/Font << 0 g 1 g >> endobj /Meta168 182 0 R stream [(0)-16(.27)] TJ stream /Type /XObject >> >> /Matrix [1 0 0 1 0 0] Q 258 0 obj << /Length 571 /Meta226 240 0 R ET /FormType 1 Q 45.287 0 0 45.783 194.978 245.416 cm 45.663 0 0 45.783 90.337 112.169 cm 1.047 -0.003 l endstream q /Meta63 77 0 R /Subtype /Form [( \(aq\))] TJ ET /Matrix [1 0 0 1 0 0] Q 0.267 -0.003 l Q /F3 25 0 R /Subtype /Form q Q /Font << /F1 0.217 Tf 1 g /Matrix [1 0 0 1 0 0] q >> 0000018340 00000 n /FormType 1 0 g Introduction to gravimetric analysis: Volatilization gravimetry. /F1 0.217 Tf /Meta15 Do q 0 0.279 m 181 0 obj << /BBox [0 0 0.263 0.279] 0 g /Font << /Resources << 236 0 obj << 0 g BT 0000000121 00000 n endstream /BBox [0 0 0.263 0.279] Q 0 g /Meta24 Do 0.066 0.083 TD W* n 0 g stream /Subtype /Form 0.458 0 0 RG /Meta132 Do /Subtype /Form Q Q 0000015049 00000 n ET [(D\))] TJ /Font << 0 0.279 m ET /Meta94 Do /FormType 1 [(1.0 g)] TJ Q /Resources << [( 3)] TJ /Meta132 146 0 R >> /Length 122 0000020394 00000 n 0000050997 00000 n >> /FormType 1 /Type /XObject Q >> 45.287 0 0 45.783 194.978 365.866 cm 0000036821 00000 n Q /Subtype /Form [( 2)16(S)] TJ BT endstream 0.031 0.083 TD /Subtype /Type0 Q 0 G >> 0.015 w endobj stream The One Being Oxidized C. The Limiting Reactant D. Additional Information Is Necessary /BBox [0 0 9.507 1.562] q -0.001 Tw >> q 45.663 0 0 45.783 359.091 245.416 cm /Length 122 >> endobj /Resources << /FormType 1 /Resources << >> /BBox [0 0 9.507 1.562] q q stream 0000003319 00000 n >> stream /Meta135 149 0 R /Matrix [1 0 0 1 0 0] /FormType 1 /F1 6 0 R >> /F1 0.217 Tf >> /Length 751 /Matrix [1 0 0 1 0 0] >> q endstream >> 0.7 mol of N 2. 0 g stream /Font << 45.289 0 0 45.287 81.303 263.484 cm [( tha)21(t can be )28(p)-15(ro)16(du)17(ced )20(by the r)25(eaction )21(of 1.0 g of S)] TJ Q stream Q /F1 6 0 R W* n 0.458 0 0 RG 0 g ET 0 g endstream Q Q endstream 0 0.279 m /Subtype /Form 0 w endobj /Encoding /Identity-H Q /Meta202 216 0 R /Meta61 75 0 R >> 0 -0.003 l 45.289 0 0 45.274 81.303 383.934 cm 0.531 0.279 l >> q BT /FormType 1 /Matrix [1 0 0 1 0 0] 0 g 0000048691 00000 n 45.324 0 0 45.783 54.202 654.946 cm BT /Meta48 Do /Meta150 164 0 R 2.358 1.032 TD 188 0 obj << endstream endstream /Subtype /Form 0 0.279 m >> /BBox [0 0 1.047 0.279] /Meta123 137 0 R endobj stream stream /BBox [0 0 9.507 2.074] /Length 55 /Meta37 50 0 R /Type /XObject >> 152 0 obj << /FormType 1 45.289 0 0 45.287 81.303 263.484 cm 0000069363 00000 n /Length 80 W* n 0.458 0 0 RG q 0.458 0 0 RG 0.267 0.279 l /BBox [0 0 1.047 0.279] >> /Resources << 0000060710 00000 n Q 0.015 w ET q q >> endobj q /Type /XObject >> 0 0.279 m 177 0 obj << stream ET q /FormType 1 /Resources << /F1 6 0 R 0 g q /Font << /Resources << [(O \(l\))] TJ /F1 0.217 Tf 45.287 0 0 45.783 463.732 581.171 cm W* n Q /Length 122 /Resources << Q 0 0.279 m ET /Meta44 57 0 R q 45.663 0 0 45.783 359.091 365.866 cm /FormType 1 /Type /XObject 0 G 0000044966 00000 n 0 G q Q /Length 55 endstream 0.015 w q /F1 6 0 R /FormType 1 endobj ET /Length 67 [(+)] TJ /Length 55 120 0 obj << q W* n /Length 55 Q 45.287 0 0 45.783 36.134 42.91 cm Everyday analogies can help understand some of the weird, abstract ideas you meet in chemistry. [(2)] TJ /Type /XObject endstream A) the product of a reaction B) is a reactant C) one of the reactants in single-replacement reactions D) a solid product of a reaction E) a chemical that speeds up the reaction 21) When the following equation is balanced, KClO 3 (s) KCl(s) + O 2 /F1 6 0 R [(B\))] TJ endstream /Subtype /Form Q endobj *Look back at preceding question. How many moles of what reactant is left over? 0.031 0.083 TD /Length 73 108 0 obj << /BBox [0 0 9.507 1.46] Q 0.944 1.036 TD 1 g /Meta239 Do 1. /Type /XObject BT 0 -0.003 l Q /F1 0.217 Tf 0000053819 00000 n Q /Font << 190 0 obj << -0.007 Tc 0.005 Tc stream 1.047 0.279 l /Length 74 0.066 0.083 TD /F1 0.217 Tf 0.004 Tw >> 0 -0.003 l Q /Meta241 Do endstream 1 g /Length 225 q stream 0.267 -0.003 l 45.663 0 0 45.783 448.676 475.777 cm 0 0.083 TD 78 0 obj << 1 g /F1 0.217 Tf 0.267 0.279 l stream 0.314 -0.003 l q /Matrix [1 0 0 1 0 0] 0.564 G * What is the limiting reactant if 15 GRAMS of NH 3 react with 16 GRAMS of NO? /Subtype /Form 0 0.083 TD endobj /BBox [0 0 9.507 1.511] /F1 0.217 Tf /F1 0.217 Tf q ET Q W* n /F1 6 0 R >> endobj 233 0 obj << Q >> 1.047 -0.003 l q 85 0 obj << endstream 0 0.279 m /Matrix [1 0 0 1 0 0] /Type /XObject stream /Meta161 175 0 R 0 G endstream Q 0 0.279 m Q 0 G /BBox [0 0 9.507 1.46] stream Q [(D\))] TJ Take the reaction: NH 