Classes at: - Topic: Redox & Volumetric Titration

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

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)

Chemistry 212. Experiment 3 ANALYSIS OF A SOLID MIXTURE LEARNING OBJECTIVES. - learn to analyze a solid unknown with volumetric techniques.

Copyright 2016 Dan Dill 1

CHAPTER4 ANSWERS. Multiple Choice Questions. Short Answer Questions. 1. (b) 2. (d) 3. (a) 4. (c) 5. (c) 6. (b) 7. (a) 8. (b)

0620 CHEMISTRY. 0620/23 Paper 2 (Core Theory), maximum raw mark 80

PRECIPITATON TITRATION

Titration of Synthesized Aspirin A continuation of the aspirin synthesis lab

Common Salt Ions. Salinity. Soil permeability reflects sodicity problems from sodium concentrations 1/15/2008

EXPT. 10 DETERMINATION OF ZINC BY PRECIPITATION WITH POTASSIUM FERROCYANIDE USING INTERNAL INDICATOR

Chemical Equations Part 1

Understanding Your Soil Report. Michael Cook 2018

Copyright 2018 Dan Dill 1

Understanding your results Acidity... 3 Aluminium... 3 Base saturation... 3 Boron... 4 Bulk density... 4 Calcium... 4 Cations...

Soil Composition. Air

Standardization of a Base, Mass Percent of an Acid

How would you prepare 455 grams of an aqueous solution that is 6.50% sodium sulfate by mass?

A & L GREAT LAKES LABORATORIES, INC.

People who have a zinc deficiency can take hydrated zinc sulfate (ZnSO 4.xH 2O) as a dietary supplement.

Experiment 6: STANDARDIZATION OF A BASE; MASS PERCENT OF AN ACID

TNPSC Chemistry Study Material Fertilizers

Instruction Manual Updated 8/27/2013 Ver. 1.1

Module 8: Practice Problems

Nutrient level (EC) in a pot is like a bank

Soil Fertility and Nutrient Management. Hailin Zhang. Department of Plant and Soil Sciences

Supplying Nutrients to Crops

Hardness (Total & Calcium) Test Kit TK4040-Z 1 drop = 2 or 10 ppm as CaCO 3

Experiment: Iodometric Titration Analysis of Ascorbic Acid Chem251 modified 09/2018

FACT SHEET. Understanding Cation Exchange Capacity and % Base Saturation

CHAPTER 3: MATERIALS AND METHODS

Expressing the Amount of Solute by Weight:

Module 8: Electrolyte Solutions

Selected Water Quality Topics Related to Larval Shrimp Culture

Unit 1, Section C.1. In which you will learn about: Solutions Electrolytes Saturation Solubility curves

Compost Analysis. Sustainable Soil Management with the Mikhail Balance System

Experiment 10 Acid-base Titrations: Part A Analysis of vinegar and Part B Analysis of a Carbonate/Bicarbonate mixture

Complexometric Titration of Calcium in Antacids SUSB-017 Prepared by M. J. Akhtar and R. C. Kerber, SUNY at Stony Brook (Rev 1/13, RFS)

Agronomy 365 Exam I Spring 2002

Interpretation of Soil Tests for Environmental Considerations

Experiment 7, Analysis of KHP by titration with NaOH Wright College, Department of Physical Science and Engineering

Reading and Analyzing your Fertilizer Bag. Dr. Cari Peters Vice President

Importance of Water Quality: ph, buffering, and effects on nutrient availability

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

Page 2. PhysicsAndMathsTutor.com

Interpreting Soils Report. Beyond N P K

Understanding a Soil Report

Example: Ammonium Sulphate (also called Sulphate of Ammonia) is composed of the following:

Manufacturer of High Purity Chemicals PRODUCT LIST

EUROPEAN QUALIFYING EXAMINATION 2006

EXPERIMENT 13 QUALITATIVE ANALYSIS

QUANTITATIVE TEST (CHEMICAL) FOR SUGARS IN SUGARCANE. Talha Saeed. Faisal Iftikhar. Mam AMMARA AINEE

It is recommended to use titanium coils. ph meter to control ph of the process. It is advised to use an automatic dosage for the maintenance products.

