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The specific conductivity of 0.02 M KCl solution at 25°C is 2.768 × 10–3 ohm–1 cm–1. The resistance of this solution at 25°C when measured with a particular cell was 250.2 ohms. The resistance of 0.01 M CuSO4 solution at 25°C measured with the same cell was 8331 ohms. Calculate the molar conductivity (in s–1 cm2 mol–1& rounded up to three decimal places) of the copper sulfate solution:Correct answer is between '8.305,8.320'. Can you explain this answer? for Chemistry 2024 is part of Chemistry preparation. The Question and answers have been prepared
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the Chemistry exam syllabus. Information about The specific conductivity of 0.02 M KCl solution at 25°C is 2.768 × 10–3 ohm–1 cm–1. The resistance of this solution at 25°C when measured with a particular cell was 250.2 ohms. The resistance of 0.01 M CuSO4 solution at 25°C measured with the same cell was 8331 ohms. Calculate the molar conductivity (in s–1 cm2 mol–1& rounded up to three decimal places) of the copper sulfate solution:Correct answer is between '8.305,8.320'. Can you explain this answer? covers all topics & solutions for Chemistry 2024 Exam.
Find important definitions, questions, meanings, examples, exercises and tests below for The specific conductivity of 0.02 M KCl solution at 25°C is 2.768 × 10–3 ohm–1 cm–1. The resistance of this solution at 25°C when measured with a particular cell was 250.2 ohms. The resistance of 0.01 M CuSO4 solution at 25°C measured with the same cell was 8331 ohms. Calculate the molar conductivity (in s–1 cm2 mol–1& rounded up to three decimal places) of the copper sulfate solution:Correct answer is between '8.305,8.320'. Can you explain this answer?.
Solutions for The specific conductivity of 0.02 M KCl solution at 25°C is 2.768 × 10–3 ohm–1 cm–1. The resistance of this solution at 25°C when measured with a particular cell was 250.2 ohms. The resistance of 0.01 M CuSO4 solution at 25°C measured with the same cell was 8331 ohms. Calculate the molar conductivity (in s–1 cm2 mol–1& rounded up to three decimal places) of the copper sulfate solution:Correct answer is between '8.305,8.320'. Can you explain this answer? in English & in Hindi are available as part of our courses for Chemistry.
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Here you can find the meaning of The specific conductivity of 0.02 M KCl solution at 25°C is 2.768 × 10–3 ohm–1 cm–1. The resistance of this solution at 25°C when measured with a particular cell was 250.2 ohms. The resistance of 0.01 M CuSO4 solution at 25°C measured with the same cell was 8331 ohms. Calculate the molar conductivity (in s–1 cm2 mol–1& rounded up to three decimal places) of the copper sulfate solution:Correct answer is between '8.305,8.320'. Can you explain this answer? defined & explained in the simplest way possible. Besides giving the explanation of
The specific conductivity of 0.02 M KCl solution at 25°C is 2.768 × 10–3 ohm–1 cm–1. The resistance of this solution at 25°C when measured with a particular cell was 250.2 ohms. The resistance of 0.01 M CuSO4 solution at 25°C measured with the same cell was 8331 ohms. Calculate the molar conductivity (in s–1 cm2 mol–1& rounded up to three decimal places) of the copper sulfate solution:Correct answer is between '8.305,8.320'. Can you explain this answer?, a detailed solution for The specific conductivity of 0.02 M KCl solution at 25°C is 2.768 × 10–3 ohm–1 cm–1. The resistance of this solution at 25°C when measured with a particular cell was 250.2 ohms. The resistance of 0.01 M CuSO4 solution at 25°C measured with the same cell was 8331 ohms. Calculate the molar conductivity (in s–1 cm2 mol–1& rounded up to three decimal places) of the copper sulfate solution:Correct answer is between '8.305,8.320'. Can you explain this answer? has been provided alongside types of The specific conductivity of 0.02 M KCl solution at 25°C is 2.768 × 10–3 ohm–1 cm–1. The resistance of this solution at 25°C when measured with a particular cell was 250.2 ohms. The resistance of 0.01 M CuSO4 solution at 25°C measured with the same cell was 8331 ohms. Calculate the molar conductivity (in s–1 cm2 mol–1& rounded up to three decimal places) of the copper sulfate solution:Correct answer is between '8.305,8.320'. Can you explain this answer? theory, EduRev gives you an
ample number of questions to practice The specific conductivity of 0.02 M KCl solution at 25°C is 2.768 × 10–3 ohm–1 cm–1. The resistance of this solution at 25°C when measured with a particular cell was 250.2 ohms. The resistance of 0.01 M CuSO4 solution at 25°C measured with the same cell was 8331 ohms. Calculate the molar conductivity (in s–1 cm2 mol–1& rounded up to three decimal places) of the copper sulfate solution:Correct answer is between '8.305,8.320'. Can you explain this answer? tests, examples and also practice Chemistry tests.