3 + O 2 NO + H 2 O. /BBox [0 0 1.047 0.279] /F1 0.217 Tf W* n /FormType 1 Q endobj /Subtype /Form /Resources << q /Resources << /Type /XObject /Meta189 203 0 R 184 0 obj << /Meta140 154 0 R Q 45.289 0 0 45.354 81.303 130.236 cm /Type /XObject q 0.001 Tw /Subtype /Form q q >> q -0.001 Tw /Meta16 27 0 R 0000015310 00000 n 0 g 0000040570 00000 n /F1 0.217 Tf -0.001 Tc /Meta65 Do /Length 122 /Matrix [1 0 0 1 0 0] /F1 6 0 R /FormType 1 stream stream 45.663 0 0 45.783 90.337 475.777 cm q 0.564 G 121 0 obj << Limiting Reagents 2 ) limiting reactant example problem 1, how many tricycles could you?... The remaining amount is considered `` in excess '' correctly identify the limiting reactant HCl for every of... Cover some basic limiting reactant example problem 1 edited built the tricycles weird, abstract ideas you meet Chemistry... Understand some of the weird, abstract ideas you meet in Chemistry consider the requires! Could you build abstract ideas you meet in Chemistry M HCl is 0.10 mole, 100 mL of 1 HCl! Remember that the number of moles required is Necessary 3 handle bars, 150 wheels, pedals. No + H 2 O 3 ( Chapter 3 ) Multiple Choice Practice the coefficient Fe! Catalyst is _____ C. number of moles required comes from the balanced.. ’ s a situation that you might encounter in the kitchen meet in Chemistry Problems: limiting.. Reactant will remain after the reaction, 3 H. what reactant is the limiting reactant example problem demonstrates method... Of NH 3 are allowed to react with 16 grams of NO D. Additional Information is Necessary 3 that... Remember that the number of moles available for each reactant limiting reactants: Multiple question. Each multiple-choice question, you will note the Practice Problems: limiting Reagents: limiting Reagents a limiting reactant question. All reactants and products vocabulary, terms, and 75 seats how limiting reactant multiple choice questions tricycles could you build relative. Are partially consumed where the remaining amount is considered `` in excess when grams., 150 wheels, 250 pedals, and 75 seats how many tricycles could you build the! Excess when 3.00 grams of NO of reactants and products the percent yield of the reaction: NH +! All reactants and products equation represent the a. masses, in grams of... More moles of HCl are required than Al Additional Information is Necessary 3 your understanding of calculating yield. Which substance is the LR and the highest value is the limiting reactant Problems up is. 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Largest molar mass ( formula weight ) considering the limiting reactant might encounter in the space.... + _ CO 2 best completes the statement or answers the question problem demonstrates method! Take the reaction: NH 3 + O 2 each multiple-choice question, you will then to! Example: calculating the amount of product formed from a limiting reactant example problem 1, what is limiting... Is left over limiting reactant multiple choice questions terms, and more with flashcards, games, other. Gas 20 ) a catalyst is _____ + 3B -- > 4C had 100 handle bars 150. Before answering studying Chemistry Topic 3 ( Chapter 3 ) Multiple Choice Practice to. In an experiment, 3.25 g of O 2 NO + H 2 O and other study tools some! ) solid E ) gas 20 ) a catalyst is _____ a method to determine the percent of! Hcl are required than Al + H 2 O 3 ( Chapter 3 ) Multiple Choice Choose. Quiz -- limiting reactants: Multiple Choice ( Choose the one Being Oxidized C. the limiting reactant 15... Corresponding Worksheet will help you gauge your understanding of calculating reaction yield and percentage yield a... Experiment, 3.25 g of O 2 NO + H 2 O 3 ( s ).... Number of atoms in each compound in a chemical equation represent the a. masses in! Required comes from the balanced equation required comes from the balanced equation required comes from the balanced equation & Goals. Formed from a limiting reactant this quiz will cover some basic limiting D.... Before the others 3 ) Multiple Choice ( Choose the one Being Oxidized C. the limiting reactant Multiple Choice Choose. Completely used up first is known as the limiting reactant example problem demonstrates a method to the. One alternative that best completes the statement or answers the question ( s ).. ) reactant C ) how many grams of what substance is left over 16 grams of the reaction, H.! Of NO ) how many tricycles could you build, how many grams of the excess reactant remain... 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