IODOMETRIC TITRATION

AN EXPERIMENTAL STUDY TO DETERMINE THE IMPACT OF

Ksp Of Calcium Hydroxide Lab Report

CH 3 CH 2 CH 2 CH 2 OH

Mineral Nutrition of Fruit & Nut Trees. Fruit & Nut Tree Nutrition 3/1/2013. Johnson - Nutrition 1

Fertilization Programming

Class 10 Science - Sample Paper Set I

--> Buy True-PDF --> Auto-delivered in 0~10 minutes. GB Translated English of Chinese Standard: GB1886.

Plant Nutrients in Mineral Soils

Welcome. Greg Patterson C.C.A. President A&L Canada Laboratories

Compost Analysis. Sustainable Soil Management with the Mikhail Balance System

Strength of Vinegar by Acid-Base Titration

FERTIGATION 24 FERTIGATION WITH DRIPPERS

Testing Protocol. Iodine Estimation of Salt

Chemical Pharmaceutical Quality Control. Prof.Dr.Joumaa Al- Zehouri Damascus university Faculty of Pharmacy

Zeolite Clinoptilolite Powder

Identification and qualitative Analysis. of Renal Calculi

Hydroponics TEST KIT MODEL AM-41 CODE 5406

Nutrients & Diagnosing Nutrient Needs. Carrie Laboski Dept. of Soil Science UW-Madison

There are two groups of minerals: Major salt components: K, Na, Ca, Mg, Cl -, sulfate, phosphate, and HCO

COMPUTATION & PREPARATION OF NUTRIENT SOLUTIONS. Principles, properties & preparation of nutrient solutions

Acid and Base Balance

Monitoring & Maintaining the ph and EC of the Root Environment. Bill Fonteno Horticultural Substrates Laboratory NC State University

Chinese Zinc Sulfate Monohydrate testing. Dick Camp Kronos Micronutrients

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

Change to read: BRIEFING

Project: TopCal for sodium management during leaching at Mission Viejo Country Club

Principles of Volumetric Analysis

Carbohydrates. Objectives. Background. Experiment 6

C 6 H 12 O 6 + 6O 2 6CO 2 + 6H 2 O

Zinc T mg/l Zn Zincon

Understanding ph management and plant nutrition Part 3: Fertilizers

Mineral Nutrition. Criteria for Essentiality

EXPERIMENT 4 DETERMINATION OF REDUCING SUGARS, TOTAL REDUCING SUGARS, SUCROSE AND STARCH

Chemistry Iodometric Determination of Vitamin C

Official Journal of the European Union REGULATIONS

0620 CHEMISTRY. Mark schemes should be read in conjunction with the question paper and the Principal Examiner Report for Teachers.

Homework Chapter 08 Chemistry 51 Los Angeles Mission College

Fertilizers. Chapter INTRODUCTION

TREE ESSENTIAL ELEMENT. ZINC (Zn)

Titrimetric Determination of Hypo Index, Thiosulfate, and Sulfite in EASTMAN Color Films, Process ECN-2 Fixer

KIDNEY STONE ANALYSIS

Osmoregulation and Osmotic Balance

LIST OF ABBREVIATIONS USED

What is the Acid Source? Where is Acid Rain Falling? Chemistry of Acid Rain Formation. What Determines Lake Susceptibility to Acidification?

Activity Sheet 1 Testing for Vitamin C- Part One

05. Conversion Factors tutorial.doc. Introduction

SOIL TEST INTERPRETATION JIM FASCHING Technical Field Representative

Transcription:

