Physics, asked by khushbooh005, 5 months ago

draw a ray diagram for the image formation by the concave mirror and the object is placed between focus and centre of curvature​

Answers

Answered by divyanshu3982
2

Answer:

When the object is placed between centre of curvature and principal focus of a concave mirror the image formed is beyond C as shown in the figure and it is real, inverted and magnified.

Answered by hotcupid16
54

ANSWER :-

\setlength{\unitlength}{20} \begin{picture}(10,10) \qbezier(7,6)(8,3)(7,1) \put(1,3.5){\line(1,0){6.5}} \put(1,3.5){\line(1,0){6.5}}\put(4.5,3.5){\vector(0,1){1}}\put(4.5,4.5){\vector(1,0){1}}\put(4.5,4.5){\line(1,0){2.9}}\put(4.5,4.5){\line(1, - 1){2.8}}\put(7.4,4.5){\line( - 2, - 1){6.5}}\put(4.5,4.5){\vector(1, - 1){0.7}}\put(4.5,4.5){\vector(1, - 1){2}}\put(7.4,4.5){\vector( - 2, - 1){1}}\put(7.4,4.5){\vector( - 2, - 1){4}}\put(7.3,1.7){\line( - 1,0){5.5}}\put(1.8,3.5){\vector(0, - 1){1.8}}\put(7.3,1.7){\vector( - 1,0){3}}\put(4.4,3.1){$ \tt B $ }\put(3,3.1){$ \tt C $ }\put(1.75,3.75){$ \tt B' $ }\put(1.75,1.2){$ \tt A' $ }\put(5.25,3.1){$ \tt F $ }\put(4.4,4.75){$ \tt A $ }\put(7.5,4.7){$ \tt L $ }\put(7.7,3.25){$ \tt P $ }\put(7.4,1.5){$ \tt N $ }\put(3.125,3.5){\circle*{0.15}}\put(5.4,3.5){\circle*{0.15}}\put(7.1,5.7){\line(1, - 1){0.5}}\put(7.3,4.8){\line(1, - 1){0.5}}\put(7.4,4.1){\line(1, - 1){0.5}}\put(7.1,1.3){\line(1, - 1){0.5}}\put(7.4,2.4){\line(1, - 1){0.5}}\put(7.5,3){\line(1, - 1){0.5}}\end{picture}

 \implies \displaystyle { \bf \red  {{ Nature\:  \: }}}=  \textsf{  Real  inverted} \\  \\  \implies \displaystyle{ \bf \red{{Size}}} \:  =  \textsf{enlarged(bigger  than  object)} \\  \\   \implies \displaystyle { \bf \red  {{ \: Position\: }}} =  \textsf{beyond  the c}

ADDITIONAL INFORMATION :-

➣ centre of curvature :- centre of curvature of spherical mirror is the centre of sphere of which the given mirror is a part .

➣ Principal Axis :- the principal Axis of the spherical mirror is the line joining the pole to the mirror and its centre of curvature .

➣ Focal length :- the distance between the pole and the focus of the mirror is known as the focal length .

➣ Radius of curvature :- the radius of the sphere of the given mirror is a part is known as the radius of curvature of the mirror.

➣ Pole :- this is the mid point of the central point of the section of the sphere used for making the given spherical mirror .

____________________

Note - please See the answer from web to view the proper answer.

Thanks,

Similar questions