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Test: Analytical Chemistry-Uses of Ammonium Hydroxide and Sodium Hydroxide - Class 10 MCQ


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20 Questions MCQ Test - Test: Analytical Chemistry-Uses of Ammonium Hydroxide and Sodium Hydroxide

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Test: Analytical Chemistry-Uses of Ammonium Hydroxide and Sodium Hydroxide - Question 1

In quantitative analysis, what is typically measured?

Detailed Solution for Test: Analytical Chemistry-Uses of Ammonium Hydroxide and Sodium Hydroxide - Question 1

Quantitative analysis focuses on measuring the concentration or amount of specific substances in a mixture. This is crucial for applications that require precise data, such as determining the dosage of a drug in pharmaceutical preparations or measuring pollutants in environmental samples. Techniques such as gravimetry and titrimetry are commonly used in this type of analysis.

Test: Analytical Chemistry-Uses of Ammonium Hydroxide and Sodium Hydroxide - Question 2

What is the result when sodium hydroxide reacts with certain metal salts in solution?

Detailed Solution for Test: Analytical Chemistry-Uses of Ammonium Hydroxide and Sodium Hydroxide - Question 2

When sodium hydroxide is added to solutions containing certain metal salts, it often results in the formation of a colored precipitate. This occurs because sodium hydroxide reacts with metal cations to form insoluble metal hydroxides, which can be indicative of specific metal ions present in the solution.

Test: Analytical Chemistry-Uses of Ammonium Hydroxide and Sodium Hydroxide - Question 3

What color is typically observed when sodium hydroxide reacts with copper(II) ions?

Detailed Solution for Test: Analytical Chemistry-Uses of Ammonium Hydroxide and Sodium Hydroxide - Question 3

When sodium hydroxide reacts with copper(II) ions, a blue precipitate of copper(II) hydroxide is formed. This is a classic test for the presence of copper ions in solution and is a fundamental aspect of qualitative analysis in chemistry. The distinctive blue color serves as a visual indicator, aiding in the identification of copper.

Test: Analytical Chemistry-Uses of Ammonium Hydroxide and Sodium Hydroxide - Question 4

What characteristic property do amphoteric oxides exhibit?

Detailed Solution for Test: Analytical Chemistry-Uses of Ammonium Hydroxide and Sodium Hydroxide - Question 4

Amphoteric oxides are unique because they can act as either acids or bases depending on the nature of the chemical reaction they are involved in. This property allows them to react with both acids and bases, making them versatile in various chemical contexts. For example, zinc oxide can react with hydrochloric acid as a base and with sodium hydroxide as an acid.

Test: Analytical Chemistry-Uses of Ammonium Hydroxide and Sodium Hydroxide - Question 5

Which of the following statements is true about the action of ammonium hydroxide on certain metal salts?

Detailed Solution for Test: Analytical Chemistry-Uses of Ammonium Hydroxide and Sodium Hydroxide - Question 5

Ammonium hydroxide can react with various metal salts to produce colored precipitates, similar to sodium hydroxide. This property is utilized in qualitative analysis to help identify the presence of certain metal ions in solution. For example, the addition of ammonium hydroxide to a solution containing nickel ions may lead to the formation of a green precipitate of nickel hydroxide.

Test: Analytical Chemistry-Uses of Ammonium Hydroxide and Sodium Hydroxide - Question 6

What happens when an alkali reacts with a metal oxide?

Detailed Solution for Test: Analytical Chemistry-Uses of Ammonium Hydroxide and Sodium Hydroxide - Question 6

When an alkali reacts with a metal oxide, it typically forms a salt and water through a neutralization reaction. This reaction is similar to the reaction between an acid and a base, where the metal oxide acts as a base. For example, sodium hydroxide reacting with copper(II) oxide yields sodium copper oxide and water.

Test: Analytical Chemistry-Uses of Ammonium Hydroxide and Sodium Hydroxide - Question 7

How do alkalis typically react with metal cations?