PHYSICAL CHEMISTRY by: SHAILENDRA KR. Classes at: - SCIENCE TUTRIALS; pp. Khuda Baksh Library, Ashok Rajpath, Patna PIN PINT STUDY CIRCLE; House No. 5A/65, pp. Mahual Kothi, Alpana Market, Patna Topic: Redox & Volumetric Titration Meq. Approach (1) How many mol of Fe +2 ions are formed, when exess of iron treated with 50 ml of 4.0 M HCl under inert atmosphere? (Assume no change in volume) (a) 0.4 (b) 0.1 (c) 0.2 (d) 0.8 (2) The molality of 15% (wt/volume) solution of of density 1.1 gm/cm 3 approximately (a) 1.2 (b) 1.4 (c) 1.8 (d) 1.6 (3) 100 ml of 0.3 N HCl solution were mixed with 200 ml of 0.6 N solution. The final acidic normality : (a) 0.9 N (b) 0.6 N (c) 0.5 N (d) 0.4 N (4) 0.7 gm of C. x were dsolved in water and volume was made to 100 ml, 20 ml of th solution required 19.8 ml of N/10 HCl for complete neutralization. The value of x (a) 7 (b) 3 (c) 2 (d) 5 (5) The eq.wt of S 4 6 in the reaction + I 2 NaI + S 4 6 (a) (c) 2 3 (b) (d) 1 8 (6) How many gram of KMn 4 are contained in 4.0 liter of 0.05 N solution. The KMn 4 to be used as an oxidant in acid medium. (a) 1.58 gm (b) 15.8 gm (c) 6.32 gm (d) 31.6 gm (7) How many liter of Cl 2 at STP will be liberated by the oxidation of NaCl with10 gm KMn 4 : (a) 3.54 liter (b) 7.08 liter (c) 1.77 liter (d) None of these (8) What volume of 0.40 M would be required to react with the I 2 liberated by adding exess of KI to 50 ml of 0.20 M Cu solution : (a) 12.5 ml (b) 25 ml (c) 50 ml (d) 2.5 ml (9) In the reaction, V + F 2 Fe + V 2 5. The eq.wt of V 2 5 equal to its : (a) Mol.wt (c) 6 (b) 8 (d) None (10) 0.2 gm of a sample of required 10 ml of 1 N KMn 4 in a titration in the presence of. Purity of (a) 25 % (b) 85 % (c) 65 % (d) 95 % (11) The amount of dihydrated oxallic acid required to prepare 500 ml of its 0.01 N Page No.: 1

solution (a) 0.315 gm (b) 6.3 gm (c) 63 gm (d) 3.15 gm (12) 10 ml of a solution of labelled '10 volume' just decolore 100 ml of potassium permagnate solution acidified with dilute. Calculate the amount of potassium permagnate in the given solution : (a) 0.1563 gm (b) 0.563 gm (c) 5.63 gm (d) 0.256 gm (13) Equal volume of 1 M each of KMn 4 and K 2 are used to oxides Fe(II) solution in acidic medium. The amount of Fe oxided will be (a) More with KMn 4 (b) Equal with both oxiding agent (c) More with K 2 (d) Can't be determined (14) In an experiment, 50 ml of 0.1 M solution of a salt reacted with 25 ml of 0.1 M solution of sodium sulphite. The half equation for the oxidation of sulphite ion -2-2 S (aq) + + 2H + + 2e - If the oxidation number of metal in the salt was 3, what would be the new oxidation number of the metal? (a) 0 (b) 1 (c) 2 (d) 4 (15) 100 ml of 0.1 N KMn 4 reacts with 0.45 gm of oxalic. The mot.wt of oxalic acid (a) 45 (b) 90 (c) 180 (d) 22.5 (16) Polythene can be produced from calcium carbide according to the following sequence of reaction :- CaC 2 + Ca + CH CH n(ch CH) + n (-C -C- )n The mass of polythene which can be produced from 20 kg of CaC 2 (c) 8.75 kg (d) 9.75 kg (17) A solution contains C and NaHC. 10 ml of th solution required 2.5 ml of 0.1M for neutralation using phenolphthalein as indicator. Methyl arange then added when a further 2.5 ml of 0.2M was required. The amount of C and NaHC in 1.0 liter of the solution ( of NaHC =84, of C =106) (a) 5.3 gm and 4.2 gm (b) 3.3 gm and 6.2 gm (c) 4.2 gm and 5.3 gm (d) 6.2 gm and 3.3 gm (18) The number of mol of oxalate ions oxidized - by one mol of Mn 4 ions (a) 1/5 (b) 2/5 (c) 5/2 (d) 5 (19) What volume of 0.1 M KMn 4 needed to oxided 100 mg of FeC 2 4 in acid solution : ( Mol.wt of FeC 2 4 =144) (a) 4.1 ml (b) 8.2 ml (c) 10.2 ml (d) 4.6 ml (20) When one mol of KMn 4 reacts with HCl, the volume of Cl 2 liberated at NTP will be : (a) 11.2 liter (b) 22.4 liter (c) 44.8 liter (d) 56.0 liter (21) An element A in a compound ABD has oxidation number A -n.it oxided by 2 in acid medium. In the expriment 1.68 x 10-3 mol of K 2 were used for 3.26 x 10-3 mol of ABD. The new oxidation number of A after oxidation (a) 3 (b) 3-n (c) n-3 (d) +n (22) Number of K + ions and number of mol of K + ions present in 1 liter of N/5 KMn 4 solution respectively in acidic medium are: (a) 0.04 and 2.4 x 10 22 (b) 2.4 x 10 22 and 0.04 (c) 200 and 6.023 x 10 23 (a) 6.75 kg (b) 7.75 kg (d) 6.023 x 10 23 and 200 Page No.: 2

