( ) ( ) + ( ) ( ) ( ) + ( )

Similar documents
Chapter 17 Acids and Bases (same as Exam 2 Worksheet Answers)

Module 1: Overview of soil fertility, plant nutrition, and nutrient management. To view the chapter for this topic click here.

3a. The acid and base react to form a salt solution of ammonium propionate. CaCO s + 2 HC H O aq CO g + H O l + Ca ( aq ) + 2 C H O ( aq)

Chemical Equations Part 1

Matrix Reference Materials - SCP SCIENCE

Accredited Proficiency Testing Provider

of human hair and nails. Part I. Analytical methodology, Sci. Tot. Environ. 2000, 250/1-3,

Thin Film PV Technologies CIGS PV Technology

EFFECTIVE DURATION OF A COPPER OXIDE BOLUS ADMINISTERED ORALLY TO BONTEBOK {DAMALISCUS PYGARGUS DORCAS)

Nature Protocols: doi: /nprot Supplementary Figure 1

GSJ Geochemical Reference Samples. Igneous Rock. Sedimentary Rock. For Instrumental analysis. Reference value for environmental analysis -1

Metabolism: Oxidative Phosphorylation

PRECIPITATON TITRATION

A New Sacrificial Corrosion Protection Mechanism for High Performance Zinc/Aluminum Flake Coating Systems and Applications

Skorpion Zinc: Mine-to-metal zinc production via solvent extraction

PACT premier TM HT-96 MD1-36 PACT premier is a ph, Anion, Cation crystallization trial devised to test ph within a PEG/Ion screen.

Print version. Lecture #31 Coordination Chemistry: Case Studies: EDTA, detergents. (Stumm & Morgan, Chapt.6: pg ) Benjamin; Chapter

SPECIAL ASPECTS OF ASSESSING THE ELEMENTAL COMPOSITION OF PHYTOPLANKTON AND SESTON USING NEUTRON ACTIVATION ANALYSIS

WAGENINGEN EVALUATING PROGRAMS FOR ANALYTICAL LABORATORIES. Certificate of Analysis. International Plant-Analytical Exchange REFERENCE MATERIAL

Multi Analyte Custom Grade Solution

WAGENINGEN EVALUATING PROGRAMS FOR ANALYTICAL LABORATORIES. Certificate of Analysis. International Soil-Analytical Exchange REFERENCE MATERIAL

Experiment 25 Qualitative Analysis II

AGRY 515: What do you know? In 10 minutes, fill out what you can. Educated guesses are strongly encouraged.

Chinese Zinc Sulfate Monohydrate testing. Dick Camp Kronos Micronutrients

Elemental Scientific. seafast S2. Elution Profiles. Elemental Scientific

Product Stewardship Information Sheet CH350LN

Metals in Redox Biology C O R Y B O O N E, C E C I L I A H A G E R T, Q I A N G MA R E D O X - C O U R S E

SCOPE OF ACCREDITATION TO ISO/IEC 17043:2010

,

Product Stewardship Information Sheet CH200LN-02

CERTIFICATE OF ANALYSIS. tel: fax:

Materials Declaration Form

Accelerated Aluminum Electrolytic Capacitor Life Testing: How to Pick the Most Reliable E-Cap in a Few Weeks Stephani Gulbrandsen

Pharmaceutical Analytical Chemistry PHCM223 Lecture 12 Applications on different types of equilibria. Dr. Nesrine El Gohary 12 th lecture

Enclosed are the tissue analysis results for the samples from the greens at Golf Club.

Biosolids Test Description Method Number Test Code Acid Hydrolyzable Phosphate SM P E-99 AHPHOS Acidity as CaCO3 SM-2310 B (4a)-97 ACID

In the last lesson we examined specific factors that affect ecosystems.

Mike Hinds, Royal Canadian Mint

Classes at: - Topic: Redox & Volumetric Titration

Challenges with Chelated &/or Complexed Minerals (Chelated and Soluble Methods of Analysis Used in FL)

Materials Declaration Form

A & L GREAT LAKES LABORATORIES, INC.

Homework Chapter 08 Chemistry 51 Los Angeles Mission College

Characterisation of a Cu selective resin for use in the production of Cu isotopes

CHE Study Guide - Ch Carboxylic Acid + Alcohol

Correlation between the Annealing Effect and the Electrical Characteristics of the Depletion Region in ZnO, SnO 2 and ZTO Films

Fertilizer Compatibility. Raun Lohry Terry Robinson Doyle Meeker

Soil Conditions Favoring Micronutrient Deficiencies and Responses in 2001

Accumulation of Heavy Metals in Soil and Tree Leaves in Heavy Traffic Affected Area of Agra city

Engineering of Ministry of Education, Institute of Molecular Science, Shanxi University, Taiyuan , China.

