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In order for the tooth hole to be clearly visible by the doctor, the mirror used should be able to enlarge the image of the tooth and the image must be upright. c iCw . Instructions: Examine the diagram -> Label the diagram with the terminology. 2538 0 obj <> endobj principle axis and radius of curvature . Therefore, b) is false. 278 0 obj <>stream 245 0 obj <> endobj h�bbd```b``�"f�HF�r D2��ɓ`�XeX�Xd.�d�ۀ�>`�,�f�M��B� r�W ɘ%$�/�``������L�?#�7� �FF sign conventions . Geometrical Optics In the study of how light behaves, it is useful to use “light rays” and the fact that light travels in straight lines. • A convex mirror can only produce a virtual image since all reflected rays will diverge. ;�r��� �����rɡ ɻ'P�9�c/W`����\�ʞ�9\uI\¤�1�'�L��s'��r�d/7N����C���븈[���mt� ��$��;{��Ι�d'm_-eO�f'}�(W��gE��l��}���UX�����V=|�&��+�W�kr�����m�X��]��u} ϞMN��d�N! endstream endobj 2542 0 obj <>stream The mirror used is a concave mirror or a convex mirror? endstream endobj startxref Concave and Convex Mirror -> Terminology C F P Principal Axis Reflect on the terminology used when f referring to concave and convex mirrors and the images they form. ��H �D %PDF-1.6 %���� Concave and Convex Mirror Worksheet Concave Diagram - Sketch SILTthe Image using 2 Characteristic Rays or Convex . H��V]o�J}���G@���������$�����ns;���{f։ In the study of how light behaves, it is useful to use “light rays” ” and the fact that light travels in straight lines. Problem Solving . Clicker problem • In order for a real object to create a real, inverted enlarged image, a) we must use a concave mirror. ?KaP�c+`_ਧ�`� ��c�k��k���x���K��q�e�= ^�,*�� ���ts�;f�8�E���*��1�����ؔOIW��I=&Oؔ�z����,@ƃP���k`��f3�������B4IeH6�!�U�����A��r���yU����%��pد�YqدF��6��`&�|1bS @.�8 �`�� "����v!�$;@���`�����;ˁb iHdy9*D��z�5pD�8�N5k� b) we must use a convex mirror. endstream endobj startxref endstream endobj 2539 0 obj <>/Metadata 168 0 R/OCProperties<>/OCGs[2556 0 R]>>/Outlines 212 0 R/PageLabels 2530 0 R/PageLayout/SinglePage/Pages 2532 0 R/PieceInfo<>>>/StructTreeRoot 277 0 R/Type/Catalog>> endobj 2540 0 obj <>/ExtGState<>/Font<>/ProcSet[/PDF/Text/ImageC/ImageI]/Properties<>/XObject<>>>/Rotate 90/StructParents 0/Type/Page>> endobj 2541 0 obj <>stream endstream endobj 2543 0 obj <>stream concave and convex mirrors . s bchFd . from plane, convex, and concave concave mirrors. h�b```b````a``�ed@ AV6�8�ޭ����‚���@ 5�J�T� �FEZ�q�mW�*���� h�b```���,)� ��ea��``lxe��ڠ���ê�T�&e��e� �S���8Y-TD00Htt0{ �����j �10y� ia ��00`.c�̘�XǤ���ɑq5��L*Ll�W������b;?Ј@������l��]@��B �'v The definition cards are available on the next slide. m��ֻ>���*a�l����C�U�n@�U��Y�b^����٘}H�أ똂{��R�����ݲۭ#f�f�ƻ����A�#��N�E{�{�E�G���*�C:�T&���x6�o������E0�X���%������9�hat��?c���oT$�68�$�͞������'9fq�S&�'"���>���ۯ�Lc���qq$��؇�s9�ؐ��B�T ������`����.b��\�H��52 S�ΘU笰p���q��o� ��z��?�?��D��`)�����j �L��@z9��9>P��a0�iq��i�������J�*F� �*�L c) neither a concave nor a convex mirror can produce this image. %%EOF %PDF-1.5 %���� ray tracing for mirrors (PowerPoint) ⇒ the thin-lens / mirror equation and the magnification equation . Diagram - Sketch the Image using 2 Characteristic Rays Concave orConvex SILT . ض�L�8��A �3,�Xl��l���+M��r�N�� ! ��֑:�[�w���ߋ�@=F�,�GBCT��z8�����qX���H6�K(;��p�9@W�#��OE�e™Cc{0��18;G���#VV��P h)�8H�q���i(6ɣ�j��CJ����S��$����S�?Hn��p}��b*���Z\��!�E"p�n,����ý����,G��x��P�US��|��[h�[2$_ ��:ԕ@�˸h��{^�m�vp��yh6�o�r��x|��z8�ߠ�Ib�K�:J Q̈́�$C��4N`�| ����fm�B�/b�w�>┸���-G7?�>[\��AQm����A�f��i�Y�l�몲#$~C�D$,Q�����u� endstream endobj 246 0 obj <. 0 lots of examples . Try to explain the terminology to your partner before looking at the definition cards. h�bbd``b`���@�i�( �l �*�`�bmO@���>1$�$��@�i@�x#g%����������@� P�* Convex mirror always produces inverted images and the size of the image is smaller than the size of the object. h�E_��iST�0��P"٘�"��]^�-�}{(��>�ʹ���zYv}�}��ӏC��Ci�{?�p�]z���!Q������o%ǎ��K'�H�62I��l�'o�L����,b,�vH��$�`�C�!���v�Z^�1��H;E�Y�1���Ah��O�� �0Dr7`x/B�;q"�A�Kz��胙�EJ�l���=:a��"��W�up��oG&��d�]� ���� 0 H��VKn1ۿSx]`T��{��G�n�E���. 2555 0 obj <>/Filter/FlateDecode/ID[<0A05574E8746385F9BD01C4FDF7C82A1><7DCF6437B7D71A47BD204A89E1511228>]/Index[2538 26]/Info 2537 0 R/Length 85/Prev 429854/Root 2539 0 R/Size 2564/Type/XRef/W[1 2 1]>>stream hތS�n�0�=���E�$K�k��: ȃ�h�1_[ڿ)�ٰ �lH�0�5G O@�-����W3��Vt��9\���)����~�}�c bQ�:4V��KD��j��-���g��(�ȇ�CxTUp��U�C��5����� ��t\����ab`�x��h{� ��{�J8c����](�c$V*�6��]V��t�6q6k��7�1�q�傉I�K֥����j�m��� 266 0 obj <>/Filter/FlateDecode/ID[<7071AA0590C52C4D8E3676C49974D360><00F82B8A3A5C3E46862275B8AD7071D4>]/Index[245 34]/Info 244 0 R/Length 104/Prev 157966/Root 246 0 R/Size 279/Type/XRef/W[1 3 1]>>stream 2563 0 obj <>stream %%EOF ( PowerPoint ) ⇒ the thin-lens / mirror equation and the magnification equation 0! 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