Crear
Descargar
Obtener Plan Académico
Compartir juego
Intégralo en tu plataforma

Puedes integrar el juego en un LMS compatible con LTI 1.1 o LTI 1.3 como Canvas, Moodle, o Blackboard. De esta manera podrás guardar las puntuaciones automáticamente en el libro de calificaciones de esa plataforma.
Descargar
Has superado el número máximo de juegos que puedes integrar en Google Classroom con tu Plan actual.

Para integrar tantos juegos como quieras en Google Classroom, necesitas un Plan Académico o un Plan Comercial.

Has superado el número máximo de juegos que puedes integrar en Microsoft Teams con tu Plan actual.

Para integrar tantos juegos como quieras en Microsoft Teams, necesitas un Plan Académico o un Plan Comercial.

La descarga de juegos es una característica exclusiva para usuarios con un Plan Académico o un Plan Comercial.

Obtén ahora tu Plan Académico o Comercial y comienza a integrar tus juegos en tu LMS, web o blog.

Si lo deseas, puedes descargar un juego de prueba aquí y probar su integración:

%
Anónimo
Anónimo
%
%
%
Has superado el número máximo de juegos que puedes imprimir con tu Plan actual.

Para imprimir tantos juegos como quieras, necesitas un Plan Académico o un Plan Comercial.

Imprime tu juego
Energy: Applications & Uses Lowersixth Science Chemistry
 

Energy: Applications & Uses Lowersixth Science ChemistryVersión en línea

A quick true/false on enthalpy and energy changes.

por YAKILI LMS
1

Enthalpy changes can be used to compare efficiency of different reactions.

2

Absolute enthalpy values can be directly measured with a simple thermometer.

3

A system’s energy change is identical in sign to the surroundings' energy change.

4

Calorimetry experiments can be used to determine ΔH for a reaction.

5

The standard enthalpy of formation is always positive.

6

If ΔH is positive for a reaction, the system gains energy from the surroundings.

7

Combustion enthalpy is not used in calorimetry studies.

8

Enthalpy is a measure of the volume of a system at constant temperature.

9

In an exothermic reaction, ΔH is negative at constant pressure.

10

Standard enthalpy of formation is defined for products minus reactants to form a compound from elements in their standard states.

11

The first law of thermodynamics states that energy cannot be created or destroyed.

12

Standard states are defined only for gases at 290 K.

13

The standard enthalpy of reaction is the enthalpy change at any temperature.

14

Calorimeters are designed to minimize heat exchange with the surroundings.

15

Enthalpy change is denoted by ΔH.

16

Standard conditions for enthalpy change measurement are 0 K and 0 atm.

17

An isolated system cannot exchange energy with its surroundings.

18

Heat transfer during a reaction occurs until thermal equilibrium is reached.

19

The enthalpy change of fusion is an example of a phase change enthalpy.

20

Endothermic and exothermic refer to color changes in the reaction.

21

Reaction enthalpies are intrinsic properties independent of the path taken.

22

Reaction enthalpies are always dependent on the reaction pathway.

23

Calorimeters are designed to maximize heat exchange with the surroundings.

24

Endothermic reactions absorb heat from the surroundings.

25

The energy content of a system can be tracked by changes in internal energy and enthalpy.

26

Fusion enthalpy is not involved in phase changes.

27

Calorimetry cannot be used to determine enthalpy changes.

28

The term 'enthalpy' refers to entropy multiplied by pressure.

29

Standard conditions for enthalpy change measurements are commonly 298 K and 1 atm.

30

Hess's law states that enthalpy changes depend on the path of the reaction.

31

The enthalpy change of combustion is a common example studied in calorimetry.

32

Absolute zero is the only reference point for enthalpy calculations.

33

The standard enthalpy of formation uses elements in their standard states as zero.

34

The concept of enthalpy is widely used in chemical thermodynamics and physical chemistry.

35

The term 'enthalpy' combines internal energy and pressure-volume work.

36

The first law of thermodynamics allows creation of energy in a chemical reaction.

37

Exothermic reactions release heat to the surroundings.

38

Endothermic and exothermic describe energy transfer direction relative to the surroundings.

39

Enthalpy changes cannot be used to assess reaction feasibility.

40

If ΔHrxn is negative, the reaction is endothermic.

41

The first law implies that energy is created during chemical processes.

42

Measurement of enthalpy changes often uses calorimetry.

43

ΔH represents entropy change in a system.

44

The first law implies conservation of energy in chemical processes.

45

Endothermic reactions release heat to the surroundings.

46

Heat transfer stops before reaching thermal equilibrium in a reaction.

47

A system's energy change can be calculated from the surroundings' energy change with opposite sign.

48

Hess's law allows enthalpy changes to be added for overall reactions.

49

An open system cannot exchange energy with its surroundings.

50

The standard enthalpy of reaction is the enthalpy change when reactants in their standard states form products in their standard states.

¿Estás seguro que quieres abandonar la página?

Al abandonar la página perderás el progreso del juego.