TREE ESSENTIAL ELEMENT. ZINC (Zn)

If, then. Homework: Finish entire guided notes packet. Name: Pod: Date: Which variable does a scientist manipulate or control in an experiment?

REVISION: PHOTOSYNTHESIS & CELLULAR RESPIRATION 18 JUNE 2014

Package leaflet: Information for the user. Fragmin Graduated Syringe 10,000 IU/ml Solution for Injection dalteparin sodium

METHOD 8032 ACRYLAMIDE BY GAS CHROMATOGRAPHY

Actual Excipient Test Data on Metal Impurities Submitted to IPEC-Americas from Industry

Micro-review. Element reducing oxidizing Fe Fe 2+ (high) Fe 3+ (low) Cu Cu sulfides Cu 2+ (moderate) S HS - (high) SO4 2- (high) Mo

Raymond C. Ward Ward Laboratories, Inc Kearney, NE

Bottom Ash Data Week 30

FOLLOW-UP IN-DEPTH INTERVIEW GUIDELINES

Bottom Ash Data Week 38

Title: Overview of Micronutrients and Focus on Fe and Mn Speaker: Bill Pan. online.wsu.edu

Bottom Ash Data Week 37

Bottom Ash Data Week 17

Bottom Ash Data Week 9

Micronutrient Management. Dorivar Ruiz Diaz Soil Fertility and Nutrient Management

Landolt-Börnstein: Numerical Data and Functional Relationships in Science and Technology - New Series 12A. Ac-ag...Au-Zr. Bearbeitet von B Predel

Edward V. Krizhanovsky, Ph.D., Kamila B. Tursunova

Establishing PT/EQA Schemes in Developing Countries

** *** Cu, Cr, Cd, Fe, Mn, Ni, Zn & Pb. (Cr, Cu, Fe, Mn, Pb & Zn) Tishreen University Journal. Bas ** ***

Micronutrient Compatibility with Pesticides and NPK Fertilizers. Brian Haschemeyer Director of Discovery and Innovation

by Oguguah, N. M. and Olakolu, F. C. Marine Biology section, Fisheries Resources Department, Nigerian Institute for Oceanography and Marine Research

CERTIFICATE TB SAMPLE PREPARATION ANALYTICAL PROCEDURES. Signature: Colin Ramshaw, Vancouver Laboratory Manager

Leaching Behavior of Coal Combustion Products and the Environmental Implication in Road Construction. Project Progress Report. Jianmin Wang NUTC R201

Factors Affecting Photosynthesis!

Supplying Nutrients to Crops

SICHERHEITSDATENBLATT

Incorporating bioavailability into regulatory practice

Test Report No.T TC Date: JUN 29, 2018 Page 1 of 5

Test Report No.T JP Date: FEB 24, 2017 Page 1 of 6

TRACE ELEMENTS IN SERUM

Materials Declaration Form

Test Report No.T JP Date: FEB 22, 2017 Page 1 of 6

Mac-life-Plus. A Natural and Unique approach to support and boost your Immune System

We are committed to becoming a watershed to Agriculture and restoring it to its rightful place in the economy. This is substantiated through our

USER SPECIFICATIONS FOR QUINTOLUBRIC 888 Series DESCRIPTION OF THE MOST IMPORTANT PROPERTIES AND THE POSSIBLE VARIATIONS AND TOLERANCES

How to Develop a Balanced Program for Pecan and Chili. Robert R Smith

Sugar Rush: The Science of Sweet

Soil Composition. Air

Research Article. Heavy metals in soil and vegetables in anadrinia region as a result of the use of pesticides, herbicides and fertilizers

Agency Address Verification Monitoring Report - BENO

Fertilization Programming

Chapter 21: Carboxylic Acid Derivatives: Nucleophilic Acyl Substitution Reactions

Cranberry Nutrition: An A Z Guide. Joan R. Davenport Soil Scientist Washington State University

Environmental Quality Testing Laboratory 4200 Connecticut Avenue, NW, Washington, DC

ELEMENTS WITH MORE TOXIC EFFECTS

GeoPT28 AN INTERNATIONAL PROFICIENCY TEST FOR ANALYTICAL GEOCHEMISTRY LABORATORIES REPORT ON ROUND 28 (Shale, SBC-1) / January 2011

