HC2H3O2 + NaCl --> Na+ + C2H3O2-). Correct answer is - 5.610-10. How do you find density in the ideal gas law. >> around the world. /F2 10 0 R Aphids On Tulsi, Using the Ka's for HC2H3O2 and HCO3- calculate the Kb's for the C2H3O2- and CO3-2 ions. Write the net ionic equation for the hydrolysis of Na 2CO 3. Why is NaHCO3 a base? Question 21 (4 points) Choose 1. Table of Acids with Ka and pKa Values* CLAS Acid HA A-Ka pKa Acid Strength Conjugate Base Strength Hydroiodic HI I-Hydrobromic HBr Br-Perchloric HClO4 ClO4-Hydrochloric HCl Cl-Chloric HClO3 ClO3-Sulfuric (1) H2SO4 HSO4-Nitric HNO3 NO3-Strong acids completely dissociate in aq solution (Ka > 1, pKa < 1). To do that you use. >> so Ka of NH4 is ~ to the Kb of acetate(C2H3O2) anion Taurus Judge Concealed Carry Holster, This is a popular solution! /Font << 22.The. 12 0 obj Type Formula K sp; Bromides : PbBr 2: 6.3 x 10-6: AgBr: 3.3 x 10-13: Carbonates : BaCO 3: 8.1 x 10-9: CaCO 3: 3.8 x 10-9: CoCO 3: 8.0 x 10-13: CuCO 3: 2.5 x 10-10: FeCO 3: 3.5 x 10-11: PbCO 3: 1.5 x 10-13: MgCO 3: 4.0 x 10-5: MnCO 3: 1.8 x 10-11: NiCO 3: 6.6 x 10-9: Ag 2 CO 3: 8.1 x 10-12: ZnCO 3: 1.5 x 10-11: Chlorides Ka for propionic acid is 1.3 10-5 at 25C. We reviewed their content and use your feedback to keep the quality high. What is the answer to today's cryptoquote in newsday? Compare this value with that calculated from your measured pH's. pH = pKa +log([base] [acid]) In this case, Ka = 1014 1.8 105 5.6 1010 Thus, pH = 9.26 +log( 0.15 0.35) pH 8.89 Answer link Step 3: Plug in the information we found in the ICE table. What are the units used for the ideal gas law? TABLE OF CONJUGATE ACID-BASE PAIRS Acid Base K a (25 oC) HClO 4 ClO 4 - H 2 SO 4 HSO 4 - HCl Cl- HNO 3 NO 3 - H 3 O + H 2 O H 2 CrO 4 HCrO 4 - 1.8 x 10-1 H 2 C 2 O 4 (oxalic acid) HC 2 O 4 - 5.90 x 10-2 [H 2 SO 3] = SO 2 (aq) + H2 O HSO Question 21 options: endobj KC2H3O2 is potassium acetate, of which the acetate anion C2H3O2- is a weak base, pKb = 9.22 and potassium ions are neutral, hence of no effect on pH. Full Member; Posts: 434; Mole Snacks: +33/-25; Gender: Re: What is the value of the base ionization constant. << Compare These With Those Calculated From Your Measured PH's. What is the value of Kb for the acetate ion /F3 14 0 R (Kb > 1, pKb < 1). Start studying Chem 2 Test 3. It is used in making white lead in medicines and as a mordant in dyeing. 598 595 380 434 367 583 530 759 519 523 469 314 283 314 596 338 What is the Ka of pure water? H2CO3 H+ + HCO3- As a result, the Ka expression is: Ka = ([H+] [HCO3-])/ [H2CO3] It should be noted that carbonic acid is a weak acid, so its Ka value in water is only 4.3 x 1. Solving for the Kb value is the same as the Ka value. Experts are tested by Chegg as specialists in their subject area. 581 717 593 540 548 682 636 888 613 603 577 314 342 314 596 500 770 656 604 595 696 534 527 682 689 285 411 614 511 846 690 717 Expert Answer . You'll get a detailed solution from a subject matter expert that helps you learn core concepts. Whereas, 1.5 10-9 M 1.0 10-7 M 9.1 10-6 M 1.1 10-5 M 1.2 10-3 For a detailed explanation of this, check out ICE tables: 1 See answer luckylulu03 is waiting Compare these values with those calculated from your measured pH's. /MissingWidth 338 B + H2O (l) <-> BH+ (aq) + OH- (aq) I0.900-0.0. What are the qualities of an accurate map? To solve for x, we use the quadratic formula. In pure water, at 25C, the [H3O+] and [OH-] ion concentrations are 1.0 x 10-7 M. The value of Kw at 25C is therefore 1.0 x 10-14. HCO3- acts as a base when mixed with a compound that is more acidic than itself (larger Ka) and as an acid when mixed with a compound that is more basic than itself (smaller Ka). 39820 Russ Clean Songs, 202 268 555 555 555 555 283 561 300 677 378 465 596 322 510 300 pKa = -log10 (Ka), Ka of acetic acid = 1.8*10^-5. When joined with a Hydrogen to form CH3COOH, it is Acetic Acid, Science Chemistry Chemistry questions and answers Using the Ka's for HC2H3O2 (1.8x10-5) and HCO3- (5.6x10-11) : a) Calculate the Kb for C2H3O2- b)Calculate the Kb for CO32- This problem has been solved! /Subtype /Type1C Favorite Answer. Lead Acetate is also known as lead (II) acetate, is a white crystalline chemical compound with the formula Pb (C 2 H 3 O 2) 2. /Widths [ 202 268 397 550 555 880 678 205 314 314 454 596 260 322 260 331 & Hello. /F0 6 0 R Lead Acetate is poisonous in nature. >> I suspect you measured the pH of the solution, converted that to OH^- and plugged into Kb = (x)^2/C-x. arrow_forward. For an Acid Base Conjugate Pair. stream Did Billy Graham speak to Marilyn Monroe about Jesus? May 11, 2012. The KB value is listed below: pKa + pKb - 14 pKa = -log10 (Ka), Ka of acetic acid = 1.8*10^-5 pKa = 4.74, pkb = 9.255 9.255 = -log10(Kb), Kb = 5.56*10^-10 a = 1. b = 2 10 9. EC-x.xx 300 528 598 451 596 528 341 585 586 274 291 542 274 860 586 577 /BaseFont /FJCPPC+Myriad-Bold The procedure is very similar for weak bases. The higher the Kb, the the stronger the base. 1.7 x 10-5 What is the [OH-] in a .0052 M solution of Calculating the acid dissociation constant, Ka, using an ICE Table Ka for HC2H3O2: 1.8*10^-5 Ka for HCO3-: 4.3*10^-7 Using the Ka's for HC2H3O2 and HCO3, calculate the Kb's for the C2H3O2^- and CO3^2- ions. Ba(OH)2? HCO3-, calculate the Kb's for the Were the solution steps not detailed enough? Solution : Ka*Kb = Kw Kb = Kw/Ka Ka of HC2H3O2 is 1.8*10^-5 So Kb = 1.0*10^-14 / 1.8*10^-5 Kb = 5.56*10^-10 So Kb value of HCO3- is 5.56*10^-10 Ka value. That gives you an experimental value for Kb. Acid with values less than one are considered weak. The OpenStax name, OpenStax logo, OpenStax book covers, OpenStax CNX name, and OpenStax CNX logo 2007-2021 Transweb Global Inc. All rights reserved. A few of the crystals did not dissolve at room . Where are Pisa and Boston in relation to the moon when they have high tides? Let us help you simplify your studying. 