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:

Differential Equations (uppersixth science new)

Sí o No

Jugadas 0

Sobre esta actividad

In this game, players will determine whether the given nouns are related to the concept of differential equations. Answer ✅ if the noun is related, and ❌ if it is not. Test your knowledge of mathematics and its terminology!

Creada por

Camerún

Descarga la versión para jugar en papel

Crea tu propio juego gratis desde nuestro creador de juegos
Compite contra tus amigos para ver quien consigue la mejor puntuación en esta actividad

Top juegos

%
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
Differential Equations (uppersixth science new)
 

Differential Equations (uppersixth science new)Versión en línea

In this game, players will determine whether the given nouns are related to the concept of differential equations. Answer ✅ if the noun is related, and ❌ if it is not. Test your knowledge of mathematics and its terminology!

por YAKILI LMS
1

probability

2

integral

3

graph

4

statistic

5

algebra

6

calculus

7

variable

8

solution

9

function

10

derivative

11

Separable equations can be solved by rearranging terms to isolate dy and dx.

12

A separable equation can only be solved using numerical methods.

13

The slope field is a graphical representation of the solutions of a differential equation.

14

First order differential equations can be linear or nonlinear.

15

The general solution of a separable differential equation involves integration.

16

Differential equations have no applications in physics.

17

The term 'differential' refers to the sum of two functions.

18

An initial condition can be applied to find a particular solution of a differential equation.

19

Separable equations are only applicable in pure mathematics.

20

The term 'differential' refers to the derivative of a function.

21

Separable equations cannot be solved by integration.

22

All differential equations are second order.

23

A separable equation can be expressed as the product of a function of x and a function of y.

24

The method of separation of variables is commonly used to solve separable equations.

25

First order differential equations do not exist in real-world applications.

26

First order differential equations cannot have initial conditions.

27

The method of separation of variables is outdated and rarely used.

28

First order differential equations can model real-world phenomena like population growth.

29

The solution to a separable equation is always a polynomial function.

30

Integration constants are often included in the solution of differential equations.

31

Homogenous equations require complex numbers for solutions.

32

Homogenous equations only apply to second order differential equations.

33

You cannot graph the solutions of homogenous equations.

34

Homogenous equations are unrelated to calculus.

35

Homogenous equations are not used in physics.

36

Homogenous equations can be represented in the form dy/dx = f(y/x).

37

A characteristic equation can be derived from a homogenous differential equation.

38

The method of separation of variables can apply to homogenous equations.

39

Homogenous equations are a subset of first order differential equations.

40

All differential equations are homogenous.

41

Homogenous equations cannot be solved analytically.

42

A first order differential equation can be homogenous.

43

Homogenous equations can be solved using substitution methods.

44

All first order equations are linear and homogenous.

45

The concept of homogeneity is crucial in understanding differential equations.

46

The term 'linear' is often associated with homogenous equations.

47

The general solution of a homogenous equation involves integration.

48

Homogenous differential equations have solutions that pass through the origin.

49

The solution to a homogenous equation is always a constant.

50

The term 'homogenous' refers to polynomial equations only.

¿Estás seguro que quieres abandonar la página?

Al abandonar la página perderás el progreso del juego.