Transcription:

xam 4 Wrksheet Answers xam 4 Wrksheet Answers Chemistry 104 Chapter 19 lectrchemistry (19.1 19.3 repeated frm xam 3 wrksheet) 1. What is the xidatin state f each element? 0 0 d. 0 e. f. g. 0. What is the xidatin state f each element? Li: O: H: Fe: 3 O: S: 6 Al: 3 O: N: 5 d. C: 4 O: e. C: O: f. I: 7 Cl: g. Cd: O: P: 5 h. Mn: 4 O: 3. Balance the x reactins, identifying fr each which species is gaining r lsing electrns, and which is xidatin and which is uctin. Fe ( aq) e Fe( s) gaining electrns / uctin Ag ( s) Ag ( aq) e lsing electrns / xidatin Net inic: Fe ( aq) Ag ( s) Fe( s) Ag ( aq) Overall: Fe NO aq Ag s Fe s AgNO aq 3 3 Cl aq Cl g e lsing electrns / xidatin Zn aq e Zn s gaining electrns / uctin Net inic: Cl aq Zn aq Zn s Cl g Overall: NaCl aq Zn NO aq Zn s Cl g NaCl aq 3 3 3 Au aq 3e Au s gaining electrns / uctins Cu s Cu aq e lsing electrns / xidatin Net inic: Au aq 3Cu s 3Cu aq Au s Overall: Au NO aq 3Cu s 3Cu NO aq Au s 3 3 3 1

xam 4 Wrksheet Answers d. F g e F aq gaining electrns / uctin H O aq O g 4e 4H aq lsing electrns / xidatin Net inic: F g H O aq 4HF aq O g Overall: F g H O aq 4HF aq O g 4. Balance the x reactins in acidic slutin, identifying each half reactin as xidatin r uctin. SO aq 4H aq e SO g H O l uctin 4 Fe s Fe aq e xidatin H SO aq Fe s SO g H O l FeSO aq 4 4 d. e. f. () 3 7 H O l O g 4H aq 4e uctin Cr O aq 14H aq 6e Cr aq 7H O l xidatin 3 7 Net inic: Cr O aq 16H aq 3O g 4Cr aq 8H O l Overall: H Cr O aq 1HNO aq 3O g 4Cr NO aq 8H O l 7 3 3 3 4 4 4 4 PbO s SO aq 4H aq e PbSO s H O l uctin Pb s SO aq e PbSO s xidatin PbO s Pb s SO aq 4H aq PbSO s H O l 4 4 4 4 SO g H O l SO aq 4H aq e xidatin I s e I aq uctin Net inic: SO g H O l I s I aq SO aq 4H aq Overall: SO g H O l I s HI aq H SO aq 4 3 Br aq Br l e xidatin NO aq 4H aq 3e NO g H O l uctin 3 Net inic: 6Br aq NO aq 8H aq 3Br l NO g 4H O l Overall: 6HBr aq HNO aq 3Br l NO g 4H O l 3 MnO s 4H aq e Mn aq H O l uctin Cl aq Cl g e xidatin MnO s 4H aq Cl aq Mn aq Cl g H O l Overall : MnO s 4HCl aq MnCl aq Cl g H O l

xam 4 Wrksheet Answers g. h. MnO s 4H aq e Mn aq H O l uctin Br aq Br l e xidatin MnO s 4H aq Br aq Mn aq Br l H O l Overall : MnO s 4HBr aq MnBr aq Br l H O l 3 3 Cu s Cu aq e xidatin NO aq 4H aq 3e NO g H O l uctin NO g 4H O l 3Cu aq 3Cu s NO aq 8H aq Overall: NO g 4H O l 3Cu NO aq 3Cu s 8HNO aq 3 3 5. Balance the x reactins in basic slutin, identifying each half reactin as xidatin r uctin. H g OH aq H O l e xidatin e Cu aq Cu s uctin H g Cu aq OH aq H O l Cu s Ni s Ni aq e xidatin O g H O l 4e 4OH aq uctin O g H O l Ni s Ni OH s 4 () () MnO s 4OH aq MnO aq H O l 3e xidatin Br l e Br l uctin MnO s 8OH aq 6Br l MnO aq 4H O l 3Br l 4 6. Fr the reactins yu balanced in number three answer: Fe aq e Fe s = 0.44 V cathde reactin; cathde = Fe s Ag ( s) Ag ( aq) e x = 0.80 V ande reactin; ande = Ag ( s) cell = 1.4 V Nt spntaneus (reverse reactin is spntaneus, s electrns wuld spntaneusly flw frm irn t silver) Ag(s) Ag (aq) (1 M) ǁ Fe (aq) (1 M) Fe(s) x = = = = Cl aq Cl g e 1.36 V ande reactin; ande Pt s Zn aq e Zn s 0.76 V cathde reactin; cathde Zn s cell =.1 V 3

