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Up to a point, temperature will increase the rate of reaction between hypo and dilute hydrochloric acid. After a certain point, extreme temperature will completely shut down the process.

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What happens to the temperature when the mass is increased in a chemical reaction involving magnesium and hydrochloric acid?

Increasing the mass of magnesium in a reaction with hydrochloric acid will not directly affect the temperature of the reaction. The temperature will be determined by the amount of heat released or absorbed during the reaction, which depends on the specific reaction and the initial conditions.


How does heat affect Hydrochloric Acid and Magnesium?

Heat can increase the reaction rate between hydrochloric acid and magnesium, as it provides more energy for the collisions between the particles. However, excessive heat can also speed up the reaction to the point where it becomes uncontrollable, leading to potential hazards such as splattering or release of toxic gases. It is important to carefully control the temperature when working with this reaction.


Why does temperature affect the rate sodium thiosulphate and hydrocholric acid react?

Temperature affects the rate of reaction between sodium thiosulfate and hydrochloric acid by increasing the kinetic energy of the particles involved. This leads to more frequent and energetic collisions between the reactant molecules, increasing the likelihood of successful collisions and hence speeding up the reaction rate. Additionally, higher temperatures can also alter the activation energy required for the reaction to occur, further influencing the reaction rate.


How does the amount of copper chloride affect the temperature of the reaction?

The amount of copper chloride in a reaction can affect the temperature by influencing the rate of the reaction. Adding more copper chloride can increase the rate of reaction, leading to a faster rise in temperature. Conversely, reducing the amount of copper chloride can slow down the reaction and result in a lower temperature change.


Does volume of water affect temperature rise in reaction between calcium oxide and water?

Yes, the volume of water can affect the temperature rise in the reaction between calcium oxide and water. A larger volume of water can absorb more heat energy released during the reaction, resulting in a lower temperature rise compared to a smaller volume of water. Additionally, the concentration of the resulting calcium hydroxide solution can also influence the temperature change.

Related Questions

What happens to the temperature when the mass is increased in a chemical reaction involving magnesium and hydrochloric acid?

Increasing the mass of magnesium in a reaction with hydrochloric acid will not directly affect the temperature of the reaction. The temperature will be determined by the amount of heat released or absorbed during the reaction, which depends on the specific reaction and the initial conditions.


How does heat affect Hydrochloric Acid and Magnesium?

Heat can increase the reaction rate between hydrochloric acid and magnesium, as it provides more energy for the collisions between the particles. However, excessive heat can also speed up the reaction to the point where it becomes uncontrollable, leading to potential hazards such as splattering or release of toxic gases. It is important to carefully control the temperature when working with this reaction.


Do catalysts affect temperature?

A catalyst affects the speed of a chemical reaction. If the chemical reaction gives off heat, the reaction may affect the temperature, but the catalyst by itself doesn't affect the temperature.


How does temperature affect reaction rate hot?

The Hotter the temperature, the faster the particle moves. During the reaction, atoms transfer in different molecules (or compounds), therefore the temperature does affect the speed of the reaction.


Why does temperature affect the rate sodium thiosulphate and hydrocholric acid react?

Temperature affects the rate of reaction between sodium thiosulfate and hydrochloric acid by increasing the kinetic energy of the particles involved. This leads to more frequent and energetic collisions between the reactant molecules, increasing the likelihood of successful collisions and hence speeding up the reaction rate. Additionally, higher temperatures can also alter the activation energy required for the reaction to occur, further influencing the reaction rate.


What is the difference between the present value of an investment and its cost?

pressure is dependent on temperature pressure is a mere important factor that affect chemical reaction temperature acts on chemical reaction faster than pressure


How does heat affect the rate of the reaction?

Increasing the temperature the reaction rate increase.


How does temperature concentration and acidity affect reaction rate?

Generally increasing the temperature and concentration the reaction rate is higher.


Does the temperature of the water for blobs in a bottle affect the reaction?

Yes, the temperature of the water can affect the rate of the reaction for blobs in a bottle. Higher temperatures typically increase the rate of reaction because more collisions occur between the reactant molecules, leading to a faster reaction. Conversely, lower temperatures can slow down the reaction rate.


How does temperature affect Copper Oxide plus Acid?

As in most chemical reactions, an increase in temperature increases the rate of reaction between copper oxide and acid.


How does the amount of copper chloride affect the temperature of the reaction?

The amount of copper chloride in a reaction can affect the temperature by influencing the rate of the reaction. Adding more copper chloride can increase the rate of reaction, leading to a faster rise in temperature. Conversely, reducing the amount of copper chloride can slow down the reaction and result in a lower temperature change.


Does volume of water affect temperature rise in reaction between calcium oxide and water?

Yes, the volume of water can affect the temperature rise in the reaction between calcium oxide and water. A larger volume of water can absorb more heat energy released during the reaction, resulting in a lower temperature rise compared to a smaller volume of water. Additionally, the concentration of the resulting calcium hydroxide solution can also influence the temperature change.