21. Report 3 significant figures, e.g. /AvgWidth 519 (C2H3O2-)? You can ask a new question or browse more Chemistry 2B - UC Davis questions. The pKa of an acid is exactly the same as the pH HALFWAY to the equivalence point!Then, Ka = 10^-pKa and you're done. The second anion being the, sulfate anion. Was the final answer of the question wrong? We recommend using a stream 1999-2023, Rice University. Calculate the value of Kb for this salt from tabulated values of equilibrium constants. /Filter /FlateDecode National Library of Medicine. Given HC2H3O2 is acetic acid,CH3COOH, and the dissociation of acetic acid is shown below CH3COOHCH3COO. NCI Thesaurus (NCIt) Hydrogencarbonate is the carbon oxoanion resulting from the removal of a proton from carbonic acid. /FontName /FJCPPC+Myriad-Bold %PDF-1.2 We will use K (a or b) to represent the acid or base equilibrium constant and K' (b or a) to represent the equilibrium constant of the conjugate pair. /F1 8 0 R The HCO3- is an acid since it has the proton H + that it can donate, when it donates its H + ion it will form CO3^2- .CO3 2-is a base since it can now accept a proton but it is a conjugate base to HCO 3-since it is formed from HCO 3-by donating a proton.. To find the Kb of CO3 2-:-. HA(aq) + H2O(l) H3O + (aq) + A (aq), Ka = [H3O +][A ] [HA . It's silly to not give you the K_b value for ammonia. Magnetic field lines cannot be observed using a compass or iron filings. Q. You'll get a detailed solution from a subject matter expert that helps you learn core concepts. As a result of the EUs General Data Protection Regulation (GDPR). How would you find a Ka or kb value for ( the initial concentrations of both is .1M ) 1. /Type /FontDescriptor How do you calculate the ideal gas law constant? /Length 17 0 R 356 596 376 373 300 583 542 260 300 367 386 465 831 831 831 445 Sodium Acetate | CH3COONa or C2H3NaO2 | CID 517045 - structure, chemical names, physical and chemical properties, classification, patents, literature, biological . After the reaction, it will lose x amount of substance, which will form the H+ and HCO3-. 3. % so overall the pH value wouldclose to7.00or Neutral. (C2H3O2-)? What time does normal church end on Sunday? Thus the reaction will not proceed forward, but rather produce more HCO3-. You can compare that with the actual value by Kb = (Kw/Ka) = (1E-14/Ka for acetic acid) = 5.56E-10. The site owner may have set restrictions that prevent you from accessing the site. Except where otherwise noted, textbooks on this site Acetate | C2H3O2- | CID 175 - structure, chemical names, physical and chemical properties, classification, patents, literature, biological activities, safety/hazards/toxicity information, supplier lists, and more. We are not permitting internet traffic to Byjus website from countries within European Union at this time. Ka for HC2H3O2: 1.8 x 10 -5Ka for HCO3-: 4.3 x 10 -7Using the Ka's for HC2H3O2 and HCO3, calculate the Kb's for the C2H3O2- and CO32- ions. NH4Cl knowing that the pH value is 4.5 >> It has a role as a human metabolite, a Saccharomyces cerevisiae metabolite, an Escherichia coli metabolite, a mouse metabolite and a cofactor. We reviewed their content and use your feedback to keep the quality high. lHw9!pt. Here is what I did: K3PO4(aq) + Ca(C2H3O2)2 --> KC2H3O2 + Ca3PO4 3K+ + PO4-3 + Ca+2 2(C2H3O2-) --> K+ +, Calculate the final molarity of acetate anion in the solution. 5.97E-10. K a = ( x) ( x) ( 0.2 x) Step 4: Set the new equation equal to the given Ka. /Type /Page Table of Solubility Product Constants (K sp at 25 o C). C2H3O2 (more commonly written CH3COO-) is the anion Acetate. The value of K a is used to calculate the pH of weak acids.The pK a value is used to choose a buffer when needed. You use the formula. /CapHeight 674 It will dissociate to NH4+ and C2H3O2- Question: 0.1 M NaC2H3O2 solution,pH of 9.1, calculate: Value of Kb. Ka for HC2H3O2: 1.8*10^-5 Ka for HCO3-: 4.3*10^-7 Using the Ka's for HC2H3O2 and HCO3, calculate the Kb's for the C2H3O2^- and CO3^2- ions. .05 mol C. .10 mol D. .15 mol E. .20. Rank these acids according to their expected p Ka values. K a K b = K w. Now, K w = 1 x 10-1 4 K b = (1x 10-14)/(4.7x 10-11) Compare this value with that calculated fr A 25.00-mL sample of propionic acid, HC3H5O2, of unknown concentration was titrated with 0.171 M KOH. Using the Kas for HC2H3O2 (1.8x10-5) and HCO3- (5.6x10-11) : a) Calculate the K b for C 2 H 3 O 2-. b)Calculate the K b for CO 3 2- HCO3- is a conjugate acid, H 2 CO 3. (Rate this solution on a scale of 1-5 below), Log into your existing Transtutors account. ordinarily would be in a solution. Answer Save. This acid has two acidic protons, so that means there are two hydro View the full answer Previous question Next question If a solution initially contains 0.250M HC2H3O2, what is the equilibrium concentration of H3O+ at 25C? National Institutes of Health. << are licensed under a, Measurement Uncertainty, Accuracy, and Precision, Mathematical Treatment of Measurement Results, Determining Empirical and Molecular Formulas, Electronic Structure and Periodic Properties of Elements, Electronic Structure of Atoms (Electron Configurations), Periodic Variations in Element Properties, Relating Pressure, Volume, Amount, and Temperature: The Ideal Gas Law, Stoichiometry of Gaseous Substances, Mixtures, and Reactions, Shifting Equilibria: Le Chteliers Principle, The Second and Third Laws of Thermodynamics, Representative Metals, Metalloids, and Nonmetals, Occurrence and Preparation of the Representative Metals, Structure and General Properties of the Metalloids, Structure and General Properties of the Nonmetals, Occurrence, Preparation, and Compounds of Hydrogen, Occurrence, Preparation, and Properties of Carbonates, Occurrence, Preparation, and Properties of Nitrogen, Occurrence, Preparation, and Properties of Phosphorus, Occurrence, Preparation, and Compounds of Oxygen, Occurrence, Preparation, and Properties of Sulfur, Occurrence, Preparation, and Properties of Halogens, Occurrence, Preparation, and Properties of the Noble Gases, Transition Metals and Coordination Chemistry, Occurrence, Preparation, and Properties of Transition Metals and Their Compounds, Coordination Chemistry of Transition Metals, Spectroscopic and Magnetic Properties of Coordination Compounds, Aldehydes, Ketones, Carboxylic Acids, and Esters, Composition of Commercial Acids and Bases, Standard Thermodynamic Properties for Selected Substances, Standard Electrode (Half-Cell) Potentials, Half-Lives for Several Radioactive Isotopes, https://openstax.org/books/chemistry-2e/pages/1-introduction, https://openstax.org/books/chemistry-2e/pages/h-ionization-constants-of-weak-acids, Creative Commons Attribution 4.0 International License. #therefore pH approx 8.89#, 12364 views Experts are tested by Chegg as specialists in their subject area. b. /Subtype /Type1 Your email address will not be published. How does Charle's law relate to breathing? >> Is Brooke shields related to willow shields? (CH3)2NH (aq)+H2O (l) (CH3)2NH2+ (aq)+OH (aq)Kb=5.4104at25C [ (CH3)2NH]pH at25C0.050 11.69 0.10 11.85 0.20 12.01 endobj Question: Question 21 (4 points) What is the value of Kb for the acetate ion (C2H3O2-)? Nawdir. Calculate the Kb values for the CO32- and C2H3O2- ions using the Ka values for HCO3- (4.7 x 10-11) and HC2H3O2 (1.8 x 10-5), respectively. {AJ;TGK>.DP'[{[MkE ?