xam 4 Wrksheet Answers Nt spntaneus (reverse reactin is spntaneus, s electrns wuld spntaneusly flw frm zinc t platinum) Zn (aq) (1 M) Zn(s) ǁ Cl (aq) (1 M) Cl (g) Pt(s) d. 3 = = = = Au aq 3e Au s 1.50 V cathde reactin; cathde Au s Cu s Cu aq e 0.34 V ande reactin; ande Cu s x cell = 1.16 V electrns flw frm cpper t gld (ande t cathde) Spntaneus Au 3 (aq) (1 M) Au(s) ǁ Cu(s) Cu (aq) (1 M) = = = = F g e F aq.87 V cathde reactin; cathde Pt s H O aq O g 4e 4H aq 1.3 V ande reactin; ande Pt s x cell = 1.64 V electrns flw frm ande t cathde Spntaneus Pt(s) F (g) F (aq) (1 M) ǁ H O(l) O (g) Pt(s) 7. Fr the reactins yu balanced in number fur answer: SO4 ( aq) 4H ( aq) e SO( g) HO( l ) = 0.0 V cathde reactin; cathde = Pt s Fe s Fe aq e x = 0.44 V ande reactin; ande = Fe s cell = 0.4 V Nt spntaneus (reverse reactin is spntaneus, s electrns wuld spntaneusly flw frm platinum t irn) () H O l O g 4H aq 4e x 3 7 = 1.3 V ande reactin; ande = Pt s Cr O aq 14H aq 6e Cr aq 7H O l = 1.33 V cathde reactin; cathde = Pt s cell = 0.10 V electrns flw frm ande t cathde Spntaneus PbO s SO aq 4H aq e PbSO s H O l 4 4 Pb s SO aq e PbSO s 4 4 x = 1.70 V cathde reactin; cathde = PbO s = 0.31 V ande reactin; ande = Pb s cell =.01 V electrns flw frm lead t lead(iv) xide (ande t cathde) Spntaneus 4

xam 4 Wrksheet Answers d. e. f. g. h. SO g H O l SO aq 4H aq e 4 x I s e I aq cell = 0.33 V Spntaneus Br aq Br l e = 0.0 V ande reactin; ande = Pt s = 0.53 V cathde reactin; cathde = Pt s electrns flw frm ande t cathde x 3 = 1.07 V ande reactin; ande = Pt s NO aq 4H aq 3e NO g H O l = 0.96 V cathde reactin; cathde = Pt s cell = 0.11 V Nt spntaneus (reverse reactin is spntaneus, s electrns wuld spntaneusly flw frm platinum (Br uctin) t platinum (NO xidatin)) MnO s 4H aq e Mn aq H O l 1.3 V cathde reactin; cathde MnO s = = Cl aq Cl g e x = 1.36 V ande reactin; ande = Pt s cell = 0.13 V Nt spntaneus (reverse reactin is spntaneus, s electrns wuld spntaneusly flw frm MnO t platinum) MnO s 4H aq e Mn aq H O l 1.3 V cathde reactin; cathde MnO s = = Br aq Br l e cell = 0.16 V Spntaneus Cu s Cu aq e x = 1.07 V ande reactin; ande = Pt s electrns flw frm platinum t MnO (ande t cathde) x 3 NO aq 4H aq 3e NO g H O l cell = 0.6 V cathde) = 0.34 V ande reactin; ande = Cu s = 0.96 V cathde reactin; cathde = Pt s electrns flw frm cpper t platinum (ande t Spntaneus 5

