TRANSMITTANCE 180- 20- 4000 3580 TH 9 10 Proton NMA 3000 L ਗਾਗਾ 200 190 180 Carbor 13 NMA 2018.30 8 2 1 EH ਤਰ H HAVENUMBERS 170 160 2008 6 150 5 1822.34- 1450.85 --92-19 1359.00.8 140 PPM30 1800 3 ava. 358 19 - ЗН 50 40 30 20 MF C10H100 MW 146 $C 82.2 %H 6.9 2. PPM 10 PPM
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- 1. C5H1002 10 HPM-00-297 100 TRANSMITERE 9 4000 8 T 3000 T 7 T 6 2000 5 ppm MOVENEDI T 4 3 T 1500 : T 3 1 T 2 : T 1000 6 T 1 T 0 500 200 DEPT-90 180 160 CDS-00-156 DEPT-135 140 120 100 ppm T 80 60 T 40 20 لندmasigantens 4800 11 10 HSP-00-525 9 8 7 TW 6 11 5 ppm 4 3 2 1 0 G C6H10O2 Page 7 of 8 O ZOOMMolar concentration of the dye stock solution: 2.52e-5 mol/L Operating Wavelength: 630 nm Solutions(Dilutions) Absorbance (A)(a.u.) 1 0.073 2 0.118 3 0.258 4 0.477 Using linear regression determine the absorbance/concentration relationship for the dye. [dye] =_____ x A
- Staple your graph to the data sheet. Complete the following table: T-1(K-1) In(VP) 353 -0.00297 348 - o 06191 343 =0.00296 338 333=0.0300 323-0.0030u る= =0.00309 323 273=0.006 0.003663 Micros X 6 Modul X I Course X S What i Te219 x G intelle x Intelle x com/course.html?courseld%=16985674&OpenVellumHMAC=a46387336edc299b16 49c591bf9ad36#10001 Provide Feedback 11:18 AM 75°F Partly sunny O O 4x a 12/10/2021 36Lrdocaine USP (ATR) 95- 90 85 80 75 70 65 60 55 50 45 Lidocaine 40 4000 3500 3000 2500 2000 1500 1000 Wavenumbers (cm-1) %Transmittance IZ 3243.36 3021.30 2968.47 2921.13 2799.39 1661.66 1593.98 1491.43, 1449.061 422.12,384.681371.62 1291.03264.55 1206.99 1165.931119.56 1091.78072.77. 1034.33 970.79986.39 917.91, 885.23 763.76 703.94 615.01599.90
- Q1. A solution (0.005 M), has a transmittance percent equal to 13.3%. Calculate the transmittance percent for 0.05 M solution? 133 x10-7 None 8.76 x10-9 1.74x10-7 1.33 x10-7 0.876x10-9% TRANSMITTANCE 100 4000 3580 3.0 Proton NMA 2959.18 2938.83 3888 2.5 2874 38 1H 1H 230 220 210 200 190 PPM Carbon 13 NMA 2588 HAVENUMBERS ר 2.0 70 2888 60 1716.08. 1H 1.5 2 1460.30- 1377.35 - 1500 2H 1.5H SC SOTT 1024.33. 1000 843. 1.5H 1.0 PPM 20 10 PPM O MF C8H160 MW 128 %C 74.9 %H 12.6 0.5me of Cones Practice Session - PeriodibsTable x 84.studyisland.com/cfw/test/practice-session/a2166?CFID=0487f3b7-46be-4e10-aa17-5c7ee16a463d&CFTOKEN=0&cratelD=a2166&packl. < ☆ Login O Mail -Keidy A Mun.. PowerSchool Learn.. Salir de ASNEF No.. Home-Study Island Desmos | Scientific. F Meet-mythhou-dih able 1. The halogens are the elements of group 17 on the periodic table. Halogens combine easily-with elements from group 1. When a halogen reacts with a metal, what type of compound is formed? A. noble gas OB. potassium Oc. alloy OD salt Reset Submit Session Score: 0% (0/0)
- Tain XXX Mor x mar X List x S Won X DZL Sum X 021 Lect X C The X _html?deploymentid=5735112480241329813180832311&elSBN=9781305862883&id=1707785929&nbid=3322539... ✰ -TAP 2 req 2 req 2 req M M 2 req Erwin Schrödinger Back A Orbitals which result from solving the Schrödinger wave equation can be represented by electron "cloud" pictures. Match the orbitals below with their kind and identify their shapes. Put letters in alphabetical order. If none are correct leave the box blank. A&B 1.s orbital C 2. p orbital P 3.d orbital Alpha-numeric input field B 12. Orbital Shapes and Nodes: This is group attempt 2 of 10 An error has been detected in your answer. Check for typos, miscalculations etc. before submitting your answer. s orbitals have a spherical p orbitals have a dumbbell d orbitals have a clover leaf MacBook Air ATM HO X Х Autosaved at 11:23 PM с Min x shape. shape. shape. D G Whix ☐ + Update: Q Search this course X Next ? [Η] H A-Z Show All 4)Sample IdentificationCodeConcentration of M%TA=2-log(%T)Q50004.00 x 10-417.90.75Q50013.20 x 10-425.00.6Q50022.40 x 10-435.70.46Q50031.60 x 10-450.20.3Q50048.000 x 10-570.80.15SampleIdentificationCode%TA=2-log(%T)AMQ0210150143.70.359518560.360.000192Q0210150244.10.355561410.360.00018Q0210150343.80.358525890.360.00017Q0210150444.10.355561410.360.00018Q0210150543.80.358525890.360.00017What was their percent error?43%Does Batch 021015 meet legal requirements?No, because it is not between 2.85 * 10(4) and 3.15 * 10(4)Well #DropsBluedye1234567891012345678910Drops 9Distilled water876543210Concne 0.26tration0.52Test Tube #0.781.041.3Solutions3Concentration (M)2.082.32.6Concentration (ppm)1:1 dilution11.82Starting Dilution21.562:1 dilution0A.Zero standard0Was your calibration curve as linear as you expected?B.Did you experience any âdriftâ of the resistance readings?C.What is the equation of your best-fit line?D.What commercial drink did you analyze?E.Assuming…COVID-1 X e Daily Cri X 8 GivePuls X h Hulu | M X N Netflix Among A ALEKS - x * Cengag X вЫ Еxcel 20 х - Yuzu Re X 1 Labflow x B Content X www-awn.aleks.com/alekscgi/x/lsl.exe/1o_u-IgNslkr7j8P3jH-liJOkWvnm4w-aQ-rw-zRhgRnayfmbBs65spEYXSOJ3NjMVprYxIApw3DXY1a20BmCdvViqDxBeXUZp5Tj5t8UsViizKS. Biology Syllabus Labflow - Courses Explore - HogSync P Packback it MyMercy - Login N Netflix e SafeAssign Self-E. E Apps B Blackboard Mail - Ava Schied... O THERMODYNAMICS Using specific heat capacity to find temperature change Ava v A chemical reaction takes place inside a flask submerged in a water bath. The water bath contains 3.70 kg of water at 26.0 °C. During the reaction 98.8 kJ of heat flows out of the bath and into the flask. -1 -1 Calculate the new temperature of the water bath. You can assume the specific heat capacity of water under these conditions is 4.18 J•g ''K '. Round your answer to 3 significant digits. alo Ar Explanation Check O 2020 McGraw-Hill Education. All Rights Reserved.…