Créer jeu
Télécharger
Obtenir Plan Académique
Partager le jeu
Intégrez-le à votre plateforme

Vous pouvez intégrer le jeu dans un LMS compatible avec LTI 1.1 ou LTI 1.3 comme Canvas, Moodle ou Blackboard. Les scores seront ainsi automatiquement enregistrés dans le carnet de notes de la plateforme.
Télécharger
Vous avez dépassé le nombre maximum de jeux que vous pouvez intégrer à Google Classroom avec votre Plan actuel.

Pour intégrer autant de jeux que vous le souhaitez dans Google Classroom, vous avez besoin d’un Plan Académique ou un Plan Commerciel.

Vous avez dépassé le nombre maximum de jeux que vous pouvez intégrer à Microsoft Teams avec votre Plan actuel.

Pour intégrer autant de jeux que vous le souhaitez dans Microsoft Teams, vous avez besoin d’un Plan Académique ou un Plan Commerciel.

Le téléchargement du jeu est une fonctionnalité exclusive pour les utilisateurs avec un Plan Académique ou un Plan Commercial.

Obtenez votre Plan Académique ou Plan Commercial dès maintenant et commencez à intégrer vos jeux dans votre LMS, votre site Web ou votre blog.

Si vous le souhaitez, vous pouvez télécharger une jeu de test ici et tester son intégration:

Empirical ,Molecular Formulae. and Gas Laws and ideal gas equation .Mole quantities of gases, Molar Volume at s.t.p. and r.t.p. Experimental determination of the relative (lowersixth science chemistry new))

Oui ou Non

Parties jouées 0

À propos de cette activité

Test your knowledge on chemical formulas!

Créé par

Cameroon

Téléchargez la version pour jouer sur papier

Créez votre propre jeu gratuite à partir de notre créateur de jeu
Affrontez vos amis pour voir qui obtient le meilleur score dans ce jeu

Top Jeux

%
Anonyme
Anonyme
%
%
%
Vous avez dépassé le nombre maximum de jeux que vous pouvez imprimer avec votre Plan actuel.

Pour imprimer autant de jeux que vous le souhaitez, vous avez besoin d’un Plan Académique ou un Plan Commerciel.

Imprimez votre jeu
Empirical ,Molecular Formulae. and Gas Laws and ideal gas equation .Mole quantities of gases, Molar Volume at s.t.p. and r.t.p. Experimental determination of the relative (lowersixth science chemistry new))
 

Empirical ,Molecular Formulae. and Gas Laws and ideal gas equation .Mole quantities of gases, Molar Volume at s.t.p. and r.t.p. Experimental determination of the relative (lowersixth science chemistry new))Version en ligne

Test your knowledge on chemical formulas!

par YAKILI LMS
1

The empirical formula can be determined without any experimental data.

2

The molecular formula is always a whole-number multiple of the empirical formula.

3

The empirical formula shows the simplest ratio of elements in a compound.

4

The empirical formula always contains the same number of atoms as the molecular formula.

5

Molecular formulas are only used for organic compounds.

6

Molecular formula indicates the actual number of atoms in a molecule.

7

To find the empirical formula, divide the molar masses of each element by their respective mole ratios.

8

If a compound has an empirical formula of CH₂ and a molar mass of 84 g/mol, its molecular formula is C₄H₈.

9

The empirical formula of glucose is CH₂O, which is also its molecular formula.

10

A compound with an empirical formula of H₂O₂ has a molecular formula of H₂O.

11

Elemental analysis provides data to calculate the molecular formula.

12

The ratio of elements in a compound can be used to find its molecular formula.

13

Mass spectrometry can help determine the molecular formula of a compound.

14

Using the molar mass of the compound is a common method to determine the molecular formula.

15

Using the melting point of a compound is an effective way to determine the molecular formula.

16

Calculating the boiling point of a compound is a reliable method to find its molecular formula.

17

Infrared spectroscopy alone can provide the exact molecular formula.

18

Determining the color of a substance helps in calculating its molecular formula.

19

The density of a liquid can directly give the molecular formula of a substance.

20

The empirical formula can be used to find the molecular formula if the molar mass is known.

21

Hydrogen content is found by measuring water vapor after combustion.

22

In combustion analysis, carbon is measured by analyzing CO2 produced.

23

Oxygen content is determined by analyzing the amount of O2 consumed during combustion.

24

Combustion analysis is commonly used in organic chemistry.

25

The empirical formula represents the simplest whole-number ratio of elements.

26

Combustion analysis can directly measure the molecular weight of a compound.

27

Combustion analysis is only used for inorganic compounds.

28

The empirical formula always provides the exact molecular structure.

29

The process of combustion analysis involves dissolving the compound in water.

30

Combustion analysis can determine the empirical formula of a compound.

31

The molar volume of gases is the same for all gases at the same temperature and pressure.

32

The mole is only used to measure liquids and solids.

33

One mole of any gas occupies 22.4 liters at standard temperature and pressure.

34

At STP, 1 mole of gas has a volume of 22.4 liters.

35

The molar volume of gases varies significantly between different gases at the same temperature and pressure.

36

One mole of gas occupies 24 liters at standard temperature and pressure.

37

At STP, 1 mole of gas has a volume of 20 liters.

38

One mole of gas contains approximately 6.022 x 10^23 particles.

39

One mole of gas contains approximately 3.014 x 10^23 particles.

40

The mole is a unit used to measure the amount of substance.

41

Gas laws only apply to gases at extremely high pressures.

42

Boyle's Law states that pressure and volume are inversely proportional at constant temperature.

43

The ideal gas law combines Boyle's, Charles's, and Gay-Lussac's laws.

44

Gay-Lussac's Law states that pressure decreases as temperature increases at constant volume.

45

Boyle's Law applies when temperature and amount of gas are changing.

46

Charles's Law is valid only at very low temperatures.

47

Gay-Lussac's Law relates pressure and temperature at constant volume.

48

Charles's Law explains that volume increases with temperature when pressure is constant.

49

Gas particles move faster when temperature increases.

50

The ideal gas law does not consider the amount of gas present.

Voulez-vous vraiment quitter la page ?

En quittant la page, vous perdrez la progression du jeu.