(23) The eq.wt of Fe 3 4 in, Fe 3 4 + KMn 4 Fe 2 + Mn (a) M/6 (b) M (c) 2 M (d) M/3 (24) Eq.wt of NH 3 in, NH 3 + N + (a) 3.4 (b) 17 (c) 8.5 (d) None (25) How many gram of KMn 4 are contained in 4 liter of 0.05 N solution. The KMn 4 to be used as an oxidant in acid medium. (a) 1.58 gm (b) 15.8 gm (c) 31.6 gm (d) 6.32 gm (26) - When Br ion reacts with Br - ion in acid solution Br 2 liberated. The eq.wt of KBr in th solution ( M molar mass) (a) M/8 (b) M/3 (c) M/5 (d) M/6 (27) 8 gm of sulphur are burnt to form S which oxided by Cl 2 water. The solution treated with BaCl 2 solution. The amount of Ba precipitated (a) 1.0 mol (b) 0.5 mol (c) 0.24 mol (d) 0.25 mol (28) The number of equivalent per mol of S used in its oxidation to S (a) 3 (b) 6 (c) 4 (d) 2 (29) 100 ml of 1 M CH 3 CH mixed with100 ml 1 M-NaH. The resulting solution (a) Acidic (b) Slightly Basic (c) Neutral (d) Basic (30) When exess of Zn reacts with 10 ml of, 224 ml liberated at S.T.P. The strength of (a) 10 N (b) 1 N (c) 2 N (d) 4 N (31) 1 gm marble when reacted with 1 N HCl acid required 19 ml for complete reaction leaving behind some sandy materials. The percentage purity of CaC in the marble : (a) 0.95 (b) 95 (c) 5 (d) 19 (32) 5.3 gm of pure and anhydrous sodium carbonate treated with 100 ml of N/10 HCl. After the reaction over (a) Exess of HCl left (b) Unreacted sodium carbonate left (c) Neither of HCl nor of sodium carbonate left (d) None of these (33) Which of the following should be done in order to prepare 0.40 M NaCl starting with 100 ml of 0.30 M NaCl (Mol.Wt. of NaCl =58.5) (a) Add 5.85 gm NaCl (b) Add 20.0 ml water (c) Add 0.01 mol NaCl (d) Evaborate 10 ml water (34) The volume of N/5 HCl solution required to neutrale 2 gm of CaC (a) 100 ml (b) 200 ml (c) 50 ml (d) 90 ml (35) ne molar K 2 solution in acid medium equivalent to (a) 1 N K 2 (b) 2 N K 2 (c) 6 N K 2 (d) 4 N K 2 (36) In the following reaction : 2Cu + 4 KI 2 CuI + I 2 + 2 K 2 the amount of liberated I 2 completely reacted with 100 ml of M/10 solution of. The no of milliequivalent of Cu present in solution (a) 10 (b) 5 (c) 15 (d) 20 (37) 100 ml of a dibasic acid solution contains 3.15 gm of the acid. 10ml of th solution neutrales 10 ml of 0.5 N NaH solution. The molecular weight of acid (a) 63 (b) 126 (c) 31.5 (d) 40 Page No.: 3