Detailed Solution for Test: Analytical Chemistry-Uses of Ammonium Hydroxide and Sodium Hydroxide - Question 7

Alkalis typically react with metal cations to form insoluble metal hydroxides, which often precipitate out of solution. This precipitation is a key aspect of qualitative analysis, allowing chemists to identify the presence of specific metal ions based on the characteristics of the precipitate formed. For example, adding sodium hydroxide to a solution containing iron(III) ions yields a reddish-brown precipitate of iron(III) hydroxide.

Test: Analytical Chemistry-Uses of Ammonium Hydroxide and Sodium Hydroxide - Question 8

Which of the following is true about ammonium hydroxide?

Detailed Solution for Test: Analytical Chemistry-Uses of Ammonium Hydroxide and Sodium Hydroxide - Question 8

Ammonium hydroxide (NH4OH) is frequently utilized in qualitative analysis to identify metal cations. It reacts with various metal salts to produce distinctive precipitates, which can help chemists determine the identity of the ions in a solution. This versatility makes it a valuable reagent in analytical chemistry.

Test: Analytical Chemistry-Uses of Ammonium Hydroxide and Sodium Hydroxide - Question 9

What kind of oxides can react as both acids and bases?

Detailed Solution for Test: Analytical Chemistry-Uses of Ammonium Hydroxide and Sodium Hydroxide - Question 9

Amphoteric oxides can react as either acids or bases depending on the reagents they encounter. This dual reactivity is essential in various chemical reactions, as it allows for flexibility in how they are used in different contexts. For instance, aluminum oxide can react with both acids and bases, demonstrating its amphoteric nature.

Test: Analytical Chemistry-Uses of Ammonium Hydroxide and Sodium Hydroxide - Question 10

What is the primary purpose of qualitative analysis in analytical chemistry?

Detailed Solution for Test: Analytical Chemistry-Uses of Ammonium Hydroxide and Sodium Hydroxide - Question 10

Qualitative analysis is focused on identifying unknown substances rather than quantifying them. This type of analysis employs various techniques and reagents that react with specific cations or anions, allowing chemists to deduce the identity of the substances present in a sample. For example, a particular color change during a reaction can indicate the presence of a specific metal ion.

Test: Analytical Chemistry-Uses of Ammonium Hydroxide and Sodium Hydroxide - Question 11

Which of the following statements is true regarding the action of alkalis on metals?

Detailed Solution for Test: Analytical Chemistry-Uses of Ammonium Hydroxide and Sodium Hydroxide - Question 11

Some metals, particularly those that are more reactive like aluminum and zinc, can react with alkalis to produce hydrogen gas. This reaction can be quite vigorous and is an important aspect of understanding the reactivity of metals in different chemical environments. For instance, zinc reacts with sodium hydroxide to release hydrogen gas.

Test: Analytical Chemistry-Uses of Ammonium Hydroxide and Sodium Hydroxide - Question 12

In qualitative analysis, why are alkalis important?

Detailed Solution for Test: Analytical Chemistry-Uses of Ammonium Hydroxide and Sodium Hydroxide - Question 12

Alkalis are crucial in qualitative analysis because they react with metal cations to form precipitates, which aid in the identification of those metal ions. The color and solubility of the precipitate provide valuable information about which cations are present in the solution. For example, adding sodium hydroxide to a solution containing lead ions results in a white precipitate of lead(II) hydroxide.

Test: Analytical Chemistry-Uses of Ammonium Hydroxide and Sodium Hydroxide - Question 13

Which reagent is commonly used in analytical chemistry for cation identification?

Detailed Solution for Test: Analytical Chemistry-Uses of Ammonium Hydroxide and Sodium Hydroxide - Question 13

Sodium hydroxide (NaOH) is widely used in analytical chemistry as a reagent for identifying metal cations. It reacts with various metal ions to form precipitates of characteristic colors, which can be a vital clue in determining the identity of the cations in a solution. This property makes it an essential tool in qualitative analysis.

