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The formation of sulfur trioxide from sulfur dioxide is a reversible reaction.
\[
2 SO _2( g )+ O _2( g ) \rightleftharpoons 2 SO _3( g )
\]
The backward reaction is endothermic.
________ sulfur trioxide will be produced when the temperature of the surrounding decreases.
In a reaction of hydrogen gas with iodine vapour to produce hydrogen iodide, the forward reaction is exothermic.
\[
H_2(g)+I_2(g) \rightleftharpoons 2 HI(g)
\]
The equilibrium position will shift to the ______ when the temperature of the surrounding decreases.
In a reaction of hydrogen gas with iodine vapour to produce hydrogen iodide, the forward reaction is exothermic.
\[
H_2(g)+I_2(g) \rightleftharpoons 2 HI(g)
\]
________ hydrogen iodide will be produced when the temperature of the surrounding decreases.
Ammonia is synthesised by the Haber process. The reaction takes place in a closed reaction vessel. The reaction is exothermic.
\[
N _2(g)+3 H _2(g) \rightleftharpoons 2 NH _3(g)
\]
________ ammonia will be produced when the temperature of the surrounding become higher.
Ammonia is synthesised by the Haber process. The reaction takes place in a closed reaction vessel. The reaction is exothermic.
\[
N _2(g)+3 H _2(g) \rightleftharpoons 2 NH _3(g)
\]
The equilibrium position will shift to the ______ when the temperature of the surrounding reduces.
At room temperature, the conversion of nitrogen dioxide, \(NO _2\), into dinitrogen tetroxide, \(N _2 O _4\), is reversible.
\[
2 NO _2(g) \rightleftharpoons N _2 O _4(g)
\]
The forward reaction is exothermic.
The equilibrium position will shift to the ______ when the mixture of gases is heated.
The reversible reaction between methane and steam is shown.
\[
CH _4( g )+ H _2 O ( g ) \rightleftharpoons CO ( g )+3 H _2( g )
\]
The forward reaction is endothermic.
________ CO will be produced when the temperature of the surrounding become lower.
The formation of sulfur trioxide from sulfur dioxide is a reversible reaction.
\[
2 SO _2( g )+ O _2( g ) \rightleftharpoons 2 SO _3( g )
\]
The forward reaction is exothermic.
The equilibrium position will shift to the ______ when the temperature of the surrounding increases.
The formation of sulfur trioxide from sulfur dioxide is a reversible reaction.
\\[
2 SO _2( g )+ O _2( g ) \\rightleftharpoons 2 SO _3( g )
\\]
The backward reaction is endothermic.
________ sulfur trioxide will be produced when the temperature of the surrounding decreases.
In a reaction of hydrogen gas with iodine vapour to produce hydrogen iodide, the forward reaction is exothermic.
\\[
H_2(g)+I_2(g) \\rightleftharpoons 2 HI(g)
\\]
The equilibrium position will shift to the ______ when the temperature of the surrounding decreases.
In a reaction of hydrogen gas with iodine vapour to produce hydrogen iodide, the forward reaction is exothermic.
\\[
H_2(g)+I_2(g) \\rightleftharpoons 2 HI(g)
\\]
________ hydrogen iodide will be produced when the temperature of the surrounding decreases.
Ammonia is synthesised by the Haber process. The reaction takes place in a closed reaction vessel. The reaction is exothermic.
\\[
N _2(g)+3 H _2(g) \\rightleftharpoons 2 NH _3(g)
\\]
________ ammonia will be produced when the temperature of the surrounding become higher.
Ammonia is synthesised by the Haber process. The reaction takes place in a closed reaction vessel. The reaction is exothermic.
\\[
N _2(g)+3 H _2(g) \\rightleftharpoons 2 NH _3(g)
\\]
The equilibrium position will shift to the ______ when the temperature of the surrounding reduces.
At room temperature, the conversion of nitrogen dioxide, \\(NO _2\\), into dinitrogen tetroxide, \\(N _2 O _4\\), is reversible.
\\[
2 NO _2(g) \\rightleftharpoons N _2 O _4(g)
\\]
The forward reaction is exothermic.
The equilibrium position will shift to the ______ when the mixture of gases is heated.
The reversible reaction between methane and steam is shown.
\\[
CH _4( g )+ H _2 O ( g ) \\rightleftharpoons CO ( g )+3 H _2( g )
\\]
The forward reaction is endothermic.
________ CO will be produced when the temperature of the surrounding become lower.