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:

THERMODYNAMICS (RADIATION)

Test

Jugadas 9

Sobre esta actividad

FINAL EXAMINATION

Creada por

Estados Unidos

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
THERMODYNAMICS (RADIATION)
 

THERMODYNAMICS (RADIATION)Versión en línea

FINAL EXAMINATION

por Grace Balahay
1

is transported through electromagnetic mechanism, which allows energy emission through regions of space, similar in nature as light and radio waves.

Written answer

2

it is the energy flow impinging per unit time and unit area at the interface, denoted by I.

Written answer

3

it is the energy leaving the interface back into the medium 1.

Written answer

4

the ratio of the reflected to the incident radiation

Written answer

5

it is the energy absorbed while the in medium 2.

Written answer

6

the ratio of the absorbed to the incident radiation

Written answer

7

it is the radiant energy leaving medium 2 somewhere through its surfaces.

Written answer

8

the ratio of the transmitted to the incident radation

Written answer

9

it is the radiative energy flux that travel through the interface into medium 1 in a direction opposite the incident radiation

Written answer

10

it is the total radiant energy leaving a unit of surface area per unit time, emitted and reflected energy.

Written answer

11

it is the total radiation energy incident upon a unit of surface area per unit time

Written answer

12

it is the total emitted thermal radiation leaving a unit of black body surface area per unit of time, reflected energy not included

Written answer

13

not constant property but usually it varies with the temperature and wavelength of the radiating body

Written answer

14

absorptivity and the emissivity of a body are the same when the body is in thermal equilibrium with its surroundings

Written answer

15

states that the amount of radiation from a block body is proportional to the fourth power of the absolute temperature

Written answer

16

indicates the maximum level in the planck's distribution of thermal radiation

Written answer

17

is defined as the fraction of thermal radiation that leaves a surface and intercepted by another surface

Written answer

18

also called as gray body is technically defined as that the monochromatic emissivity ελ of the body is independent of wavelength.

Written answer

19

is the ratio of the monochromatic emissive powers of a body to the blackbody at certain wavelength and temperature.

Written answer

¿Estás seguro que quieres abandonar la página?

Al abandonar la página perderás el progreso del juego.