(38) Which two of the following solution contain opproximately equal Hydrogen ion concentration. (i) 50 ml of 0.1 M HCl + 25 ml (ii) 50 ml of 0.10 M HCl + 50 ml (iii) 50 ml of 0.10 M + 25 ml (iv) 25 ml of 0.1 M + 50 ml (a) (i) and (ii) (b) (i) and (iii) (c) (i) and (iv) (d) (ii) and (iii) (39) If 40.0 ml of 1.6 M HCl and 60 ml of 2 M NaH are mixed. Concentration of Na +, Cl and H in the resulting solution in the term of molarity... (a) 1.2 M, 0.640 M, 0.560 M respectively (b) 0.640 M, 0.560 M, 1.2 M respectively (c) 0.640 M, 0.640 M, 1.2 M respectively (d) 0.560 M, 0.640 M, 1.2 M respectively (40) No of molar of gas present in 1m 3 gas at NTP (a) 4.46 (b) 44.6 (c) 22.4 (d) 2.24 (41) Commercial "11.2 volume" volume solution has a molarity of (a) 1 (b) 0.5 (c) 11.2 (d) 1.12 (42) 10 ml of solution (volume strength=x) required 10 ml of N/0.56 Mn 4 solution in acidic medium. Hence x (a) 0.56 (b) 5.6 (c) 0.1 (d) 10 (43) 2 (l) 2 (l) + 100 ml of x molar gives 3.0 L of gas under the condition when 1 mol occupies 24.0 L ; value of x (a) 2.5 (b) 1.0 (c) 0.5 (d) 0.25 (44) How many ions are present in 2.0 L of a solution that 0.8 M K 4 Fe(CN) 6? (a) 4.8 10 22 (b) 4.8 10 24 (c) 9.6 10 24 (d) 9.6 10 22 (45) 20 ml of x M HCl neutralizes completely 10 ml of 0.1 M NaHC solution and a further 5 ml of 0.2 M NaC solution to methylorange end point. The value of x (a) 0.167 M (b) 0.133 M (c) 0.15 M (d) 0.2 M (46) Eq.wt of Mn 4 in acidic, basic and neutral medium are in the ratio of (a) 3 : 5 : 15 (b) 5 : 3 : 1 (c) 5 : 1 : 3 (d) 5 : 15 : 5 (47) 4I - + Hg +2 2- HgI 4, 1 mol each of Hg +2 and I - -2 will form HgI 4 (a) 1 mol (b) 0.5 mol (c) 0.25 mol (d) 2 mol (48) Molarity of 18 M. Its density 1.8 gm/ml. Hence molality (a) 36 (b) 200 (c) 500 (d) 18 (49) 10 L of hard water require 0.56 gm of lime (Ca) for removing hardness. Hence temporary hardness in PPM (Parts Per Million(10 6 )) of CaC (a) 100 (b) 200 (c) 10 (d) 20 (50) Which of the following will contain same no of atom as in 20 gm of calcium. (a) 24 gm Magnesium (b) 12 gm Carbon (c) 8 gm xygen gas (d) 16 gm xygen gas Page No.: 4

A N S W E R S 01. b 02. d 03. c 04. c 05. a 06. c 07. a 08. b 09. c 10. b 11. d 12. b 13. c 14. b 15. b 16. c 17. a 18. c 19. a 20. d 21. b 22. b 23. b 24. a 25. d 26. c 27. d 28. b 29. b 30. c 31. b 32. b 33. c 34. b 35. c 36. b 37. b 38. c 39. a 40. b 41. a 42. d 43. a 44. b 45. c 46. d 47. c 48. c 49. b 50. d Page No.: 5