Test: Analytical Chemistry-Uses of Ammonium Hydroxide and Sodium Hydroxide - Question 14

Which of the following best describes a reagent?

Detailed Solution for Test: Analytical Chemistry-Uses of Ammonium Hydroxide and Sodium Hydroxide - Question 14

A reagent is defined as a substance that interacts with another substance, often resulting in a chemical reaction. This interaction is fundamental in various types of analyses, including qualitative and quantitative assessments, where reagents help identify or measure the characteristics of other substances through observable changes.

Test: Analytical Chemistry-Uses of Ammonium Hydroxide and Sodium Hydroxide - Question 15

What is the main role of reagents in analytical chemistry?

Detailed Solution for Test: Analytical Chemistry-Uses of Ammonium Hydroxide and Sodium Hydroxide - Question 15

Reagents play a critical role in analytical chemistry by reacting with other substances to facilitate the identification or quantification of those substances. They can produce observable changes, such as color changes or precipitate formation, which are essential for drawing conclusions about the components of a mixture. For example, the addition of a reagent may yield a distinct color change that indicates the presence of a particular ion.

Test: Analytical Chemistry-Uses of Ammonium Hydroxide and Sodium Hydroxide - Question 16

What is the result of adding ammonium hydroxide to a solution of iron(III) chloride?

Detailed Solution for Test: Analytical Chemistry-Uses of Ammonium Hydroxide and Sodium Hydroxide - Question 16

When ammonium hydroxide is added to a solution of iron(III) chloride, a red-brown precipitate of iron(III) hydroxide forms. This reaction is indicative of the presence of iron(III) ions in the solution and serves as a classic qualitative test in analytical chemistry. The red-brown color is a characteristic feature of iron(III) compounds and can help confirm their presence in a sample.

Test: Analytical Chemistry-Uses of Ammonium Hydroxide and Sodium Hydroxide - Question 17

What is the primary characteristic of qualitative analysis?

Detailed Solution for Test: Analytical Chemistry-Uses of Ammonium Hydroxide and Sodium Hydroxide - Question 17

Qualitative analysis is primarily concerned with identifying the identity of unknown substances rather than quantifying them. This is achieved through various chemical tests that yield observable changes, which help chemists deduce what substances are present in a sample. For example, a color change may indicate a specific ion's presence.

Test: Analytical Chemistry-Uses of Ammonium Hydroxide and Sodium Hydroxide - Question 18

Which metals are known to react with alkalis to produce hydrogen gas?

Detailed Solution for Test: Analytical Chemistry-Uses of Ammonium Hydroxide and Sodium Hydroxide - Question 18

Alkaline earth metals, such as magnesium and zinc, can react with alkalis to produce hydrogen gas. This reaction typically occurs when the metal is in contact with a strong alkali, leading to the release of hydrogen. This property is important in understanding the reactivity series of metals and their behavior in various chemical reactions.

Test: Analytical Chemistry-Uses of Ammonium Hydroxide and Sodium Hydroxide - Question 19

What type of analysis involves determining the composition of a mixture?

Detailed Solution for Test: Analytical Chemistry-Uses of Ammonium Hydroxide and Sodium Hydroxide - Question 19

Quantitative analysis is concerned with measuring the amount or concentration of substances within a mixture. This involves techniques such as titration or mass spectrometry to provide precise data on the proportions of various components present. Understanding the composition is crucial in fields such as pharmaceuticals and environmental monitoring.

Test: Analytical Chemistry-Uses of Ammonium Hydroxide and Sodium Hydroxide - Question 20

What is a common test for the presence of zinc ions in a solution?

Detailed Solution for Test: Analytical Chemistry-Uses of Ammonium Hydroxide and Sodium Hydroxide - Question 20

A common test for the presence of zinc ions involves adding sodium hydroxide, which produces a white precipitate of zinc hydroxide. This reaction is used in qualitative analysis to confirm the presence of zinc ions in a solution. The precipitate can further dissolve in excess sodium hydroxide, indicating the amphoteric nature of zinc hydroxide.

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