Who wants to be a millionaire - Template by SlideLizard.pptx

paoloMacarayo1 311 views 42 slides Feb 02, 2023
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About This Presentation

review for mirrors


Slide Content

D: Ultraviolet Rays C: X-Rays B: Gama Rays A: Gamma Rays The electromagnetic waves carries the highest energy $ 500

D: Ultraviolet Rays C: X-rays B: Gama Rays A: Gamma Rays The electromagnetic waves carries the highest energy $ 500

$ 1 MILLION $ 500,000 $ 250,000 $ 100,000 $ 50,000 $ 30,000 $ 20,000 $ 10,000 $ 7,000 $ 5,000 $ 3,000 $ 2,000 $ 1,000 $ 500 14 13 12 11 10 9 8 7 6 5 4 3 2 1

D: Frequency C: Aptitude B: Wavelength A: Amplitude The following are properties of waves EXCEPT; $ 1000

D: Frequency C: Aptitude B: Wavelength A: Amplitude The following are properties of waves EXCEPT; $ 1000

$ 1 MILLION $ 500,000 $ 250,000 $ 100,000 $ 50,000 $ 30,000 $ 20,000 $ 10,000 $ 7,000 $ 5,000 $ 3,000 $ 2,000 $ 1,000 $ 500 14 13 12 11 10 9 8 7 6 5 4 3 2 1

D: Red C: Orange B: Indigo A: Violet Which among the visible light carries the lowest energy? $ 2000

D: Red C: Orange B: Indigo A: Violet Which among the visible light carries the lowest energy? $ 2000

$ 1 MILLION $ 500,000 $ 250,000 $ 100,000 $ 50,000 $ 30,000 $ 20,000 $ 10,000 $ 7,000 $ 5,000 $ 3,000 $ 2,000 $ 1,000 $ 500 14 13 12 11 10 9 8 7 6 5 4 3 2 1

D: Visible Light C: UV Rays B: Infrared A: Radio waves The EM Waves that is used mostly in communication $ 3000

D: Visible Light C: UV Rays B: Infrared A: Radio waves The EM Waves that is used mostly in communication $ 3000

$ 1 MILLION $ 500,000 $ 250,000 $ 100,000 $ 50,000 $ 30,000 $ 20,000 $ 10,000 $ 7,000 $ 5,000 $ 3,000 $ 2,000 $ 1,000 $ 500 14 13 12 11 10 9 8 7 6 5 4 3 2 1

D: Visible Light C: Ultraviolet Rays B: Microwaves A: Radio waves The following are example of non- ionizing radiation EXCEPT: $ 5000

D: Visible Light C: Ultraviolet Rays B: Microwaves A: Radio waves The following are example of non- ionizing radiation EXCEPT: $ 5000

$ 1 MILLION $ 500,000 $ 250,000 $ 100,000 $ 50,000 $ 30,000 $ 20,000 $ 10,000 $ 7,000 $ 5,000 $ 3,000 $ 2,000 $ 1,000 $ 500 14 13 12 11 10 9 8 7 6 5 4 3 2 1

D: Hans Christian Oersted C: James Clerk Maxwell B: Heinrich Hertz A: Michael Faraday He prove the existence of EM Wave! $ 7000

D: Hans Christian Oersted C: James Clerk Maxwell B: Heinrich Hertz A: Michael Faraday He prove the existence of EM Wave! $ 7000

$ 1 MILLION $ 500,000 $ 250,000 $ 100,000 $ 50,000 $ 30,000 $ 20,000 $ 10,000 $ 7,000 $ 5,000 $ 3,000 $ 2,000 $ 1,000 $ 500 14 13 12 11 10 9 8 7 6 5 4 3 2 1

D: 5 m C: 5 cm B: 2 cm A: 2 m A 5 cm object is placed 3m in front of plane mirror. How high the image be? $ 10,000

D: 5 m C: 5 cm B: 2 cm A: 2 m A 5 cm object is placed 3m in front of plane mirror. How high the image be? $ 10,000

$ 1 MILLION $ 500,000 $ 250,000 $ 100,000 $ 50,000 $ 30,000 $ 20,000 $ 10,000 $ 7,000 $ 5,000 $ 3,000 $ 2,000 $ 1,000 $ 500 14 13 12 11 10 9 8 7 6 5 4 3 2 1

