsiemens A=500 nmKp of this quation 2A+3B=4C+5D
- What is Cmagnesium in J/g-K?What is the value of the asymmetry term for 135Ba in the binding energy formula of the liquid drop model? Select one: O a. O b. O c. -55.72 MeV e. -64.78 MeV -105.43 MeV O d. -91.22 MeV -83.76 MeV9:19 1 ull 8. _NaCIO, NaCl + 9. Ва + _H,O → Ba(ОН), + Н, 10. Al + _Cl, → _AICI, в I U W e r ty i o p a S dfgh jkIñ C V b n 123 espacio intro II! !!!
- A mutant form of hemoglobin (mt Hb) no longer displays any cooperativity, yet has affinity that is close to that observed with the R-state of Hb. Looking at the Hill Plot below where wild type Hb and wildtype myoglobin (wt Mb) are shown, how would you expect mt Hb to look? (¹) 601 3 2 -2 Hemoglobin high-affinity state nH = 1 Myoglobin nμ = Hemoglobin. nH = 3 -1 0 1 log po₂ Hemoglobin low-affinity state nH = 1 L 2 3 It would have a slope of one like wt Mb, but be shifted to the left and display higher affinity matching the high affinity state of Hb It would have a slope of one like wt Mb, but be shifted to the right and display lower affinity matching the low affinity state of Hb It would have a maximal slope of 3, but be shifted to the left like the high affinity state of Hb It would have a maximal slope of 3, but be shifted to show a p50 value equal to wt MbQ2. What is the number of IR and Raman active bands in the following molecules? a. NH b. [Co(NH3)]= c. [Co(Cl) Brs] d. [Ni(CO)4] Good Luckcalculat dlta E for each complex Trans complex : G= 355 microsiemens λ= 450 nm Cis complex : G=250 microsiemens λ=500 nm.