>upH`` This book uses the Therefore we can just dilute it with water. /Contents 12 0 R Our mission is to improve educational access and learning for everyone. Want to cite, share, or modify this book? OpenStax is part of Rice University, which is a 501(c)(3) nonprofit. I looked this up in an acid equilibria table: #K_b = 1.8*10^-5#. Trending now. Ka for HC2H3O2: 1.8*10^-5 Ka for HCO3-: 4.3*10^-7 Using the Ka's for HC2H3O2 and HCO3, calculate the Kb's for the C2H3O2^- and CO3^2- ions. KaKb = Kw. 7 0 obj How do I determine the molecular shape of a molecule? HC2H3O2 is the chemical formula for the organic compound acetic acid. Textbook content produced by OpenStax is licensed under a Creative Commons Attribution License . HCO3- (known as bicarbonate) is the conjugate base of H2CO3, a weak acid, and the conjugate acid of the carbonate ion. Get it solved from our top experts within 48hrs! C under acetate is concn of the salt. citation tool such as, Authors: Paul Flowers, Klaus Theopold, Richard Langley, William R. Robinson, PhD. Glacial acetic acid refers to Concentrated Acetic acid. What is the value of Kb for C2H3O2-? 704 690 717 717 717 717 717 596 717 682 682 682 682 603 580 600 Write the Kb expression for the hydrolysis reaction. (Ex. HC2H3O2 and Using The Ka's For HC2H3O2 And HCO3-, Calculate The Kb's For The C2H3O2- And CO32- Ions. /FirstChar 32 (Hide this section if you want to rate later). | determine which direction-forward or reverse-is favored in the reaction, compare strengths of both acids then both bases. ] CO32- ions. endobj Bicarbonate Ion is a polyatomic ion whose formula is HCO3-. BT 0.971 0 0 0.971 210 709.92 Tm 0 0 0 rg /F0 11 Tf 0.0046 Tc -0.0022 Tw (TABLE OF CONJUGATE ACID-BASE PAIRS) Tj -142.123 -23.234 TD -0.0297 Tc 0 Tw (Acid) Tj 185.3778 0 TD 0.0193 Tc (Base) Tj 185.3778 0 TD /F1 11 Tf 0.0602 Tc (K) Tj ET BT 1.0602 0 0 1.0602 438.36 685.08 Tm /F1 6 Tf -0.0406 Tc (a) Tj ET BT 0.971 0 0 0.971 441.84 687.36 Tm /F0 11 Tf -0.0306 Tc 0.0341 Tw ( \(25) Tj ET BT 1.0602 0 0 1.0602 459.12 691.68 Tm /F0 6 Tf 0.0478 Tc -0.0117 Tw ( o) Tj ET BT 0.971 0 0 0.971 464.16 687.36 Tm /F0 11 Tf 0.0059 Tc 0 Tw (C\)) Tj -403.8764 -23.234 TD /F2 11 Tf 0.006 Tc (HClO) Tj ET BT 1.0602 0 0 1.0602 95.04 662.52 Tm /F2 6 Tf -0.021 Tc (4) Tj ET BT 0.971 0 0 0.971 252 664.8 Tm /F2 11 Tf 0.0093 Tc (ClO) Tj ET BT 1.0602 0 0 1.0602 268.08 662.52 Tm /F2 6 Tf -0.021 Tc (4) Tj 3.0559 6.2251 TD -0.0562 Tc (\226) Tj ET BT 0.971 0 0 0.971 72 653.52 Tm /F2 11 Tf -0.0038 Tc (H) Tj ET BT 1.0602 0 0 1.0602 78.96 651.24 Tm /F2 6 Tf -0.021 Tc (2) Tj ET BT 0.971 0 0 0.971 82.2 653.52 Tm /F2 11 Tf -0.0126 Tc (SO) Tj ET BT 1.0602 0 0 1.0602 94.8 651.24 Tm /F2 6 Tf -0.021 Tc (4) Tj ET BT 0.971 0 0 0.971 252 653.52 Tm /F2 11 Tf -0.0096 Tc (HSO) Tj ET BT 1.0602 0 0 1.0602 271.56 651.24 Tm /F2 6 Tf -0.021 Tc (4) Tj 3.0559 6.2251 TD -0.0562 Tc (\226) Tj ET BT 0.971 0 0 0.971 72 642.24 Tm /F2 11 Tf 0.0214 Tc (HCl) Tj 185.3778 0 TD 0.034 Tc (Cl) Tj ET BT 1.0602 0 0 1.0602 260.76 646.56 Tm /F2 6 Tf -0.0562 Tc (\226) Tj ET BT 0.971 0 0 0.971 72 630.96 Tm /F2 11 Tf 0.0033 Tc (HNO) Tj ET BT 1.0602 0 0 1.0602 93.36 628.68 Tm /F2 6 Tf -0.021 Tc (3) Tj ET BT 0.971 0 0 0.971 252 630.96 Tm /F2 11 Tf 0.0069 Tc (NO) Tj ET BT 1.0602 0 0 1.0602 266.4 628.68 Tm /F2 6 Tf -0.021 Tc (3) Tj 3.0559 6.2251 TD -0.0562 Tc (\226) Tj ET BT 0.971 0 0 0.971 72 619.68 Tm /F2 11 Tf -0.0038 Tc (H) Tj ET BT 1.0602 0 0 1.0602 78.96 617.4 Tm /F2 6 Tf -0.021 Tc (3) Tj ET BT 0.971 0 0 0.971 82.2 619.68 Tm /F2 11 Tf -0.0401 Tc (O) Tj ET BT 1.0602 0 0 1.0602 89.52 624 Tm /F2 6 Tf 0.0471 Tc (+) Tj ET BT 0.971 0 0 0.971 252 619.68 Tm /F2 11 Tf -0.0038 Tc (H) Tj ET BT 1.0602 0 0 1.0602 258.96 617.4 Tm /F2 6 Tf -0.021 Tc (2) Tj ET BT 0.971 0 0 0.971 262.2 619.68 Tm /F2 11 Tf -0.0401 Tc (O) Tj -195.8826 -11.617 TD -0.0038 Tc (H) Tj ET BT 1.0602 0 0 1.0602 78.96 606.12 Tm /F2 6 Tf -0.021 Tc (2) Tj ET BT 0.971 0 0 0.971 82.2 608.4 Tm /F2 11 Tf -0.0021 Tc (CrO) Tj ET BT 1.0602 0 0 1.0602 99.24 606.12 Tm /F2 6 Tf -0.021 Tc (4) Tj ET BT 0.971 0 0 0.971 252 608.4 Tm /F2 11 Tf -0.0025 Tc (HCrO) Tj ET BT 1.0602 0 0 1.0602 276 606.12 Tm /F2 6 Tf -0.021 Tc (4) Tj 3.0559 6.2251 TD -0.0562 Tc (\226) Tj ET BT 0.971 0 0 0.971 432 608.4 Tm /F2 11 Tf 0.015 Tc 0 Tw (1.8 x 10) Tj ET BT 1.0602 0 0 1.0602 465.72 612.72 Tm /F2 6 Tf 0.018 Tc 0 Tw (\2261) Tj ET BT 0.971 0 0 0.971 72 597.12 Tm /F2 11 Tf -0.0038 Tc (H) Tj ET BT 1.0602 0 0 1.0602 78.96 594.84 Tm /F2 6 Tf -0.021 Tc (2) Tj ET BT 0.971 0 0 0.971 82.2 597.12 Tm /F2 11 Tf 0.0466 Tc (C) Tj ET BT 1.0602 0 0 1.0602 88.44 594.84 Tm /F2 6 Tf -0.021 Tc (2) Tj ET BT 0.971 0 0 0.971 91.68 597.12 Tm /F2 11 Tf -0.0401 Tc (O) Tj ET BT 1.0602 0 0 1.0602 99 594.84 Tm /F2 6 Tf -0.021 Tc (4) Tj ET BT 0.971 0 0 0.971 102.24 597.12 Tm /F2 11 Tf 0.0015 Tc 0.0147 Tw ( \(oxalic acid\)) Tj 154.2343 0 TD 0.0214 Tc 0 Tw (HC) Tj ET BT 1.0602 0 0 1.0602 265.2 594.84 Tm /F2 6 Tf -0.021 Tc (2) Tj ET BT 0.971 0 0 0.971 268.44 597.12 Tm /F2 11 Tf -0.0401 Tc (O) Tj ET BT 1.0602 0 0 1.0602 275.76 594.84 Tm /F2 6 Tf -0.021 Tc (4) Tj 3.0559 6.2251 TD -0.0562 Tc (\226) Tj ET BT 0.971 0 0 0.971 432 597.12 Tm /F2 11 Tf 0.0189 Tc -0.0033 Tw (5.90 x 10) Tj ET BT 1.0602 0 0 1.0602 471.24 601.44 Tm /F2 6 Tf 0.018 Tc 0 Tw (\2262) Tj ET BT 0.971 0 0 0.971 72 585.84 Tm /F2 11 Tf -0.019 Tc ([H) Tj ET BT 1.0602 0 0 1.0602 81.96 583.56 Tm /F2 6 Tf -0.021 Tc (2) Tj ET BT 0.971 0 0 0.971 85.2 585.84 Tm /F2 11 Tf -0.0126 Tc (SO) Tj ET BT 1.0602 0 0 1.0602 97.8 583.56 Tm /F2 6 Tf -0.021 Tc (3) Tj ET BT 0.971 0 0 0.971 101.04 585.84 Tm /F2 11 Tf -0.0163 Tc 0.033 Tw (] = SO) Tj ET BT 1.0602 0 0 1.0602 127.56 583.56 Tm /F2 6 Tf -0.021 Tc 0 Tw (2) Tj ET BT 0.971 0 0 0.971 130.8 585.84 Tm /F2 11 Tf -0.0343 Tc (\() Tj 3.0896 0 TD /F3 11 Tf -0.0116 Tc (aq) Tj 11.4934 0 TD /F2 11 Tf -0.0146 Tc 0.0313 Tw (\) + H) Tj ET BT 1.0602 0 0 1.0602 165.84 583.56 Tm /F2 6 Tf -0.021 Tc 0 Tw (2) Tj ET BT 0.971 0 0 0.971 169.08 585.84 Tm /F2 11 Tf -0.0401 Tc (O) Tj 85.3974 0 TD -0.0096 Tc (HSO) Tj ET BT 1.0602 0 0 1.0602 271.56 583.56 Tm /F2 6 Tf -0.021 Tc (3) Tj 3.0559 6.2251 TD -0.0562 Tc (\226) Tj ET BT 0.971 0 0 0.971 432 585.84 Tm /F2 11 Tf 0.0189 Tc -0.0033 Tw (1.71 x 10) Tj ET BT 1.0602 0 0 1.0602 471.24 590.16 Tm /F2 6 Tf 0.018 Tc 0 Tw (\2262) Tj ET BT 0.971 0 0 0.971 72 574.56 Tm /F2 11 Tf -0.0096 Tc (HSO) Tj ET BT 1.0602 0 0 1.0602 91.56 572.28 Tm /F2 6 Tf -0.021 Tc (4) Tj 3.0559 6.2251 TD -0.0562 Tc (\226) Tj ET BT 0.971 0 0 0.971 252 574.56 Tm /F2 11 Tf -0.0126 Tc (SO) Tj ET BT 1.0602 0 0 1.0602 264.6 572.28 Tm /F2 6 Tf -0.021 Tc (4) Tj 3.0559 6.2251 TD -0.0386 Tc (2\226) Tj ET BT 0.971 0 0 0.971 432 574.56 Tm /F2 11 Tf 0.0189 Tc -0.0033 Tw (1.20 x 10) Tj ET BT 1.0602 0 0 1.0602 471.24 578.88 Tm /F2 6 Tf 0.018 Tc 0 Tw (\2262) Tj ET BT 0.971 0 0 0.971 72 563.28 Tm /F2 11 Tf -0.0038 Tc (H) Tj ET BT 1.0602 0 0 1.0602 78.96 561 Tm /F2 6 Tf -0.021 Tc (3) Tj ET BT 0.971 0 0 0.971 82.2 563.28 Tm /F2 11 Tf -0.0417 Tc (PO) Tj ET BT 1.0602 0 0 1.0602 95.16 561 Tm /F2 6 Tf -0.021 Tc (4) Tj ET BT 0.971 0 0 0.971 252 563.28 Tm /F2 11 Tf -0.0038 Tc (H) Tj ET BT 1.0602 0 0 1.0602 258.96 561 Tm /F2 6 Tf -0.021 Tc (2) Tj ET BT 0.971 0 0 0.971 262.2 563.28 Tm /F2 11 Tf -0.0417 Tc (PO) Tj ET BT 1.0602 0 0 1.0602 275.16 561 Tm /F2 6 Tf -0.021 Tc (4) Tj 3.0559 6.2251 TD -0.0562 Tc (\226) Tj ET BT 0.971 0 0 0.971 432 563.28 Tm /F2 11 Tf 0.0189 Tc -0.0033 Tw (7.52 x 10) Tj ET BT 1.0602 0 0 1.0602 471.24 567.6 Tm /F2 6 Tf 0.018 Tc 0 Tw (\2263) Tj ET BT 0.971 0 0 0.971 72 552 Tm /F2 11 Tf -0.0076 Tc (Fe\(H) Tj ET BT 1.0602 0 0 1.0602 92.52 549.72 Tm /F2 6 Tf -0.021 Tc (2) Tj ET BT 0.971 0 0 0.971 95.76 552 Tm /F2 11 Tf -0.0372 Tc (O\)) Tj ET BT 1.0602 0 0 1.0602 106.08 549.72 Tm /F2 6 Tf -0.021 Tc (6) Tj 3.0559 6.2251 TD 0.013 Tc (3+) Tj ET BT 0.971 0 0 0.971 252 552 Tm /F2 11 Tf -0.0076 Tc (Fe\(H) Tj ET BT 1.0602 0 0 1.0602 272.52 549.72 Tm /F2 6 Tf -0.021 Tc (2) Tj ET BT 0.971 0 0 0.971 275.76 552 Tm /F2 11 Tf -0.0372 Tc (O\)) Tj ET BT 1.0602 0 0 1.0602 286.08 549.72 Tm /F2 6 Tf -0.021 Tc (5) Tj ET BT 0.971 0 0 0.971 289.32 552 Tm /F2 11 Tf -0.0219 Tc (OH) Tj ET BT 1.0602 0 0 1.0602 303.6 556.32 Tm /F2 6 Tf 0.013 Tc (2+) Tj ET BT 0.971 0 0 0.971 432 552 Tm /F2 11 Tf 0.0189 Tc -0.0033 Tw (1.84 x 10) Tj ET BT 1.0602 0 0 1.0602 471.24 556.32 Tm /F2 6 Tf 0.018 Tc 0 Tw (\2263) Tj ET BT 0.971 0 0 0.971 72 540.72 Tm /F2 11 Tf -0.0038 Tc (H) Tj ET BT 1.0602 0 0 1.0602 78.96 538.44 Tm /F2 6 Tf -0.021 Tc (2) Tj ET BT 0.971 0 0 0.971 82.2 540.72 Tm /F2 11 Tf 0.0466 Tc (C) Tj ET BT 1.0602 0 0 1.0602 88.44 538.44 Tm /F2 6 Tf -0.021 Tc (8) Tj ET BT 0.971 0 0 0.971 91.68 540.72 Tm /F2 11 Tf -0.0038 Tc (H) Tj ET BT 1.0602 0 0 1.0602 98.64 538.44 Tm /F2 6 Tf -0.021 Tc (4) Tj ET BT 0.971 0 0 0.971 101.88 540.72 Tm /F2 11 Tf -0.0401 Tc (O) Tj ET BT 1.0602 0 0 1.0602 109.2 538.44 Tm /F2 6 Tf -0.021 Tc (4) Tj ET BT 0.971 0 0 0.971 112.44 540.72 Tm /F2 11 Tf -0.0343 Tc 0.0515 Tw ( \() Tj 5.4377 0 TD /F3 11 Tf -0.0569 Tc 0 Tw (o) Tj 5.6849 0 TD /F2 11 Tf -0.008 Tc 0.0244 Tw (\226phthalic acid\)) Tj 132.6069 0 TD 0.0214 Tc 0 Tw (HC) Tj ET BT 1.0602 0 0 1.0602 265.2 538.44 Tm /F2 6 Tf -0.021 Tc (8) Tj ET BT 0.971 0 0 0.971 268.44 540.72 Tm /F2 11 Tf -0.0038 Tc (H) Tj ET BT 1.0602 0 0 1.0602 275.4 538.44 Tm /F2 6 Tf -0.021 Tc (4) Tj ET BT 0.971 0 0 0.971 278.64 540.72 Tm /F2 11 Tf -0.0401 Tc (O) Tj ET BT 1.0602 0 0 1.0602 285.96 538.44 Tm /F2 6 Tf -0.021 Tc (4) Tj 3.0559 6.2251 TD -0.0562 Tc (\226) Tj ET BT 0.971 0 0 0.971 432 540.72 Tm /F2 11 Tf 0.0189 Tc -0.0033 Tw (1.30 x 10) Tj ET BT 1.0602 0 0 1.0602 471.24 545.04 Tm /F2 6 Tf 0.018 Tc 0 Tw (\2263) Tj ET BT 0.971 0 0 0.971 72 529.44 Tm /F2 11 Tf -0.0038 Tc (H) Tj ET BT 1.0602 0 0 1.0602 78.96 527.16 Tm /F2 6 Tf -0.021 Tc (2) Tj ET BT 0.971 0 0 0.971 82.2 529.44 Tm /F2 11 Tf 0.0466 Tc (C) Tj ET BT 1.0602 0 0 1.0602 88.44 527.16 Tm /F2 6 Tf -0.021 Tc (4) Tj ET BT 0.971 0 0 0.971 91.68 529.44 Tm /F2 11 Tf -0.0038 Tc (H) Tj ET BT 1.0602 0 0 1.0602 98.64 527.16 Tm /F2 6 Tf -0.021 Tc (4) Tj ET BT 0.971 0 0 0.971 101.88 529.44 Tm /F2 11 Tf -0.0401 Tc (O) Tj ET BT 1.0602 0 0 1.0602 109.2 527.16 Tm /F2 6 Tf -0.021 Tc (6) Tj ET BT 0.971 0 0 0.971 112.44 529.44 Tm /F2 11 Tf -0.0087 Tc 0.0252 Tw ( \(tartaric acid\)) Tj 143.7296 0 TD 0.0214 Tc 0 Tw (HC) Tj ET BT 1.0602 0 0 1.0602 265.2 527.16 Tm /F2 6 Tf -0.021 Tc (4) Tj ET BT 0.971 0 0 0.971 268.44 529.44 Tm /F2 11 Tf -0.0038 Tc (H) Tj ET BT 1.0602 0 0 1.0602 275.4 527.16 Tm /F2 6 Tf -0.021 Tc (4) Tj ET BT 0.971 0 0 0.971 278.64 529.44 Tm /F2 11 Tf -0.0401 Tc (O) Tj ET BT 1.0602 0 0 1.0602 285.96 527.16 Tm /F2 6 Tf -0.021 Tc (6) Tj 3.0559 6.2251 TD -0.0562 Tc (\226) Tj ET BT 0.971 0 0 0.971 432 529.44 Tm /F2 11 Tf 0.0189 Tc -0.0033 Tw (1.04 x 10) Tj ET BT 1.0602 0 0 1.0602 471.24 533.76 Tm /F2 6 Tf 0.018 Tc 0 Tw (\2263) Tj ET BT 0.971 0 0 0.971 72 518.16 Tm /F2 11 Tf -0.0029 Tc (Hg\(H) Tj ET BT 1.0602 0 0 1.0602 94.92 515.88 Tm /F2 6 Tf -0.021 Tc (2) Tj ET BT 0.971 0 0 0.971 98.16 518.16 Tm /F2 11 Tf -0.0372 Tc (O\)) Tj ET BT 1.0602 0 0 1.0602 108.48 515.88 Tm /F2 6 Tf -0.021 Tc (6) Tj 3.0559 6.2251 TD 0.013 Tc (2+) Tj ET BT 0.971 0 0 0.971 252 518.16 Tm /F2 11 Tf -0.0029 Tc (Hg\(H) Tj ET BT 1.0602 0 0 1.0602 274.92 515.88 Tm /F2 6 Tf -0.021 Tc (2) Tj ET BT 0.971 0 0 0.971 278.16 518.16 Tm /F2 11 Tf -0.0372 Tc (O\)) Tj ET BT 1.0602 0 0 1.0602 288.48 515.88 Tm /F2 6 Tf -0.021 Tc (5) Tj ET BT 0.971 0 0 0.971 291.72 518.16 Tm /F2 11 Tf -0.0219 Tc (OH) Tj ET BT 1.0602 0 0 1.0602 306 522.48 Tm /F2 6 Tf 0.0471 Tc (+) Tj ET BT 0.971 0 0 0.971 432 518.16 Tm /F2 11 Tf 0.015 Tc 0 Tw (2.6 x 10) Tj ET BT 1.0602 0 0 1.0602 465.72 522.48 Tm /F2 6 Tf 0.018 Tc 0 Tw (\2264) Tj ET BT 0.971 0 0 0.971 72 506.88 Tm /F2 11 Tf -0.0181 Tc (Sn\(H) Tj ET BT 1.0602 0 0 1.0602 93.12 504.6 Tm /F2 6 Tf -0.021 Tc (2) Tj ET BT 0.971 0 0 0.971 96.36 506.88 Tm /F2 11 Tf -0.0372 Tc (O\)) Tj ET BT 1.0602 0 0 1.0602 106.68 504.6 Tm /F2 6 Tf -0.021 Tc (3) Tj 3.0559 6.2251 TD 0.013 Tc (2+) Tj ET BT 0.971 0 0 0.971 252 506.88 Tm /F2 11 Tf -0.0181 Tc (Sn\(H) Tj ET BT 1.0602 0 0 1.0602 273.12 504.6 Tm /F2 6 Tf -0.021 Tc (2) Tj ET BT 0.971 0 0 0.971 276.36 506.88 Tm /F2 11 Tf -0.0372 Tc (O\)) Tj ET BT 1.0602 0 0 1.0602 286.68 504.6 Tm /F2 6 Tf -0.021 Tc (2) Tj ET BT 0.971 0 0 0.971 289.92 506.88 Tm /F2 11 Tf -0.0219 Tc (OH) Tj ET BT 1.0602 0 0 1.0602 304.2 511.2 Tm /F2 6 Tf 0.0471 Tc (+) Tj ET BT 0.971 0 0 0.971 432 506.88 Tm /F2 11 Tf 0.0189 Tc -0.0033 Tw (~2 x 10) Tj ET BT 1.0602 0 0 1.0602 464.4 511.2 Tm /F2 6 Tf 0.018 Tc 0 Tw (\2264) Tj ET BT 0.971 0 0 0.971 72 495.6 Tm /F2 11 Tf 0.0009 Tc (HCO) Tj ET BT 1.0602 0 0 1.0602 92.52 493.32 Tm /F2 6 Tf -0.021 Tc (2) Tj ET BT 0.971 0 0 0.971 95.76 495.6 Tm /F2 11 Tf -0.0026 Tc 0.0189 Tw (H \(formic acid\)) Tj 160.9079 0 TD 0.0009 Tc 0 Tw (HCO) Tj ET BT 1.0602 0 0 1.0602 272.52 493.32 Tm /F2 6 Tf -0.021 Tc (2) Tj 3.0559 6.2251 TD -0.0562 Tc (\226) Tj ET BT 0.971 0 0 0.971 432 495.6 Tm /F2 11 Tf 0.015 Tc 0 Tw (1.9 x 10) Tj ET BT 1.0602 0 0 1.0602 465.72 499.92 Tm /F2 6 Tf 0.018 Tc 0 Tw (\2264) Tj ET BT 0.971 0 0 0.971 72 484.32 Tm /F2 11 Tf -0.0011 Tc (Cr\(H) Tj ET BT 1.0602 0 0 1.0602 91.68 482.04 Tm /F2 6 Tf -0.021 Tc (2) Tj ET BT 0.971 0 0 0.971 94.92 484.32 Tm /F2 