Jahzeel Morales Jessa Arellano September 19‚ 2014 Period 4 Lab #1: Density Determinations for Solutions Theory: The density of a sample of matter is very useful when trying to find the identity of an unknown substance. The units of density are quoted in (g/mL) for liquid samples of matter. For that reason if the volume is known of a liquid‚ determining its density is easily determined by weighing it accurately. Density can also be used as a tool for finding the concentration of solutions
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Determination of a Rate Law Megan Gilleland 10.11.2012 Dr. Charles J. Horn Abstract: This two part experiment is designed to determine the rate law of the following reaction‚ 2I-(aq) + H2O2(aq) + 2H+I2(aq) + 2H2O(L)‚ and to then determine if a change in temperature has an effect on that rate of this reaction. It was found that the reaction rate=k[I-]^1[H2O2+]^1‚ and the experimental activation energy is 60.62 KJ/mol. Introduction The rate of a chemical reaction often
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Experiment 4A: Determination of a Partition Coefficient for Benzoic Acid in Methylene Chloride and Water Experiment 4B: Solvent Extraction I: Acid-Base Extraction Using the System Benzoic Acid‚ Methylene Chloride‚ and Sodium Bicarbonate Solution Objective A: To accustom participants (students) to general procedures that are used to obtain a partition coefficient at the microscale level. We will gain experience in such practices as the transfer of microliter volumes of solutions with a Pasteur filter
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General Chemistry II Determining of the equilibrium constant for the formation of FeSCN2+ Introduction The objective of this experiment was to determine the equilibrium concentration and then determine Kc. A dilution calculation was formed to determine the concentration of SCN- and Fe(SCN)2+. Each cuvette was filled to the same volume and can be seen in table 1. Then the absorbances were recorded from each cuvette and can be seen in table 1. A Beer’s law plot was made from the data that was recorded
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Lab 1: Heart Rate Lab (Revised Fall 2010) Lab 1. Heart Rate‚ Physical Fitness‚ and the Scientific Method Prelab Assignment Before coming to lab read carefully the following pages on the scientific method and then answer the prelab questions at the end of this lab handout. Be prepared to discuss and/or hand in your responses to the prelab questions at the start of lab. Introduction Biology is a dynamic field of study whose aim is to unravel the mysteries of life itself. Throughout history‚ humans
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characterized by quantitatively defining its equilibrium constant‚ Keq. In this experiment the Keq for the reaction between iron (lll) ions and thiocyanate ions‚ SCN- is determined. Fe3+(aq) + SCN- (aq) FeSCN2+ (aq) The equilibrium constant Keq‚ is defined by the equation; Keq= [ FeSCN2+] / [Fe3+] [SCN-] It is necessary to determine the molar concentration of each of the three species in solution at equilibrium to fine the value of Keq‚ which depends only upon temperature. In order to have a successful
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Material Appendix F Week Three Lab Report: Earthquakes Answer the lab questions for this week and summarize the lab experience using this form. |Full Name | | |Date | | Carefully read pages 156-170 of Geoscience Laboratory. Complete this week’s lab by filling in your responses to the questions from Geoscience Laboratory. Select answers are provided for you in red
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Laboratory #2 Lab #2: Perform a Vulnerability Assessment Scan Using Nessus® (Nessus® is a Registered Trademark of Tenable Network Security‚ Inc.) Learning Objectives and Outcomes Upon completing this lab‚ students will be able to complete the following tasks: * Identify risks‚ threats‚ and vulnerabilities in an IP network infrastructure using ZenMap GUI (Nmap) to perform an IP host‚ port‚ and services scan * Perform a vulnerability assessment scan on a targeted IP subnetwork using
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Percent Water in a Hydrate PURPOSE To determine the percent water in a hydrate sample. INTRODUCTION Many substances contain water molecules as a part of their crystal structure. We call such solids hydrates‚ and we call the bound water the water of hydration. A hydrate has a definite number of water molecules bound to each anhydrous salt unit. The formula of the hydrate copper(II) sulfate pentahydrate is CuSO4 · 5 H2O The dot indicates that the molecules of water are attached to the ions in
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Lab 1: Low Nail Company |Scenario/Summary | After making some wise short-term investments at a race track‚ Chris Low had some additional cash to invest in a business. The most promising opportunity at the time was in building supplies‚ so Low bought a business that specialized in sales of one size of nail. The annual volume of nails was 2‚000 kegs‚ and they were sold
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