D: None of the above C: Convex mirror B: Concave Mirror A: Plane mirror What kind of mirror is used by department stores to give a wider area and smaller image of the shoppers? $ 20,000

D: None of the above C: Convex mirror B: Concave Mirror A: Plane mirror What kind of mirror is used by department stores to give a wider area and smaller image of the shoppers? $ 20,000

$ 1 MILLION $ 500,000 $ 250,000 $ 100,000 $ 50,000 $ 30,000 $ 20,000 $ 10,000 $ 7,000 $ 5,000 $ 3,000 $ 2,000 $ 1,000 $ 500 14 13 12 11 10 9 8 7 6 5 4 3 2 1

D: None of the above C: Convex mirror B: Concave Mirror A: Plane mirror What kind of mirror is used by dentists to see teeth and other areas in the mouth? $ 30,000

D: None of the above C: Convex mirror B: A: Plane mirror Concave Mirror What kind of mirror is used by dentists to see teeth and other areas in the mouth? $ 30,000

$ 1 MILLION $ 500,000 $ 250,000 $ 100,000 $ 50,000 $ 30,000 $ 20,000 $ 10,000 $ 7,000 $ 5,000 $ 3,000 $ 2,000 $ 1,000 $ 500 14 13 12 11 10 9 8 7 6 5 4 3 2 1

D: Virtual and inverted C: Real and inverted B: Real and upright A: Virtual and upright A convex mirror will always produce an image that is $ 50,000

D: Virtual and inverted C: Real and inverted B: Real and upright A: Virtual and upright A convex mirror will always produce an image that is $ 50,000

$ 1 MILLION $ 500,000 $ 250,000 $ 100,000 $ 50,000 $ 30,000 $ 20,000 $ 10,000 $ 7,000 $ 5,000 $ 3,000 $ 2,000 $ 1,000 $ 500 14 13 12 11 10 9 8 7 6 5 4 3 2 1

D: Converging Lens C: Magic Lens B: Diverging Lens A: Transforming lens Convex lens is also called $ 100,000

D: Converging Lens C: Magic Lens B: Diverging Lens A: Transforming lens Convex lens is also called $ 100,000

$ 1 MILLION $ 500,000 $ 250,000 $ 100,000 $ 50,000 $ 30,000 $ 20,000 $ 10,000 $ 7,000 $ 5,000 $ 3,000 $ 2,000 $ 1,000 $ 500 14 13 12 11 10 9 8 7 6 5 4 3 2 1

D: Electrical:chemical C: Electrical: mechanical B: Mechanical: electrical A: Chemical:mechanical An electric motor converts _______ to _______ energy $ 250,000

D: Electrical:chemical C: Electrical: mechanical B: Mechanical: electrical A: Chemical:mechanical An electric motor converts _______ to _______ energy $ 250,000

$ 1 MILLION $ 500,000 $ 250,000 $ 100,000 $ 50,000 $ 30,000 $ 20,000 $ 10,000 $ 7,000 $ 5,000 $ 3,000 $ 2,000 $ 1,000 $ 500 14 13 12 11 10 9 8 7 6 5 4 3 2 1

D: Magic Mirror C: Concave Mirror B: Convex Mirror A: Plane Mirror What kind of mirror used if a person’s image appeared to be real, inverted, and larger than him. $ 500,000

D: Magic Mirror C: Concave Mirror B: Convex Mirror A: Plane Mirror What kind of mirror used if a person’s image appeared to be real, inverted, and larger than him. $ 500,000

$ 1 MILLION $ 500,000 $ 250,000 $ 100,000 $ 50,000 $ 30,000 $ 20,000 $ 10,000 $ 7,000 $ 5,000 $ 3,000 $ 2,000 $ 1,000 $ 500 14 13 12 11 10 9 8 7 6 5 4 3 2 1

D: Inverted and enlarged C: Inverted and reduced B: Upright and enlarged A: Upright and reduced How will the image appear if the object is outside the focal point of a diverging lens? $ 1 million

D: Inverted and enlarged C: Inverted and reduced B: Upright and enlarged A: Upright and reduced How will the image appear if the object is outside the focal point of a diverging lens? $ 1 million
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