11 Tf -0.0372 Tc (O\)) Tj ET BT 1.0602 0 0 1.0602 105.24 482.04 Tm /F2 6 Tf -0.021 Tc (6) Tj 3.0559 6.2251 TD 0.013 Tc (3+) Tj ET BT 0.971 0 0 0.971 252 484.32 Tm /F2 11 Tf -0.0011 Tc (Cr\(H) Tj ET BT 1.0602 0 0 1.0602 271.68 482.04 Tm /F2 6 Tf -0.021 Tc (2) Tj ET BT 0.971 0 0 0.971 274.92 484.32 Tm /F2 11 Tf -0.0372 Tc (O\)) Tj ET BT 1.0602 0 0 1.0602 285.24 482.04 Tm /F2 6 Tf -0.021 Tc (5) Tj ET BT 0.971 0 0 0.971 288.48 484.32 Tm /F2 11 Tf -0.0219 Tc (OH) Tj ET BT 1.0602 0 0 1.0602 302.76 488.64 Tm /F2 6 Tf 0.013 Tc (2+) Tj ET BT 0.971 0 0 0.971 432 484.32 Tm /F2 11 Tf 0.015 Tc 0 Tw (1.6 x 10) Tj ET BT 1.0602 0 0 1.0602 465.72 488.64 Tm /F2 6 Tf 0.018 Tc 0 Tw (\2264) Tj ET BT 0.971 0 0 0.971 72 473.04 Tm /F2 11 Tf 0.0133 Tc (Hg) Tj ET BT 1.0602 0 0 1.0602 84.96 470.76 Tm /F2 6 Tf -0.021 Tc (2) Tj ET BT 0.971 0 0 0.971 88.2 473.04 Tm /F2 11 Tf -0.019 Tc (\(H) Tj ET BT 1.0602 0 0 1.0602 98.16 470.76 Tm /F2 6 Tf -0.021 Tc (2) Tj ET BT 0.971 0 0 0.971 101.4 473.04 Tm /F2 11 Tf -0.0372 Tc (O\)) Tj ET BT 1.0602 0 0 1.0602 111.72 470.76 Tm /F2 6 Tf -0.021 Tc (2) Tj 3.0559 6.2251 TD 0.013 Tc (2+) Tj ET BT 0.971 0 0 0.971 252 473.04 Tm /F2 11 Tf 0.0133 Tc (Hg) Tj ET BT 1.0602 0 0 1.0602 264.96 470.76 Tm /F2 6 Tf -0.021 Tc (2) Tj ET BT 0.971 0 0 0.971 268.2 473.04 Tm /F2 11 Tf -0.019 Tc (\(H) Tj ET BT 1.0602 0 0 1.0602 278.16 470.76 Tm /F2 6 Tf -0.021 Tc (2) Tj ET BT 0.971 0 0 0.971 281.4 473.04 Tm /F2 11 Tf -0.0295 Tc (O\)OH) Tj ET BT 1.0602 0 0 1.0602 306 477.36 Tm /F2 6 Tf 0.0471 Tc (+) Tj ET BT 0.971 0 0 0.971 432 473.04 Tm /F2 11 Tf 0.0189 Tc -0.0033 Tw (~1 x 10) Tj ET BT 1.0602 0 0 1.0602 464.4 477.36 Tm /F2 6 Tf 0.018 Tc 0 Tw (\2264) Tj ET BT 0.971 0 0 0.971 72 461.76 Tm /F2 11 Tf 0.0466 Tc (C) Tj ET BT 1.0602 0 0 1.0602 78.24 459.48 Tm /F2 6 Tf -0.021 Tc (6) Tj ET BT 0.971 0 0 0.971 81.48 461.76 Tm /F2 11 Tf -0.0038 Tc (H) Tj ET BT 1.0602 0 0 1.0602 88.44 459.48 Tm /F2 6 Tf -0.021 Tc (5) Tj ET BT 0.971 0 0 0.971 91.68 461.76 Tm /F2 11 Tf 0.0033 Tc (CO) Tj ET BT 1.0602 0 0 1.0602 105.24 459.48 Tm /F2 6 Tf -0.021 Tc (2) Tj ET BT 0.971 0 0 0.971 108.48 461.76 Tm /F2 11 Tf 0.0029 Tc 0.0133 Tw (H \(benzoic acid\)) Tj 147.8079 0 TD 0.0466 Tc 0 Tw (C) Tj ET BT 1.0602 0 0 1.0602 258.24 459.48 Tm /F2 6 Tf -0.021 Tc (6) Tj ET BT 0.971 0 0 0.971 261.48 461.76 Tm /F2 11 Tf -0.0038 Tc (H) Tj ET BT 1.0602 0 0 1.0602 268.44 459.48 Tm /F2 6 Tf -0.021 Tc (5) Tj ET BT 0.971 0 0 0.971 271.68 461.76 Tm /F2 11 Tf 0.0033 Tc (CO) Tj ET BT 1.0602 0 0 1.0602 285.24 459.48 Tm /F2 6 Tf -0.021 Tc (2) Tj 3.0559 6.2251 TD -0.0562 Tc (\226) Tj ET BT 0.971 0 0 0.971 432 461.76 Tm /F2 11 Tf 0.0189 Tc -0.0033 Tw (6.46 x 10) Tj ET BT 1.0602 0 0 1.0602 471.24 466.08 Tm /F2 6 Tf 0.018 Tc 0 Tw (\2265) Tj ET BT 0.971 0 0 0.971 72 450.48 Tm /F2 11 Tf 0.0214 Tc (HC) Tj ET BT 1.0602 0 0 1.0602 85.2 448.2 Tm /F2 6 Tf -0.021 Tc (2) Tj ET BT 0.971 0 0 0.971 88.44 450.48 Tm /F2 11 Tf -0.0401 Tc (O) Tj ET BT 1.0602 0 0 1.0602 95.76 448.2 Tm /F2 6 Tf -0.021 Tc (4) Tj 3.0559 6.2251 TD -0.0562 Tc (\226) Tj ET BT 0.971 0 0 0.971 102.24 450.48 Tm /F2 11 Tf -0.0039 Tc 0.0202 Tw ( \(hydrogen oxalate\)) Tj 154.2343 0 TD 0.0466 Tc 0 Tw (C) Tj ET BT 1.0602 0 0 1.0602 258.24 448.2 Tm /F2 6 Tf -0.021 Tc (2) Tj ET BT 0.971 0 0 0.971 261.48 450.48 Tm /F2 11 Tf -0.0401 Tc (O) Tj ET BT 1.0602 0 0 1.0602 268.8 448.2 Tm /F2 6 Tf -0.021 Tc (4) Tj 3.0559 6.2251 TD -0.0386 Tc (2\226) Tj ET BT 0.971 0 0 0.971 432 450.48 Tm /F2 11 Tf 0.0189 Tc -0.0033 Tw (6.40 x 10) Tj ET BT 1.0602 0 0 1.0602 471.24 454.8 Tm /F2 6 Tf 0.018 Tc 0 Tw (\2265) Tj ET BT 0.971 0 0 0.971 72 439.2 Tm /F2 11 Tf 0.0214 Tc (HC) Tj ET BT 1.0602 0 0 1.0602 85.2 436.92 Tm /F2 6 Tf -0.021 Tc (4) Tj ET BT 0.971 0 0 0.971 88.44 439.2 Tm /F2 11 Tf -0.0038 Tc (H) Tj ET BT 1.0602 0 0 1.0602 95.4 436.92 Tm /F2 6 Tf -0.021 Tc (4) Tj ET BT 0.971 0 0 0.971 98.64 439.2 Tm /F2 11 Tf -0.0401 Tc (O) Tj ET BT 1.0602 0 0 1.0602 105.96 436.92 Tm /F2 6 Tf -0.021 Tc (6) Tj 3.0559 6.2251 TD -0.0562 Tc (\226) Tj ET BT 0.971 0 0 0.971 112.44 439.2 Tm /F2 11 Tf -0.0121 Tc 0.0287 Tw ( \(hydrogen tartrate\)) Tj 143.7296 0 TD 0.0466 Tc 0 Tw (C) Tj ET BT 1.0602 0 0 1.0602 258.24 436.92 Tm /F2 6 Tf -0.021 Tc (4) Tj ET BT 0.971 0 0 0.971 261.48 439.2 Tm /F2 11 Tf -0.0038 Tc (H) Tj ET BT 1.0602 0 0 1.0602 268.44 436.92 Tm /F2 6 Tf -0.021 Tc (4) Tj ET BT 0.971 0 0 0.971 271.68 439.2 Tm /F2 11 Tf -0.0401 Tc (O) Tj ET BT 1.0602 0 0 1.0602 279 436.92 Tm /F2 6 Tf -0.021 Tc (6) Tj 3.0559 6.2251 TD -0.0386 Tc (2\226) Tj ET BT 0.971 0 0 0.971 432 439.2 Tm /F2 11 Tf 0.0189 Tc -0.0033 Tw (4.55 x 10) Tj ET BT 1.0602 0 0 1.0602 471.24 443.52 Tm /F2 6 Tf 0.018 Tc 0 Tw (\2265) Tj ET BT 0.971 0 0 0.971 72 427.92 Tm /F2 11 Tf 0.0214 Tc (CH) Tj ET BT 1.0602 0 0 1.0602 85.2 425.64 Tm /F2 6 Tf -0.021 Tc (3) Tj ET BT 0.971 0 0 0.971 88.44 427.92 Tm /F2 11 Tf 0.0033 Tc (CO) Tj ET BT 1.0602 0 0 1.0602 102 425.64 Tm /F2 6 Tf -0.021 Tc (2) Tj ET BT 0.971 0 0 0.971 105.24 427.92 Tm /F2 11 Tf 0.0008 Tc 0.0153 Tw (H \(acetic acid\)) Tj 151.1447 0 TD 0.0214 Tc 0 Tw (CH) Tj ET BT 1.0602 0 0 1.0602 265.2 425.64 Tm /F2 6 Tf -0.021 Tc (3) Tj ET BT 0.971 0 0 0.971 268.44 427.92 Tm /F2 11 Tf 0.0033 Tc (CO) Tj ET BT 1.0602 0 0 1.0602 282 425.64 Tm /F2 6 Tf -0.021 Tc (2) Tj 3.0559 6.2251 TD -0.0562 Tc (\226) Tj ET BT 0.971 0 0 0.971 432 427.92 Tm /F2 11 Tf 0.0189 Tc -0.0033 Tw (1.76 x 10) Tj ET BT 1.0602 0 0 1.0602 471.24 432.24 Tm /F2 6 Tf 0.018 Tc 0 Tw (\2265) Tj ET BT 0.971 0 0 0.971 72 416.64 Tm /F2 11 Tf -0.0187 Tc (Al\(H) Tj ET BT 1.0602 0 0 1.0602 90.96 414.36 Tm /F2 6 Tf -0.021 Tc (2) Tj ET BT 0.971 0 0 0.971 94.2 416.64 Tm /F2 11 Tf -0.0372 Tc (O\)) Tj ET BT 1.0602 0 0 1.0602 104.52 414.36 Tm /F2 6 Tf -0.021 Tc (6) Tj 3.0559 6.2251 TD 0.013 Tc (3+) Tj ET BT 0.971 0 0 0.971 252 416.64 Tm /F2 11 Tf -0.0187 Tc (Al\(H) Tj ET BT 1.0602 0 0 1.0602 270.96 414.36 Tm /F2 6 Tf -0.021 Tc (2) Tj ET BT 0.971 0 0 0.971 274.2 416.64 Tm /F2 11 Tf -0.0372 Tc (O\)) Tj ET BT 1.0602 0 0 1.0602 284.52 414.36 Tm /F2 6 Tf -0.021 Tc (5) Tj ET BT 0.971 0 0 0.971 287.76 416.64 Tm /F2 11 Tf -0.0219 Tc (OH) Tj ET BT 1.0602 0 0 1.0602 302.04 420.96 Tm /F2 6 Tf 0.013 Tc (2+) Tj ET BT 0.971 0 0 0.971 432 416.64 Tm /F2 11 Tf 0.015 Tc 0 Tw (1.4 x 10) Tj ET BT 1.0602 0 0 1.0602 465.72 420.96 Tm /F2 6 Tf 0.018 Tc 0 Tw (\2265) Tj ET BT 0.971 0 0 0.971 72 405.36 Tm /F2 11 Tf -0.0043 Tc (Be\(H) Tj ET BT 1.0602 0 0 1.0602 93.12 403.08 Tm /F2 6 Tf -0.021 Tc (2) Tj ET BT 0.971 0 0 0.971 96.36 405.36 Tm /F2 11 Tf -0.0372 Tc (O\)) Tj ET BT 1.0602 0 0 1.0602 106.68 403.08 Tm /F2 6 Tf -0.021 Tc (4) Tj 3.0559 6.2251 TD 0.013 Tc (2+) Tj ET BT 0.971 0 0 0.971 252 405.36 Tm /F2 11 Tf -0.0043 Tc (Be\(H) Tj ET BT 1.0602 0 0 1.0602 273.12 403.08 Tm /F2 6 Tf -0.021 Tc (2) Tj ET BT 0.971 0 0 0.971 276.36 405.36 Tm /F2 11 Tf -0.0372 Tc (O\)) Tj ET BT 1.0602 0 0 1.0602 286.68 403.08 Tm /F2 6 Tf -0.021 Tc (3) Tj ET BT 0.971 0 0 0.971 289.92 405.36 Tm /F2 11 Tf -0.0219 Tc (OH) Tj ET BT 1.0602 0 0 1.0602 304.2 409.68 Tm /F2 6 Tf 0.0471 Tc (+) Tj ET BT 0.971 0 0 0.971 432 405.36 Tm /F2 11 Tf 0.0189 Tc -0.0033 Tw (~1 x 10) Tj ET BT 1.0602 0 0 1.0602 464.4 409.68 Tm /F2 6 Tf 0.018 Tc 0 Tw (\2265) Tj ET BT 0.971 0 0 0.971 72 394.08 Tm /F2 11 Tf 0.0214 Tc (HC) Tj ET BT 1.0602 0 0 1.0602 85.2 391.8 Tm /F2 6 Tf -0.021 Tc (8) Tj ET BT 0.971 0 0 0.971 88.44 394.08 Tm /F2 11 Tf -0.0038 Tc (H) Tj ET BT 1.0602 0 0 1.0602 95.4 391.8 Tm /F2 6 Tf -0.021 Tc (4) Tj ET BT 0.971 0 0 0.971 98.64 394.08 Tm /F2 11 Tf -0.0401 Tc (O) Tj ET BT 1.0602 0 0 1.0602 105.96 391.8 Tm /F2 6 Tf -0.021 Tc (4) Tj 3.0559 6.2251 TD -0.0562 Tc (\226) Tj ET BT 0.971 0 0 0.971 112.44 394.08 Tm /F2 11 Tf -0.0088 Tc 0.0253 Tw ( \(hydrogen phthalate\)) Tj 143.7296 0 TD 0.0466 Tc 0 Tw (C) Tj ET BT 1.0602 0 0 1.0602 258.24 391.8 Tm /F2 6 Tf -0.021 Tc (8) Tj ET BT 0.971 0 0 0.971 261.48 394.08 Tm /F2 11 Tf -0.0038 Tc (H) Tj ET BT 1.0602 0 0 1.0602 268.44 391.8 Tm /F2 6 Tf -0.021 Tc (4) Tj ET BT 0.971 0 0 0.971 271.68 394.08 Tm /F2 11 Tf -0.0401 Tc (O) Tj ET BT 1.0602 0 0 1.0602 279 391.8 Tm /F2 6 Tf -0.021 Tc (4) Tj 3.0559 6.2251 TD -0.0386 Tc (2\226) Tj ET BT 0.971 0 0 0.971 432 394.08 Tm /F2 11 Tf 0.015 Tc 0 Tw (3.1 x 10) Tj ET BT 1.0602 0 0 1.0602 465.72 398.4 Tm /F2 6 Tf 0.018 Tc 0 Tw (\2266) Tj ET BT 0.971 0 0 0.971 72 382.8 Tm /F2 11 Tf -0.004 Tc (Cd\(H) Tj ET BT 1.0602 0 0 1.0602 94.2 380.52 Tm /F2 6 Tf -0.021 Tc (2) Tj ET BT 0.971 0 0 0.971 97.44 382.8 Tm /F2 11 Tf -0.0372 Tc (O\)) Tj ET BT 1.0602 0 0 1.0602 107.76 380.52 Tm /F2 6 Tf -0.021 Tc (6) Tj 3.0559 6.2251 TD 0.013 Tc (2+) Tj ET BT 0.971 0 0 0.971 252 382.8 Tm /F2 11 Tf -0.004 Tc (Cd\(H) Tj ET BT 1.0602 0 0 1.0602 274.2 380.52 Tm /F2 6 Tf -0.021 Tc (2) Tj ET BT 0.971 0 0 0.971 277.44 382.8 Tm /F2 11 Tf -0.0372 Tc (O\)) Tj ET BT 1.0602 0 0 1.0602 287.76 380.52 Tm /F2 6 Tf -0.021 Tc (5) Tj ET BT 0.971 0 0 0.971 291 382.8 Tm /F2 11 Tf -0.0219 Tc (OH) Tj ET BT 1.0602 0 0 1.0602 305.28 387.12 Tm /F2 6 Tf 0.0471 Tc (+) Tj ET BT 0.971 0 0 0.971 432 382.8 Tm /F2 11 Tf 0.0189 Tc -0.0033 Tw (8.32 x 10) Tj ET BT 1.0602 0 0 1.0602 471.24 387.12 Tm /F2 6 Tf 0.018 Tc 0 Tw (\2267) Tj ET BT 0.971 0 0 0.971 72 371.52 Tm /F2 11 Tf 0.0009 Tc (Cu\(H) Tj ET BT 1.0602 0 0 1.0602 94.08 369.24 Tm /F2 6 Tf -0.021 Tc (2) Tj ET BT 0.971 0 0 0.971 97.32 371.52 Tm /F2 11 Tf -0.0372 Tc (O\)) Tj ET BT 1.0602 0 0 1.0602 107.64 369.24 Tm /F2 6 Tf -0.021 Tc (6) Tj 3.0559 6.2251 TD 0.013 Tc (2+) Tj ET BT 0.971 0 0 0.971 252 371.52 Tm /F2 11 Tf 0.0009 Tc (Cu\(H) Tj ET BT 1.0602 0 0 1.0602 274.08 369.24 Tm /F2 6 Tf -0.021 Tc (2) Tj ET BT 0.971 0 0 0.971 277.32 371.52 Tm /F2 11 Tf -0.0372 Tc (O\)) Tj ET BT 1.0602 0 0 1.0602 287.64 369.24 Tm /F2 6 Tf -0.021 Tc (5) Tj ET BT 0.971 0 0 0.971 290.88 371.52 Tm /F2 11 Tf -0.0219 Tc (OH) Tj ET BT 1.0602 0 0 1.0602 305.16 375.84 Tm /F2 6 Tf 0.0471 Tc (+) Tj ET BT 0.971 0 0 0.971 432 371.52 Tm /F2 11 Tf 0.0189 Tc -0.0033 Tw (~5 x 10) Tj ET BT 1.0602 0 0 1.0602 464.4 375.84 Tm /F2 6 Tf 0.018 Tc 0 Tw (\2267) Tj ET BT 0.971 0 0 0.971 72 360.24 Tm /F2 11 Tf -0.0038 Tc (H) Tj ET BT 1.0602 0 0 1.0602 78.96 357.96 Tm /F2 6 Tf -0.021 Tc (2) Tj ET BT 0.971 0 0 0.971 82.2 360.24 Tm /F2 11 Tf 0.0033 Tc (CO) Tj ET BT 1.0602 0 0 1.0602 95.76 357.96 Tm /F2 6 Tf -0.021 Tc (3) Tj ET BT 0.971 0 0 0.971 252 360.24 Tm /F2 11 Tf 0.0009 Tc (HCO) Tj ET BT 1.0602 0 0 1.0602 272.52 357.96 Tm /F2 6 Tf -0.021 Tc (3) Tj 3.0559 6.2251 TD -0.0562 Tc (\226) Tj ET BT 0.971 0 0 0.971 432 360.24 Tm /F2 11 Tf 0.015 Tc 0 Tw (4.3 x 10) Tj ET BT 1.0602 0 0 1.0602 465.72 364.56 Tm /F2 6 Tf 0.018 Tc 0 Tw (\2267) Tj ET BT 0.971 0 0 0.971 72 348.96 Tm /F2 11 Tf -0.0025 Tc (HCrO) Tj ET BT 1.0602 0 0 1.0602 96 346.68 Tm /F2 6 Tf -0.021 Tc (4) Tj 3.0559 6.2251 TD -0.0562 Tc (\226) Tj ET BT 0.971 0 0 0.971 252 348.96 Tm /F2 11 Tf -0.0021 Tc (CrO) Tj ET BT 1.0602 0 0 1.0602 269.04 346.68 Tm /F2 6 Tf -0.021 Tc (4) Tj 3.0559 6.2251 TD -0.0386 Tc (2\226) Tj ET BT 0.971 0 0 0.971 432 348.96 Tm /F2 11 Tf 0.0189 Tc -0.0033 Tw (3.20 x 10) Tj ET BT 1.0602 0 0 1.0602 471.24 353.28 Tm /F2 6 Tf 0.018 Tc 0 Tw (\2267) Tj ET BT 0.971 0 0 0.971 72 337.68 Tm /F2 11 Tf -0.0038 Tc (H) Tj ET BT 1.0602 0 0 1.0602 78.96 335.4 Tm /F2 6 Tf -0.021 Tc (2) Tj ET BT 0.971 0 0 0.971 82.2 337.68 Tm /F2 11 Tf 0.0149 Tc (S) Tj 174.8731 0 TD 0.0056 Tc (HS) Tj ET BT 1.0602 0 0 1.0602 264.24 342 Tm /F2 6 Tf -0.0562 Tc (\226) Tj ET BT 0.971 0 0 0.971 432 337.68 Tm /F2 11 Tf 0.015 Tc 0 Tw (1.2 x 10) Tj ET BT 1.0602 0 0 1.0602 465.72 342 Tm /F2 6 Tf 0.018 Tc 0 Tw (\2267) Tj ET BT 0.971 0 0 0.971 72 326.4 Tm /F2 11 Tf -0.0038 Tc (H) Tj ET BT 1.0602 0 0 1.0602 78.96 324.12 Tm /F2 6 Tf -0.021 Tc (2) Tj ET BT 0.971 0 0 0.971 82.2 326.4 Tm /F2 11 Tf -0.0417 Tc (PO) Tj ET BT 1.0602 0 0 1.0602 95.16 324.12 Tm /F2 6 Tf -0.021 Tc (4) Tj 3.0559 6.2251 TD -0.0562 Tc (\226) Tj ET BT 0.971 0 0 0.971 252 326.4 Tm /F2 11 Tf -0.0291 Tc (HPO) Tj ET BT 1.0602 0 0 1.0602 271.92 324.12 Tm /F2 6 Tf -0.021 Tc (4) Tj 3.0559 6.2251 TD -0.0386 Tc (2\226) Tj ET BT 0.971 0 0 0.971 432 326.4 Tm /F2 11 Tf 0.0189 Tc -0.0033 Tw (6.23 x 10) Tj ET BT 1.0602 0 0 1.0602 471.24 330.72 Tm /F2 6 Tf 0.018 Tc 0 Tw (\2268) Tj ET BT 0.971 0 0 0.971 72 315.12 Tm /F2 11 Tf -0.0096 Tc (HSO) Tj ET BT 1.0602 0 0 1.0602 91.56 312.84 Tm /F2 6 Tf -0.021 Tc (3) Tj 3.0559 6.2251 TD -0.0562 Tc (\226) Tj ET BT 0.971 0 0 0.971 252 315.12 Tm /F2 11 Tf -0.0126 Tc (SO) Tj ET BT 1.0602 0 0 1.0602 264.6 312.84 Tm /F2 6 Tf -0.021 Tc (3) Tj 3.0559 6.2251 TD -0.0386 Tc (2\226) Tj ET BT 0.971 0 0 0.971 432 315.12 Tm /F2 11 Tf 0.015 Tc 0 Tw (6.0 x 10) Tj ET BT 1.0602 0 0 1.0602 465.72 319.44 Tm /F2 6 Tf 0.018 Tc 0 Tw (\2268) Tj ET BT 0.971 0 0 0.971 72 303.84 Tm /F2 11 Tf 0.006 Tc 0.01 Tw (HOCl ) Tj 185.3778 0 TD 0.0093 Tc 0 Tw (OCl) Tj ET BT 1.0602 0 0 1.0602 268.08 308.16 Tm /F2 6 Tf -0.0562 Tc (\226) Tj ET BT 0.971 0 0 0.971 432 303.84 Tm /F2 11 Tf 0.015 Tc 0 Tw (2.8 x 10) Tj ET BT 1.0602 0 0 1.0602 465.72 308.16 Tm /F2 6 Tf 0.018 Tc 0 Tw (\2268) Tj ET BT 0.971 0 0 0.971 72 292.56 Tm /F2 11 Tf -0.0093 Tc (Pb\(H) Tj ET BT 1.0602 0 0 1.0602 93.72 290.28 Tm /F2 6 Tf -0.021 Tc (2) Tj ET BT 0.971 0 0 0.971 96.96 292.56 Tm /F2 11 Tf -0.0372 Tc (O\)) Tj ET BT 1.0602 0 0 1.0602 107.28 290.28 Tm /F2 6 Tf -0.021 Tc (3) Tj 3.0559 6.2251 TD 0.013 Tc (2+) Tj ET BT 0.971 0 0 0.971 252 292.56 Tm /F2 11 Tf -0.0093 Tc (Pb\(H) Tj ET BT 