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Solved Problem: Antimony is obtained by heating …

Problem: Antimony is obtained by heating pulverized stibnite (Sb2S3) with scrap iron and drawing off the molten antimony from the bottom of the reaction vessel: Sb2S3 + 3Fe + 2Sb + 3FeS Suppose that 0.600 kg of stibnite and 0.250 kg of iron turnings are heated together to give 0.200 kg of Sb metal. Determine a. The limiting reactant b.

Solved Q1: Antimony is obtained by heating pulverized

Question: Q1: Antimony is obtained by heating pulverized stibnite (Sb2S3 ) with scrap iron and drawing off the molten antimony from the bottom of the reaction vessel: Sb2S3 + 3Fe + 2Sb + 3Fes Suppose that 0.600 kg of stibnite and 0.250 kg of iron turnings are heated together to give 0.200 kg of Sb metal. Determine a. The limiting reactant b.

Solved Antimony (Sb) is obtained by heating pulverized

Answer to Solved Antimony (Sb) is obtained by heating pulverized | Chegg

heating an ore of antimony and iron II sulfide.

heating an ore of antimony and iron II sulfide. Sb2S3+3Fe-->2Sb+3FeS when 15g Sb2S3 reacts with an excess of Fe, 9.84g Sb is produced. what is the pecent yeild of this reaction? ... Heating an ore of antimony (Sb2S3) in the presence of iron gives the element antimony and iron(II) sulfide. Sb2S3(s) + 3Fe(s) ==> 4 answers; asked by Ken;

Stibnite | Properties, Occurrence, Formation and Uses Areas

 — Stibnite is a sulfide minerals with chemical composition is antimony sulfide (Sb2S3). The principal ore of antimony. Lead-gray to silvery gray in color, it often develops a black, iridescent tarnish on exposure to light. It normally occurs as elongated, prismatic crystals that may be bent or twisted.

Heating an ore of antimony (Sb_2S_3) in the presence of iron …

Heating an ore of antimony (S b 2 S 3) in the presence of iron gives the element antimony and i r o n (I I) sulfide. S b 2 S 3 (s) + 3 F e (s) ⇌ 2 S b (s) + 3 F e S (s). When 15.0...

Stibnite

The production process of antimony ore varies depending on the type of ore. For low-grade ore, the flotation method is used to enrich antimony, while high-grade ore can be melted at 500–600 °C to extract antimony from the gangue. Additionally, iron filings can be employed to reduce antimony sulfide and separate antimony.

Solved Stoichiometry Homework #4 Solve each of …

Heating antimony sulfide, Sb;5), in the presence of iron gives the element antimony and iron(II) sulfide. Sb2S30) + 3 Few → 2 Sb . 3 FeS Q. How many moles of Sb2S, are needed to react with an excess amount of iron …

Heating an ore of antimony (Sb_2S_3) in the presence of iron …

Answer to: Heating an ore of antimony (Sb_2S_3) in the presence of iron gives the element antimony and iron(II) sulfide. Sb_2S_3 (s) + 3 Fe(s)...

Ch 12 Book Questions Flashcards

Heating an ore of antimony (Sb2S3) in the presence of iron gives the element antimony and iron (ii) sulfide. When 15.0 g Sb2S3 reacts with an excess of Fe, 9.84 g Sb is produced. …

Ultrafast self-trapping of photoexcited carriers sets the …

 — Antimony trisulfide (Sb2S3) is considered to be a promising photovoltaic material; however, the performance is yet to be satisfactory. Poor power conversion efficiency and large open circuit ...

Solved Antimony is obtained by heating pulverized stibnite

Question: Antimony is obtained by heating pulverized stibnite (Sb2S3) with scrap iron and drawing off the molten antimony from the bottom of the reaction vessel:Sb2S3+3Fe→2Sb+3FeSSuppose that 1.200kg of stibnite and 0.50kg of iron turnings are heated together to give 0.400kg of Sb metal. Determinea. The …

Answered: Pure antimony (Sb) can be prepared by… | bartleby

Pure antimony (Sb) can be prepared by heating the antimony ore (Sb2S3) in the presence of iron as follows: Sb2S3 + 3Fe ==> 2Sb + 3FeS If 406.2 g of antimony sulfide is reacted with iron and 76.1 g of pure antimony is produced, what is the % yield for this reaction?

