Overview |
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1 | (2) |
System Requirements |
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3 | (2) |
Getting Started |
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5 | (2) |
Important Installation Notes and Issues |
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7 | (2) |
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9 | (166) |
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Thomson Cathode Ray Tube Experiment |
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11 | (2) |
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Millikan Oil Drop Experiment |
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13 | (4) |
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Rutherford's Backscattering Experiment |
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17 | (4) |
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Investigating the Properties of Alpha and Beta Particles |
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21 | (2) |
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23 | (4) |
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27 | (2) |
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29 | (2) |
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31 | (2) |
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Heisenberg Uncertainty Principle |
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33 | (4) |
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Emission Spectra for Sodium and Mercury |
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37 | (2) |
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Reactions and Stoichiometry |
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Names and Formulas of Ionic Compounds |
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39 | (2) |
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Writing Balanced Precipitation Reactions |
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41 | (2) |
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Strong and Weak Electrolytes |
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43 | (2) |
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45 | (2) |
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47 | (2) |
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49 | (2) |
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51 | (2) |
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53 | (2) |
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55 | (2) |
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Counting Protons, Neutrons, and Electrons |
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57 | (2) |
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Counting Protons, Neutrons, and Electrons |
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59 | (2) |
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Creating a Solution of Known Molality |
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61 | (2) |
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Creating a Solution of Known Molarity |
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63 | (2) |
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Converting Concentrations to Different Units |
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65 | (2) |
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Endothermic vs. Exothermic |
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67 | (2) |
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Enthalpy of Solution: NH4NO3 |
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69 | (2) |
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71 | (2) |
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73 | (2) |
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Heat of Combustion: Chicken Fat |
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75 | (2) |
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Heat of Combustion: Sugar |
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77 | (2) |
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79 | (2) |
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Heat of Formation: Ethanol |
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81 | (2) |
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Heat of Formation: Aspirin |
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83 | (2) |
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Heat of Reaction: NaOH(aq) + HCl(aq) |
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85 | (2) |
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Heat of Reaction: MgO(s) + HCl(aq) |
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87 | (2) |
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89 | (4) |
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The Balance Between Enthalpy and Entropy |
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93 | (2) |
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95 | (2) |
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Heat of Vaporization of Water |
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97 | (2) |
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The Boiling Point of Water at High Altitude |
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99 | (2) |
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101 | (2) |
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Freezing Point Depression |
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103 | (2) |
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Molar Mass Determination by Boiling Point Elevation |
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105 | (2) |
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Molar Mass Determination by Freezing Point Depression |
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107 | (2) |
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Changes in the Boiling Point |
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109 | (2) |
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Boyle's Law: Pressure and Volume |
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111 | (2) |
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Charles' Law: Temperature and Volume |
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113 | (2) |
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Avogadro's Law: Moles and Volume |
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115 | (2) |
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Derivation of the Ideal Gas Law |
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117 | (2) |
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Dalton's Law of Partial Pressures |
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119 | (2) |
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121 | (2) |
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The Effect of Mass on Pressure |
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123 | (2) |
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Acid-Base Classification of Salts |
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125 | (2) |
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Ranking Salt Solutions by pH |
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127 | (2) |
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Concepts in Acid-Base Titrations |
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129 | (2) |
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Predicting the Equivalence Point |
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131 | (2) |
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Predicting the Equivalence Point |
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133 | (2) |
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Predicting the Equivalence Point |
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135 | (2) |
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Ionization Constants of Weak Acids |
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137 | (2) |
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Acid-Base Titration: Practice |
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139 | (2) |
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Acid-Base Titration: Unknown HCl |
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141 | (2) |
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Study of Acid-Base Titrations -- Monoprotic Acids |
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143 | (2) |
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Weak Acid-Strong Base Titrations |
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145 | (2) |
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Strong Acid-Weak Base Titrations |
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147 | (2) |
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Weak Acid-Weak Base Titrations |
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149 | (2) |
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Study of Acid-Base Titrations -- Polyprotic Acids |
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151 | (2) |
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Acid-Base Standardization |
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153 | (2) |
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155 | (2) |
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Study of Oxidation-Reduction Titrations |
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157 | (2) |
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Standardization of a Permanganate Solution |
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159 | (2) |
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Analysis of a Ferrous Chloride Sample |
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161 | (2) |
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163 | (2) |
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Identification of Cations in Solution -- Flame Tests |
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165 | (2) |
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Identification of Cations in Solution -- Ag, Hg, Pb2+ |
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167 | (2) |
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Identification of Cations in Solution -- Co2+, Cr3+, Cu2+ |
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169 | (2) |
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Identification of Cations in Solution -- Ba2+, Sr2+, Ca2+, Mg2+ |
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171 | (2) |
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Identification of Cations in Solution -- Co2+, Cu2+, Ni2+ |
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173 | (2) |
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175 | (50) |
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177 | (2) |
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179 | (2) |
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181 | (2) |
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183 | (2) |
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185 | (2) |
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187 | (2) |
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Boyle's Law: 1/Volume versus Pressure -1 |
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189 | (2) |
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Boyle's Law: 1/Volume versus Pressure -2 |
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191 | (2) |
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193 | (4) |
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197 | (2) |
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199 | (4) |
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Atomic Theory and Quantum Mechanics |
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203 | (4) |
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Rutherford Backscattering |
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207 | (4) |
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211 | (2) |
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213 | (2) |
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215 | (2) |
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217 | (2) |
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219 | (2) |
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221 | (2) |
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223 | (2) |
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225 | |