1.0602 0 0 1.0602 273.72 290.28 Tm /F2 6 Tf -0.021 Tc (2) Tj ET BT 0.971 0 0 0.971 276.96 292.56 Tm /F2 11 Tf -0.0372 Tc (O\)) Tj ET BT 1.0602 0 0 1.0602 287.28 290.28 Tm /F2 6 Tf -0.021 Tc (2) Tj ET BT 0.971 0 0 0.971 290.52 292.56 Tm /F2 11 Tf -0.0219 Tc (OH) Tj ET BT 1.0602 0 0 1.0602 304.8 296.88 Tm /F2 6 Tf 0.0471 Tc (+) Tj ET BT 0.971 0 0 0.971 432 292.56 Tm /F2 11 Tf 0.015 Tc 0 Tw (1.3 x 10) Tj ET BT 1.0602 0 0 1.0602 465.72 296.88 Tm /F2 6 Tf 0.018 Tc 0 Tw (\2268) Tj ET BT 0.971 0 0 0.971 72 281.28 Tm /F2 11 Tf -0.0216 Tc (HOBr) Tj 185.3778 0 TD -0.0276 Tc (OBr) Tj ET BT 1.0602 0 0 1.0602 268.56 285.6 Tm /F2 6 Tf -0.0562 Tc (\226) Tj ET BT 0.971 0 0 0.971 432 281.28 Tm /F2 11 Tf 0.0189 Tc -0.0033 Tw (2.06 x 10) Tj ET BT 1.0602 0 0 1.0602 471.24 285.6 Tm /F2 6 Tf 0.018 Tc 0 Tw (\2269) Tj ET BT 0.971 0 0 0.971 72 270 Tm /F2 11 Tf -0.0038 Tc (H) Tj ET BT 1.0602 0 0 1.0602 78.96 267.72 Tm /F2 6 Tf -0.021 Tc (3) Tj ET BT 0.971 0 0 0.971 82.2 270 Tm /F2 11 Tf -0.0349 Tc (BO) Tj ET BT 1.0602 0 0 1.0602 95.28 267.72 Tm /F2 6 Tf -0.021 Tc (3) Tj ET BT 0.971 0 0 0.971 98.52 270 Tm /F2 11 Tf -0.0197 Tc 0.0365 Tw ( or B\(OH\)) Tj ET BT 1.0602 0 0 1.0602 138.48 267.72 Tm /F2 6 Tf -0.021 Tc 0 Tw (3) Tj ET BT 0.971 0 0 0.971 252 270 Tm /F2 11 Tf -0.0284 Tc (B\(OH\)) Tj ET BT 1.0602 0 0 1.0602 278.04 267.72 Tm /F2 6 Tf -0.021 Tc (4) Tj 3.0559 6.2251 TD -0.0562 Tc (\226) Tj ET BT 0.971 0 0 0.971 432 270 Tm /F2 11 Tf 0.015 Tc 0 Tw (5.8 x 10) Tj ET BT 1.0602 0 0 1.0602 465.72 274.32 Tm /F2 6 Tf 0.005 Tc 0 Tw (\22610) Tj ET BT 0.971 0 0 0.971 72 258.72 Tm /F2 11 Tf 0.025 Tc (NH) Tj ET BT 1.0602 0 0 1.0602 86.04 256.44 Tm /F2 6 Tf -0.021 Tc (4) Tj 3.0559 6.2251 TD 0.0471 Tc (+) Tj ET BT 0.971 0 0 0.971 252 258.72 Tm /F2 11 Tf 0.025 Tc (NH) Tj ET BT 1.0602 0 0 1.0602 266.04 256.44 Tm /F2 6 Tf -0.021 Tc (3) Tj ET BT 0.971 0 0 0.971 432 258.72 Tm /F2 11 Tf 0.0189 Tc -0.0033 Tw (5.65 x 10) Tj ET BT 1.0602 0 0 1.0602 471.24 263.04 Tm /F2 6 Tf 0.005 Tc 0 Tw (\22610) Tj ET BT 0.971 0 0 0.971 72 247.44 Tm /F2 11 Tf -0.0286 Tc (Zn\(H) Tj ET BT 1.0602 0 0 1.0602 93.72 245.16 Tm /F2 6 Tf -0.021 Tc (2) Tj ET BT 0.971 0 0 0.971 96.96 247.44 Tm /F2 11 Tf -0.0372 Tc (O\)) Tj ET BT 1.0602 0 0 1.0602 107.28 245.16 Tm /F2 6 Tf -0.021 Tc (4) Tj 3.0559 6.2251 TD 0.013 Tc (2+) Tj ET BT 0.971 0 0 0.971 252 247.44 Tm /F2 11 Tf -0.0286 Tc (Zn\(H) Tj ET BT 1.0602 0 0 1.0602 273.72 245.16 Tm /F2 6 Tf -0.021 Tc (2) Tj ET BT 0.971 0 0 0.971 276.96 247.44 Tm /F2 11 Tf -0.0372 Tc (O\)) Tj ET BT 1.0602 0 0 1.0602 287.28 245.16 Tm /F2 6 Tf -0.021 Tc (3) Tj ET BT 0.971 0 0 0.971 290.52 247.44 Tm /F2 11 Tf -0.0219 Tc (OH) Tj ET BT 1.0602 0 0 1.0602 304.8 251.76 Tm /F2 6 Tf 0.0471 Tc (+) Tj ET BT 0.971 0 0 0.971 432 247.44 Tm /F2 11 Tf 0.015 Tc 0 Tw (2.5 x 10) Tj ET BT 1.0602 0 0 1.0602 465.72 251.76 Tm /F2 6 Tf 0.005 Tc 0 Tw (\22610) Tj ET BT 0.971 0 0 0.971 72 236.16 Tm /F2 11 Tf 0.0093 Tc (Ni\(H) Tj ET BT 1.0602 0 0 1.0602 91.56 233.88 Tm /F2 6 Tf -0.021 Tc (2) Tj ET BT 0.971 0 0 0.971 94.8 236.16 Tm /F2 11 Tf -0.0372 Tc (O\)) Tj ET BT 1.0602 0 0 1.0602 105.12 233.88 Tm /F2 6 Tf -0.021 Tc (6) Tj 3.0559 6.2251 TD 0.013 Tc (2+) Tj ET BT 0.971 0 0 0.971 252 236.16 Tm /F2 11 Tf 0.0093 Tc (Ni\(H) Tj ET BT 1.0602 0 0 1.0602 271.56 233.88 Tm /F2 6 Tf -0.021 Tc (2) Tj ET BT 0.971 0 0 0.971 274.8 236.16 Tm /F2 11 Tf -0.0372 Tc (O\)) Tj ET BT 1.0602 0 0 1.0602 285.12 233.88 Tm /F2 6 Tf -0.021 Tc (5) Tj ET BT 0.971 0 0 0.971 288.36 236.16 Tm /F2 11 Tf -0.0219 Tc (OH) Tj ET BT 1.0602 0 0 1.0602 302.64 240.48 Tm /F2 6 Tf 0.0471 Tc (+) Tj ET BT 0.971 0 0 0.971 432 236.16 Tm /F2 11 Tf 0.0189 Tc -0.0033 Tw (~6 x 10) Tj ET BT 1.0602 0 0 1.0602 464.4 240.48 Tm /F2 6 Tf 0.005 Tc 0 Tw (\22611) Tj ET BT 0.971 0 0 0.971 72 224.88 Tm /F2 11 Tf 0.0009 Tc (HCO) Tj ET BT 1.0602 0 0 1.0602 92.52 222.6 Tm /F2 6 Tf -0.021 Tc (3) Tj 3.0559 6.2251 TD -0.0562 Tc (\226) Tj ET BT 0.971 0 0 0.971 252 224.88 Tm /F2 11 Tf 0.0033 Tc (CO) Tj ET BT 1.0602 0 0 1.0602 265.56 222.6 Tm /F2 6 Tf -0.021 Tc (3) Tj 3.0559 6.2251 TD -0.0386 Tc (2\226) Tj ET BT 0.971 0 0 0.971 432 224.88 Tm /F2 11 Tf 0.0189 Tc -0.0033 Tw (5.61 x 10) Tj ET BT 1.0602 0 0 1.0602 471.24 229.2 Tm /F2 6 Tf 0.005 Tc 0 Tw (\22611) Tj ET BT 0.971 0 0 0.971 72 213.6 Tm /F2 11 Tf 0.0064 Tc (Co\(H) Tj ET BT 1.0602 0 0 1.0602 94.08 211.32 Tm /F2 6 Tf -0.021 Tc (2) Tj ET BT 0.971 0 0 0.971 97.32 213.6 Tm /F2 11 Tf -0.0372 Tc (O\)) Tj ET BT 1.0602 0 0 1.0602 107.64 211.32 Tm /F2 6 Tf -0.021 Tc (6) Tj 3.0559 6.2251 TD 0.013 Tc (2+) Tj ET BT 0.971 0 0 0.971 252 213.6 Tm /F2 11 Tf 0.0064 Tc (Co\(H) Tj ET BT 1.0602 0 0 1.0602 274.08 211.32 Tm /F2 6 Tf -0.021 Tc (2) Tj ET BT 0.971 0 0 0.971 277.32 213.6 Tm /F2 11 Tf -0.0372 Tc (O\)) Tj ET BT 1.0602 0 0 1.0602 287.64 211.32 Tm /F2 6 Tf -0.021 Tc (5) Tj ET BT 0.971 0 0 0.971 290.88 213.6 Tm /F2 11 Tf -0.0219 Tc (OH) Tj ET BT 1.0602 0 0 1.0602 305.16 217.92 Tm /F2 6 Tf 0.0471 Tc (+) Tj ET BT 0.971 0 0 0.971 432 213.6 Tm /F2 11 Tf 0.0189 Tc -0.0033 Tw (~4 x 10) Tj ET BT 1.0602 0 0 1.0602 464.4 217.92 Tm /F2 6 Tf 0.005 Tc 0 Tw (\22611) Tj ET BT 0.971 0 0 0.971 72 202.32 Tm /F2 11 Tf -0.0258 Tc (HOI) Tj 185.3778 0 TD -0.0368 Tc (OI) Tj ET BT 1.0602 0 0 1.0602 261.84 206.64 Tm /F2 6 Tf -0.0562 Tc (\226) Tj ET BT 0.971 0 0 0.971 360 202.32 Tm /F2 11 Tf 0 Tc 0.0162 Tw ( ) Tj 74.1511 0 TD 0.015 Tc 0 Tw (2.3 x 10) Tj ET BT 1.0602 0 0 1.0602 465.72 206.64 Tm /F2 6 Tf 0.005 Tc 0 Tw (\22611) Tj ET BT 0.971 0 0 0.971 72 191.04 Tm /F2 11 Tf -0.0076 Tc (Fe\(H) Tj ET BT 1.0602 0 0 1.0602 92.52 188.76 Tm /F2 6 Tf -0.021 Tc (2) Tj ET BT 0.971 0 0 0.971 95.76 191.04 Tm /F2 11 Tf -0.0372 Tc (O\)) Tj ET BT 1.0602 0 0 1.0602 106.08 188.76 Tm /F2 6 Tf -0.021 Tc (6) Tj 3.0559 6.2251 TD 0.013 Tc (2+) Tj ET BT 0.971 0 0 0.971 252 191.04 Tm /F2 11 Tf -0.0076 Tc (Fe\(H) Tj ET BT 1.0602 0 0 1.0602 272.52 188.76 Tm /F2 6 Tf -0.021 Tc (2) Tj ET BT 0.971 0 0 0.971 275.76 191.04 Tm /F2 11 Tf -0.0372 Tc (O\)) Tj ET BT 1.0602 0 0 1.0602 286.08 188.76 Tm /F2 6 Tf -0.021 Tc (5) Tj ET BT 0.971 0 0 0.971 289.32 191.04 Tm /F2 11 Tf -0.0219 Tc (OH) Tj ET BT 1.0602 0 0 1.0602 303.6 195.36 Tm /F2 6 Tf 0.0471 Tc (+) Tj ET BT 0.971 0 0 0.971 432 191.04 Tm /F2 11 Tf 0.0189 Tc -0.0033 Tw (~1 x 10) Tj ET BT 1.0602 0 0 1.0602 464.4 195.36 Tm /F2 6 Tf 0.005 Tc 0 Tw (\22611) Tj ET BT 0.971 0 0 0.971 72 179.76 Tm /F2 11 Tf -0.0082 Tc (Mn\(H) Tj ET BT 1.0602 0 0 1.0602 96.48 177.48 Tm /F2 6 Tf -0.021 Tc (2) Tj ET BT 0.971 0 0 0.971 99.72 179.76 Tm /F2 11 Tf -0.0372 Tc (O\)) Tj ET BT 1.0602 0 0 1.0602 110.04 177.48 Tm /F2 6 Tf -0.021 Tc (6) Tj 3.0559 6.2251 TD 0.013 Tc (2+) Tj ET BT 0.971 0 0 0.971 252 179.76 Tm /F2 11 Tf -0.0082 Tc (Mn\(H) Tj ET BT 1.0602 0 0 1.0602 276.48 177.48 Tm /F2 6 Tf -0.021 Tc (2) Tj ET BT 0.971 0 0 0.971 279.72 179.76 Tm /F2 11 Tf -0.0372 Tc (O\)) Tj ET BT 1.0602 0 0 1.0602 290.04 177.48 Tm /F2 6 Tf -0.021 Tc (5) Tj ET BT 0.971 0 0 0.971 293.28 179.76 Tm /F2 11 Tf -0.0219 Tc (OH) Tj ET BT 1.0602 0 0 1.0602 307.56 184.08 Tm /F2 6 Tf 0.0471 Tc (+) Tj ET BT 0.971 0 0 0.971 432 179.76 Tm /F2 11 Tf 0.0189 Tc -0.0033 Tw (~6 x 10) Tj ET BT 1.0602 0 0 1.0602 464.4 184.08 Tm /F2 6 Tf 0.005 Tc 0 Tw (\22612) Tj ET BT 0.971 0 0 0.971 72 168.48 Tm /F2 11 Tf 0.0117 Tc (Mg\(H) Tj ET BT 1.0602 0 0 1.0602 96.6 166.2 Tm /F2 6 Tf -0.021 Tc (2) Tj ET BT 0.971 0 0 0.971 99.84 168.48 Tm /F2 11 Tf -0.0372 Tc (O\)) Tj ET BT 1.0602 0 0 1.0602 110.16 166.2 Tm /F2 6 Tf -0.021 Tc (6) Tj 3.0559 6.2251 TD 0.013 Tc (2+) Tj ET BT 0.971 0 0 0.971 252 168.48 Tm /F2 11 Tf 0.0117 Tc (Mg\(H) Tj ET BT 1.0602 0 0 1.0602 276.6 166.2 Tm /F2 6 Tf -0.021 Tc (2) Tj ET BT 0.971 0 0 0.971 279.84 168.48 Tm /F2 11 Tf -0.0372 Tc (O\)) Tj ET BT 1.0602 0 0 1.0602 290.16 166.2 Tm /F2 6 Tf -0.021 Tc (5) Tj ET BT 0.971 0 0 0.971 293.4 168.48 Tm /F2 11 Tf -0.0219 Tc (OH) Tj ET BT 1.0602 0 0 1.0602 307.68 172.8 Tm /F2 6 Tf 0.0471 Tc (+) Tj ET BT 0.971 0 0 0.971 432 168.48 Tm /F2 11 Tf 0.0189 Tc -0.0033 Tw (~4 x 10) Tj ET BT 1.0602 0 0 1.0602 464.4 172.8 Tm /F2 6 Tf 0.005 Tc 0 Tw (\22612) Tj ET BT 0.971 0 0 0.971 72 157.2 Tm /F2 11 Tf -0.0165 Tc (Ag\(H) Tj ET BT 1.0602 0 0 1.0602 94.44 154.92 Tm /F2 6 Tf -0.021 Tc (2) Tj ET BT 0.971 0 0 0.971 97.68 157.2 Tm /F2 11 Tf -0.0372 Tc (O\)) Tj ET BT 1.0602 0 0 1.0602 108 154.92 Tm /F2 6 Tf -0.021 Tc (2) Tj 3.0559 6.2251 TD 0.0471 Tc (+) Tj ET BT 0.971 0 0 0.971 252 157.2 Tm /F2 11 Tf -0.0165 Tc (Ag\(H) Tj ET BT 1.0602 0 0 1.0602 274.44 154.92 Tm /F2 6 Tf -0.021 Tc (2) Tj ET BT 0.971 0 0 0.971 277.68 157.2 Tm /F2 11 Tf -0.0305 Tc (O\)OH\() Tj 28.4246 0 TD /F3 11 Tf -0.0246 Tc (s) Tj 4.0783 0 TD /F2 11 Tf -0.0343 Tc (\)) Tj 126.4277 0 TD 0.0189 Tc -0.0033 Tw (~7 x 10) Tj ET BT 1.0602 0 0 1.0602 464.4 161.52 Tm /F2 6 Tf 0.005 Tc 0 Tw (\22613) Tj ET BT 0.971 0 0 0.971 72 145.92 Tm /F2 11 Tf -0.0291 Tc (HPO) Tj ET BT 1.0602 0 0 1.0602 91.92 143.64 Tm /F2 6 Tf -0.021 Tc (4) Tj 3.0559 6.2251 TD -0.0386 Tc (2\226) Tj ET BT 0.971 0 0 0.971 252 145.92 Tm /F2 11 Tf -0.0417 Tc (PO) Tj ET BT 1.0602 0 0 1.0602 264.96 143.64 Tm /F2 6 Tf -0.021 Tc (4) Tj 3.0559 6.2251 TD -0.0386 Tc (3\226) Tj ET BT 0.971 0 0 0.971 432 145.92 Tm /F2 11 Tf 0.015 Tc 0 Tw (4.5 x 10) Tj ET BT 1.0602 0 0 1.0602 465.72 150.24 Tm /F2 6 Tf 0.005 Tc 0 Tw (\22613) Tj ET BT 0.971 0 0 0.971 475.44 145.92 Tm /F2 11 Tf 0 Tc 0.0162 Tw ( ) Tj -415.4935 -11.617 TD -0.0187 Tc 0 Tw (Al\(H) Tj ET BT 1.0602 0 0 1.0602 90.96 132.36 Tm /F2 6 Tf -0.021 Tc (2) Tj ET BT 0.971 0 0 0.971 94.2 134.64 Tm /F2 11 Tf -0.0372 Tc (O\)) Tj ET BT 1.0602 0 0 1.0602 104.52 132.36 Tm /F2 6 Tf -0.021 Tc (3) Tj ET BT 0.971 0 0 0.971 107.76 134.64 Tm /F2 11 Tf -0.0281 Tc (\(OH\)) Tj ET BT 1.0602 0 0 1.0602 128.04 132.36 Tm /F2 6 Tf -0.021 Tc (3) Tj ET BT 0.971 0 0 0.971 131.28 134.64 Tm /F2 11 Tf -0.0343 Tc (\() Tj 3.0896 0 TD /F3 11 Tf -0.0246 Tc (s) Tj 4.0783 0 TD /F2 11 Tf -0.0343 Tc (\)) Tj 117.1588 0 TD -0.0187 Tc (Al\(H) Tj ET BT 1.0602 0 0 1.0602 270.96 132.36 Tm /F2 6 Tf -0.021 Tc (2) Tj ET BT 0.971 0 0 0.971 274.2 134.64 Tm /F2 11 Tf -0.0372 Tc (O\)) Tj ET BT 1.0602 0 0 1.0602 284.52 132.36 Tm /F2 6 Tf -0.021 Tc (2) Tj ET BT 0.971 0 0 0.971 287.76 134.64 Tm /F2 11 Tf -0.0281 Tc (\(OH\)) Tj ET BT 1.0602 0 0 1.0602 308.04 132.36 Tm /F2 6 Tf -0.021 Tc (4) Tj 3.0559 6.2251 TD -0.0562 Tc (\226) Tj ET BT 0.971 0 0 0.971 432 134.64 Tm /F2 11 Tf 0.0189 Tc -0.0033 Tw (~4 x 10) Tj ET BT 1.0602 0 0 1.0602 464.4 138.96 Tm /F2 6 Tf 0.005 Tc 0 Tw (\22613) Tj ET BT 0.971 0 0 0.971 72 123.36 Tm /F2 11 Tf 0.0052 Tc (Ca\(H) Tj ET BT 1.0602 0 0 1.0602 93.36 121.08 Tm /F2 6 Tf -0.021 Tc (2) Tj ET BT 0.971 0 0 0.971 96.6 123.36 Tm /F2 11 Tf -0.0372 Tc (O\)) Tj ET BT 1.0602 0 0 1.0602 106.92 121.08 Tm /F2 6 Tf -0.021 Tc (6) Tj 3.0559 6.2251 TD 0.013 Tc (2+) Tj ET BT 0.971 0 0 0.971 252 123.36 Tm /F2 11 Tf 0.0052 Tc (Ca\(H) Tj ET BT 1.0602 0 0 1.0602 273.36 121.08 Tm /F2 6 Tf -0.021 Tc (2) Tj ET BT 0.971 0 0 0.971 276.6 123.36 Tm /F2 11 Tf -0.0372 Tc (O\)) Tj ET BT 1.0602 0 0 1.0602 286.92 121.08 Tm /F2 6 Tf -0.021 Tc (5) Tj ET BT 0.971 0 0 0.971 290.16 123.36 Tm /F2 11 Tf -0.0219 Tc (OH) Tj ET BT 1.0602 0 0 1.0602 304.44 127.68 Tm /F2 6 Tf 0.0471 Tc (+) Tj ET BT 0.971 0 0 0.971 432 123.36 Tm /F2 11 Tf 0.015 Tc 0 Tw (3.2 x 10) Tj ET BT 1.0602 0 0 1.0602 465.72 127.68 Tm /F2 6 Tf 0.005 Tc 0 Tw (\22613) Tj ET BT 0.971 0 0 0.971 72 112.08 Tm /F2 11 Tf -0.0286 Tc (Zn\(H) Tj ET BT 1.0602 0 0 1.0602 93.72 109.8 Tm /F2 6 Tf -0.021 Tc (2) Tj ET BT 0.971 0 0 0.971 96.96 112.08 Tm /F2 11 Tf -0.0372 Tc (O\)) Tj ET BT 1.0602 0 0 1.0602 107.28 109.8 Tm /F2 6 Tf -0.021 Tc (4) Tj ET BT 0.971 0 0 0.971 110.52 112.08 Tm /F2 11 Tf -0.0281 Tc (\(OH\)) Tj ET BT 1.0602 0 0 1.0602 130.8 109.8 Tm /F2 6 Tf -0.021 Tc (2) Tj ET BT 0.971 0 0 0.971 134.04 112.08 Tm /F2 11 Tf -0.0343 Tc (\() Tj 3.0896 0 TD /F3 11 Tf -0.0246 Tc (s) Tj 4.0783 0 TD /F2 11 Tf -0.0343 Tc (\)) Tj 114.3163 0 TD -0.0286 Tc (Zn\(H) Tj ET BT 1.0602 0 0 1.0602 273.72 109.8 Tm /F2 6 Tf -0.021 Tc (2) Tj ET BT 0.971 0 0 0.971 276.96 112.08 Tm /F2 11 Tf -0.0372 Tc (O\)) Tj ET BT 1.0602 0 0 1.0602 287.28 109.8 Tm /F2 6 Tf -0.021 Tc (3) Tj ET BT 0.971 0 0 0.971 290.52 112.08 Tm /F2 11 Tf -0.0281 Tc (\(OH\)) Tj ET BT 1.0602 0 0 1.0602 310.8 109.8 Tm /F2 6 Tf -0.021 Tc (3) Tj 3.0559 6.2251 TD -0.0562 Tc (\226) Tj ET BT 0.971 0 0 0.971 396 112.08 Tm /F2 11 Tf 0 Tc 0.0162 Tw ( ) Tj 37.0756 0 TD -0.0284 Tc 0.0455 Tw ( \(?\)) Tj -370.7556 -11.617 TD -0.0038 Tc 0 Tw (H) Tj ET BT 1.0602 0 0 1.0602 78.96 98.52 Tm /F2 6 Tf -0.021 Tc (2) Tj ET BT 0.971 0 0 0.971 82.2 100.8 Tm /F2 11 Tf -0.0401 Tc (O) Tj 174.8731 0 TD -0.0219 Tc (OH) Tj ET BT 1.0602 0 0 1.0602 266.28 105.12 Tm /F2 6 Tf -0.0562 Tc (\226) Tj ET BT 0.971 0 0 0.971 432 100.8 Tm /F2 11 Tf 0.008 Tc 0.008 Tw (\(1.0 x 10) Tj ET BT 1.0602 0 0 1.0602 468.72 105.12 Tm /F2 6 Tf 0.005 Tc 0 Tw (\22614) Tj ET BT 0.971 0 0 0.971 478.44 100.8 Tm /F2 11 Tf -0.0343 Tc (\)) Tj -418.5831 -11.617 TD 0.0056 Tc (HS) Tj ET BT 1.0602 0 0 1.0602 84.24 93.84 Tm /F2 6 Tf -0.0562 Tc (\226) Tj ET BT 0.971 0 0 0.971 252 89.52 Tm /F2 11 Tf 0.0149 Tc (S) Tj ET BT 1.0602 0 0 1.0602 257.28 93.84 Tm /F2 6 Tf -0.0386 Tc (2\226) Tj ET BT 0.971 0 0 0.971 432 89.52 Tm /F2 11 Tf 0.0189 Tc -0.0033 Tw (~1 x 10) Tj ET BT 1.0602 0 0 1.0602 464.4 93.84 Tm /F2 6 Tf 0.005 Tc 0 Tw (\22619) Tj ET endstream
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