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Verizon [17]
3 years ago
8

Identify some of the ways nuclear reaction equations differ from chemical reaction equations by matching each statement with the

type of reaction it describes. You are currently in a sorting module. Turn off browse mode or quick nav, Tab to items, Space or Enter to pick up, Tab to move, Space or Enter to drop. Nuclear reaction equations Chemical reaction equations Answer Bank
Chemistry
1 answer:
finlep [7]3 years ago
7 0

Explanation:

Nuclear reactions are independent of the chemical form of the element. ... Some of the mass is converted into energy,according to the equation E = mc2 and the order of energy evolved during a nuclear reaction is much higher than that of a chemical reaction.

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serg [7]
1) Data:

T₁ = <span> 21°C
</span>
<span>T₂ = 51°C.
</span>
<span>V₁ = V₂ = 15.6 L
</span>
<span>P₁ = 249 kPa.
</span>
<span>Pb = 269 kPa.
</span>

<span>Questions:
</span>

• n = ?
• P₂ = ?
• Will the tires burst at the peak temperature? Explain.
• To what pressure should the tire pressure be reduced before starting the ride to avoid bursting of the tires in the desert heat? (Assume no significant change in tire volume.)
Pi = ?


2) Formula:

PV = nRT
P₁ / T₁ = P₂ / T₂

3) Solution

i) n

P₁V₁ = nRT ⇒ n = P₁V₁ / [RT₁]

n = 249 kPa × 15.6 liter / [8.314 (liter-kPa / mol-K) × (21 + 273.15K) ] =

n = 1.588 mol

ii) P₂

P₂ = P₁ T₂ / T₁ = 249 kPa (50 + 273.15 K) / (21 + 273.15K) = 273.5 kPa


iii) Tires will burst, since P₂ > Pb

iv) Pi

Pi / T₁ = Pb / T₂

Pi = Pb T₁ / T₂ = 269 kPa (21 + 273.15K) / (50 + 273.15K) = 244.9 kPa

The pressure shoul to be reduced to less than 244.9 kPa before starting to avoid the <span> bursting of the tires in the desert heat.</span>
3 0
3 years ago
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