Example Company Balance Sheet December 31‚ 2011 ASSETS LIABILITIES Current Assets Current Liabilities Cash $ 2‚100 Notes Payable $ 5‚000 Petty Cash 100 Accounts Payable 35‚900 Temporary Investments 10‚000 Wages Payable 8‚500 Accounts Receivable - net 40‚500 Interest Payable 2‚900 Inventory 31‚000 Taxes Payable 6‚100 Supplies 3‚800 Warranty Liability 1‚100 Prepaid Insurance 1‚500 Unearned Revenues 1‚500 Total Current
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physioex 9.0 Review Sheet Exercise 4 Endocrine System Physiology Name: Kelly E. Fischer Lab Time/Date: 7:00 PM/Wednesday Activity 1 Metabolism and Thyroid Hormone Part 1 1 Which rat had the fastest basal metabolic rate (BMR)? The normal rat had the faster basal metabolic rate‚ because it was not missing its pituitary gland or its thyroid gland. 2 Why did the metabolic rates differ between the normal rat and the surgically altered rats? How well did the results compare with your prediction
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equity on January1‚ 2012 called the balance sheet. The report the reader will see below is a current balance sheet for a company called Custom Building that I personally work with. Working one on one with the owner has offered quite a bit of experience in the accounting world. The reader will be able to view the balance sheet below‚ following the explanation of the balance sheet for Custom Building discussed in full. Custom Building Company Balance Sheet January 1‚ 2012 Non-current Assets
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Exercise 10: Acid-Base Balance: Activity 2: Rebreathing Lab Report Pre-lab Quiz Results You scored 100% by answering 4 out of 4 questions correctly. 1. In cases of acidosis‚ the pH of the blood is You correctly answered: c. less than 7.35. 2. Carbon dioxide and water form You correctly answered: a. carbonic acid (a weak acid). 3. Which of the following is true of respiratory acidosis? You correctly answered: c. The amount of carbon dioxide in the blood is greater than normal. 4. Rebreathing You correctly
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Rent Expense | 6‚200 | Electricity Bill – paid on May 30‚ 2011 | 8‚500 | Land | 15‚000 | Depreciation Expense | 31‚750 | | | Required Prepare a fully classified vertical format Balance Sheet for Nguyen Bich Fitness Club as at June 30‚ 2011 EXERCISE 2. The following are account balances of Brickwork as | | | | at 31 December 2010: | | | | | | | | | | | | | | Account | Amount ($) | | | | | | Plant & machinery | 25‚000 | | | | | |
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Merck Consolidated Balance Sheet | | | | | | € million | ------------------------------------------------- Note | ------------------------------------------------- Dec. 31‚ 2012 | ------------------------------------------------- Dec. 31‚ 2011 | ------------------------------------------------- Jan. 1‚ 2011 | 1 | Previous year’s figures have been adjusted‚ see Note [5] | | Current assets | ------------------------------------------------- | -------------------------------------------------
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CHEMICAL REACTIONS: ACID-BASE BUFFERS Short Overview Acids and bases represent two of the most common classes of compounds. Many studies have been done on these compounds‚ and their reactions are very important. Perhaps the most important reaction is the one in which an acid and base are combined‚ resulting in the formation of water (in aqueous solution) and a salt; this reaction is called neutralization. A buffer solution is a solution that contains both an acid and a salt containing
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Anna Powell 2nd I.Title: Acid-Base Titrations AP Chemistry Laboratory #6 II.Purpose: The purpose of this experiment is to standardize a sodium hydroxide solution and use the standard solution to titrate an unknown solid acid. The equivalent mass of the solid acid will be determined from the volume of sodium hydroxide added at the equivalence point. The equilibrium constant‚ Ks‚ of the solid acid will be calculated from the titration curve obtained by plotting the pH of the solution versus
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STANDARDIATION OF ACID AND BASE Eunice Ivy B. Gamboa ABSTRACT Solutions of known concentration are prepared by dissolving measured masses of standard acids in distilled water. The concentrations of unknown solutions of sodium hydroxide are determined by titration. An acid solution reacts with a base solution in a "neutralization" reaction. Titrations permit the concentrations of unknown acids/bases to be determined with a high degree of accuracy. In order to analyze unknown acids/bases‚ we must have
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Aqueous Acid/Base Chemistry Resources: Harris ‘Quantitative Chemical Analysis’ Review: Pure water has a pH = 7 Autodissociation: H2O (( H3O+ + OH- K = [H3O+][OH-]/[H2O] -log[H3O+] = 7 [H3O+] = 10-7 M = [OH-] [H2O] = 55.56 M K = 1.8 x 10-16 ; pKa = 15.74 pKa is the acid dissociation constant; low pKa (strong acid‚ high pKa (weak acid we can also write Kw = [H3O+][OH-] Kw = 10-14 In water‚ pH + pOH = 14 pH scale Strong
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