xam 4 Wrksheet Answers 8. Fr the reactins yu balanced in number five answer: H g OH aq H O l e x e Cu aq Cu s = 0.83 V ande reactin; ande = Pt s = 0.34 V cathde reactin; cathde = Cu s cell = 1.17 V electrns flw frm platinum t cpper (ande t cathde) Spntaneus Ni s Ni aq e x O g H O l 4e 4OH aq = 0.5 V ande reactin; ande = Ni s = 0.40 V cathde reactin; cathde = Pt s cell = 0.65 V electrns flw frm nickel t platinum (ande t cathde) Spntaneus MnO s 4OH aq MnO aq H O l 3e 4 () () Br l e Br l x = 0.59 V ande reactin; ande = MnO s = 1.07 V cathde reactin; cathde = Pt s cell = 0.48 V electrns flw frm MnO t platinum (ande t cathde) Spntaneus 9. What is the standard change in free energy and the equilibrium cnstant at 5 C fr the reactins yu balanced in number 3? ΔG (kj) K A 39 1.1 10 4 B 409 1.9 10 7 C 67 D 633 10. What is the standard change in free energy and the equilibrium cnstant at 5 C fr the reactins yu balanced in number 4? ΔG (kj) K A 46.3 7.7 10 9 B 116. 10 0 6

xam 4 Wrksheet Answers ΔG (kj) K C 388 1.0 10 68 D 63.7 1.5 10 11 63.7 6.8 10 1 F 5.1.5 10 4 G 30.9.6 10 5 H 359 8.5 10 6 11. What is the standard change in free energy and the equilibrium cnstant at 5 C fr the reactins yu balanced in number 5? ΔG (kj) K A 6 4.1 10 39 B 51 1.0 10 44 C 78 5.4 10 48 1. What is the cell ptential at 5 C f the cells described belw? Are these spntaneus? Reactin (V) Spntaneus A Pb(s) Pb (0.0015 M) ǁ Ni (0.875 M) Ni(s) 0.04 N B Pb(s) Pb (0.875 M) ǁ Ni (0.0015 M) Ni(s) 0.0 N C Ni(s) Ni (0.875 M) ǁ Pb (0.0015 M) Pb(s) 0.04 Yes D Ni(s) Ni (0.0015 M) ǁ Pb (0.875 M) Pb(s) 0.0 Yes Pb(s) Pb (0.0015 M) ǁ Cr 3 (0.875 M) Cr(s) 0.53 N F Cr(s) Cr 3 (0.750 M) ǁ Ag (0.005 M) Ag(s) 1.39 Yes G Ag(s) Ag (0.750 M) ǁ Au 3 (0.005 M) Au(s) 0.63 Yes H Pt(s) I (0.05 M) I (s) ǁ Ag (0.750 M) Ag(s) 0.36 Yes I Pt(s) I (0.005 M) I (s) ǁ Ag (0.750 M) Ag(s) 0.30 Yes J Pt(s) Br (0.005 M) Br (l) ǁ Ag (0.750 M) Ag(s) 0.43 N 13. What is the cell ptential at 5 C f the cells described belw? Are these spntaneus? Reactin (V) Spntaneus A Zn(s) Zn (0.0050 M) ǁ Zn (0.75 M) Zn(s) 0.06 Yes B Ni(s) Ni (0.75 M) ǁ Ni (0.0050 M) Ni(s) 0.06 N C Pt(s) Br (0.0050 M) Br (l) ǁ Br (l) Br (1.5 M) Pt(s) 0.07 N 14. What is the cell ptential at 5 C f a cncentratin cell using a standard hydrgen electrde with ne platinum electrde in a ph 7.00 slutin and the ther in ph.00? What is the cell diagram? 0.30 V Pt(s) H (1 atm) H (10 7 M) ǁ H (10 M) H (1 atm) Pt(s) 7

xam 4 Wrksheet Answers 15. What cncentratin f ptassium permanganate is need t generate 1.8 V at 5 C when a manganese dixide electrde is placed in this cncentratin f ptassium permanganate and reacting with a manganese electrde in 0.0050 M manganese(ii) chlride? What mass (in mg) f ptassium permanganate is needed t make 10 ml f slutin? 0.1 M 190 mg 16. What mass (in g) f the metals can be depsited using 455 ma f current fr 38 minutes? Cpper frm cpper(ii) sulfate 0.34 g Zinc frm zinc chlride 0.35 g Chrmium frm chrmium(iii) nitrate 0.19 g d. Silver frm silver nitrate 1. g 17. What current (in A) is needed when applied fr 5 min fr each slutin t depsit 0.15 g f the metal? Cpper frm cpper(ii) sulfate 0.5 A Zinc frm zinc chlride 0.5 A Chrmium frm chrmium(iii) nitrate 0.46 A d. Silver frm silver nitrate 0.075 A 18. Hw lng wuld 1.5 A need t be applied t depsit 0.185 g f the metal? Cpper frm cpper(ii) sulfate 7.49 min Zinc frm zinc chlride 7.8 min Chrmium frm chrmium(iii) nitrate 13.7 min d. Silver frm silver nitrate.1 min 8