. For N2, fw = e 2360 cm-1, and fwae 14.5 cm-1. Ev %3D
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- What is the frequency of green light that has a wavelength of 531 nm? (c = 3.00 x 10⁸ m/s)+ Young Saguaro Cacti Under another plant NOT under another plant Total Expected Percentage 35% 65% 100% Expected Number X^2= 11.44 Degree of freedom: 1 p value: <.019 85.75 159.25 245 Observed Number 111 134 245 (245) (35) = 85.75 245-85.75= 159.25 X^2 for associated = ((111-85.75) ^2)/85.75 = 7.44 X^2 for not associated = ((134-159.25) ^2)134 = 4.00 Ex^2 = 7.44 +4.00 11.44 (OBS-Exp) 2/EXP 7.44 4.00 Σ=11.44What is the wavelength of a 6.76 x 1012 /s wave? Sorry im just really stuck on this question, Please dont leave any minor detail in the question, And also may u step by step this equation.
- The E1% at 280 nm of the protein myosin is 0.842. You take 40µl of a myosin solution of unknown concentration and add water to a final volume of 2.0 ml. The absorbance of this solution at 280 nm is 0.771. What is the concentration of the undiluted myosin solution? (units = mg/ml).A Br selective electrode is applied for measuring bromide ions in saline solution. Cl' ions were found to interfere, with a kPot = 0.0050. %3D After calibration, the ISE equation was determined to be y = -70 mV - 59.2mV*log(x). If we measure a potential of 93 mV, and the [CI]=0.100 M, what was the [Br'] in units of M? O 0.00821 O 0.100 O 0.0050 O 0.123 O Correct answer not found in other options20 4. A sample containing ethanol and water was found to have n6 = 1.3400. Calculate the exact percentage of ethanol and water in this example. Show your work. (Hint: Solve this mathematically. Assume a linear relationship between concentration and refractive index. You can make the y-intercept the refractive index of water, and use the slope formula to find the slope. The x axis (concentration) will be from 0% ethanol to 100% ethanol. From this information, you can get the equation of the line, then plug in your numbers from there.)
- Consider a bi convex lens with radius of curvatures |R1| = 30 mm and |R2| = 180 mm, ct = 5 mm and glass is N-BK7. This is used as camera lens in order to image a man who is at 1 km away from the camera. We want to resolve 10 cm on his body. Assume that λ = 550 nm. Using zemax, determine the MTF value for the resolution of R = 80 lp / mm in image plane which is placed at paraxial focus. (Hint: First, find the diameter of the lens) Which one: a.32.1 % b.28.7 % c.12.3 % d.58.5 % e.46.8 % f.57.2 % g.20.9 % h.15.6 %Assume that you have an “X” solution that you do not know its concentration. But you have other X solutions with known concentrations and you know X solution absorbs maximum light at 575 nm. To calculate the unknown solution concentration, you have done some spectrophotometric measurements and obtained data given below. Prepare a standard curve by using the absorbance of known concentrations (Hint: you can learn how to prepare a standard curve by using Excell from youtube). Calculate the concentration of unknown.Calculate the average dipole–induced-dipole interaction energy, in joules per mole (J mol−1), between a water molecule and a benzene molecule separated by 1.0 nm.
- A drug has a measured diffusivity of 5*10^-6 cm^2/s^-1 at 37 degree Celsius. What is this drug’s Stokes-Einstein radius in nm?1 Gren: molanty of CsP stlutan -010M = 0.10mol/L vdm me of SoutoL molar mass of csp= 249.68 g/ mole %3D moles af CSP = molahty of CSPX volume of shreoon mdes of asp = 0.10 mol/xIL moles of cSp: 0-10 mol mass of csP-moles of CSPXmolar mass of CsP = 0.10mol X249.c689/mde mass of CSP= 24.96891.0 ml of serum albumin (BSA) solution was precisely diluted to 100 ml with a buffer solution, and the absorbance at 280 nm was measured from this buffer solution at a distance of 1 cm from the light. The result was A=1.0. BSA is 0.1%(=0.1g/l). The absorptivity is e(0.1%)=0.667, so 1g/l solution gives an absorbance of 0.667. What was the original protein content? Report in the result unit mg/ml with an accuracy of 0.1 mg.