8 Flashcards

1
Q

Enthalpy (h)

A

Enthalpy is the heat energy stored within a system

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2
Q

Enthalpy change (ΔH)

A

The heat energy exchange with the surroundings at standard temperature and pressure

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3
Q

Standard conditions

A

Temperature: 298 Kelvin

Pressure: 100 kPa

Solutions at 1mol dm-3

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4
Q

Exothermic reaction

A

In an exothermic change energy is transferred from the system (chemicals) to the surroundings.

This causes the temperature (of surroundings) to increase

The products have less energy than the reactants

In an exothermic reaction the ∆H is negative

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5
Q

Endothermic reaction

A

In an endothermic change, energy is transferred from the surroundings to the system (chemicals).

This causes the temperatures (of the surroundings) to decrease

They require an input of heat energy

The products have more energy than the reactants

In an endothermic reaction the ∆H is positive

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6
Q

Enthalpy change of reaction

A

The enthalpy change of a reaction at standard temperature and pressure

ΔHr

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7
Q

Enthalpy change of formation

A

The enthalpy change where I mole of the compound is formed from its constituent elements in their standard states

ΔHf

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8
Q

Enthalpy change of combustion

A

The enthalpy change that occurs when one mole of a substance is burnt in excess oxygen under standard conditions.

all reactants and products being in their standard states

ΔHc

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9
Q

Enthalpy change of neutralisation

A

The enthalpy change when solutions of an acid and an alkali react together under standard conditions to produce 1 mole of water.

ΔHn

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10
Q

Energy profile diagram

A

Show the enthalpy changes that occur during a chemical reaction

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11
Q

Calorimetry

A

Process that allows us to calculate the energy/ enthalpy change of a reaction by measuring temperature change

The energy change of a reaction is monitored by measuring the change in temperature of a known volume of water/ solution

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12
Q

How to calculate energy change

A

Q = -m x c x ΔT

Energy change = -mass of water/solution x specific heat capacity x change in temperature

ΔH can only be worked out from Q if you know the number of moles involved

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