Solved 1. Heating an ore of antimony (Sb2S3) in the …

Question: 1. Heating an ore of antimony (Sb2S3) in the presence of iron gives the element antimony and iron (II) sulfide. SHOW ALL WORK Sb2S3 (s) +3 Fe (s) →2 Sb (s) +3 Fe …

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Heating an ore of antimony (Sb2S3) in the presence o Iron gives e element antimony and iron (Il) sulfide. When 15.0 g Sb2S3 reacts with an excess ofFe, 9.84 g Sb is produced. What is the percent yield of this reaction? (s) + 3Fe (s) 2 Sb (s) + 3FeS (s) )QISÐSJ ) 3. When 50.0 g of silicon dioxide is heated with an excess of carbon, 32.2 g of ...

The metallurgy of antimony

 — 1. Background. Antimony is a silvery, white, brittle, crystalline solid that exhibits poor conductivity of electricity and heat. It has an atomic number of 51, an atomic weight of 122 and a density of 6.697 kg/m 3 at 26 °C. Antimony metal, also known as 'regulus', melts at 630 °C and boils at 1380 °C.Antimony and the natural sulfide of …

Heating an ore of antimony (Sb$_2$S$_3$) in the presence …

Chemistry. Question. Heating an ore of antimony (Sb _2 2 S _3 3) in the presence of iron gives the element antimony and iron (II) sulfide. Sb _2 2 S _3 3 (s) + 3 3 Fe (s) …

Heating an ore of antimony (Sb2S3) in the presence of iron …

VIDEO ANSWER: The cost per unit is equal to direct materials plus direct labor plus variable they manufacturing overhead variable manufacturing overhead over head plus sales commission plus…

heating an ore of antimony sulfide in the presence of iron

heating an ore of antimony sulfide in the presence of iron gives th element antimony and iron(2) sulfide. when 15.0 antimony sulfide reacts with an excess of iron, 9.84 g Showing results 1 through 10 of 14,547.

Heating an ore of antimony (Sb2S3) in the presence of iron …

Heating an ore of antimony (Sb2S3) in the presence of iron gives the element antimony and iron(II) sulfide. Sb2S3(s) + 3 Fe(s) 2 Sb(s) + 3 FeS(s) When 10.9 g Sb2S3 reacts with an excess of Fe, 9.84 g Sb is produced. What is the percent yield of this reaction? could you please give me the answer to this problem, im struggling with it. THANKS!!

Chem Flashcards

Heating an ore of antimony (Sb2S3) in the presence of iron gives the element antimony and iron(II) sulfide. Sb2S3 (s) + 3Fe(s) → 2Sb(s) + 3FeS(s) When 15.0 g Sb2S3 reacts with …

Limiting Reagent Percent Yield Problems

Heating an ore of antimony (Sb2S3) in the presence of iron gives the element antimony and iron(II) sulfide. Sb 2 S 3 + 3Fe→2Sb + 3FeS When 15 Sb 2 S 3 reacts with an excess of Fe, 9 g Sb is produced.

Solved Antimony (Sb) is obtained by heating pulverized

Question: Antimony (Sb) is obtained by heating pulverized stibnite (Sb2S3) with scrap iron and drawing off the molten antimony from the bottom of the reaction vessel. Suppose that 6 kg of stibnite and 2.5 kg of iron turnings are heated together to producc 2 kg of Sb mctal. MW of Sb2S, Fc, and Sb are 339.7, 55.85, and 121.8 respectively.

Answered: Pure antimony (Sb) can be prepared by… | bartleby

Pure antimony (Sb) can be prepared by heating the antimony ore (Sb2S3) in the presence of iron as follows: Sb2S3 + 3Fe ==> 2Sb + 3FeS If 438.6 g of antimony sulfide is reacted with iron and 37.6 g of pure antimony is produced, what is the % yield for this reaction?

Limiting Reagent Percent Yield Problems

Heating an ore of antimony (Sb2S3) in the presence of iron gives the element antimony and iron(II) sulfide. Sb 2 S 3 + 3Fe→2Sb + 3FeS When 15 Sb 2 S 3 reacts with an excess of Fe, 9 g Sb is produced. What is the percent yield of this reaction? 92%

heating an ore of antimony sb2s3 in the presence

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Answered: Pure antimony (Sb) can be prepared by… | bartleby

Pure antimony (Sb) can be prepared by heating the antimony ore (Sb2S3) in the presence of iron as follows: Sb2S3 + 3Fe ==> 2Sb + 3FeS If 438.6 g of antimony sulfide is reacted …

heating an ore of antimony sb2s3 in the presence

heating an ore of antimony sb2s3. Heating an ore of antimony Sb2S3 in the presence of . chemistry Heating an ore of antimony Sb2S3 in the presence of iron gives the element antimony and iron II sulfide Sb2S3 s 3 Fe s 2 Sb s 3 FeS s You don t have an arrow in the equation I assume you know where it goes Place it there first thing 2 …