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CAPACITORS - GOOD VIDEOS

 

 CAPACITORS - GOOD VIDEOS

 

 https://www.youtube.com/watch?v=zYRx6Zub3cA
Capacitors Are Gaps! How Does That Work?!

https://www.youtube.com/watch?v=SDtAh9IwG-I
How big is a visible photon?

https://www.youtube.com/watch?v=ozeYaikI11g
Transmission Lines - Signal Transmission and Reflection


https://www.youtube.com/watch?v=rbCXKhhzBN0
How CAPACITORS Work (ElectroBOOM101-006)


https://www.youtube.com/watch?v=ySx84Ca7BFQ
Magic of Magnetism & Inductors (ElectroBOOM101-007)


https://www.youtube.com/watch?v=rkntp3_cZl4
Dielectrics in capacitors | Circuits | Physics | Khan Academy


https://www.youtube.com/watch?v=qyM6hwAyiF4
A simple demo: an electric dipole in a capacitor


https://www.youtube.com/watch?v=Mq-PF1vo9QA
Resonance Circuits: LC Inductor-Capacitor Resonating Circuits


https://www.youtube.com/watch?v=L6cgSxpGmDo
How a Capacitor Works - Capacitor Physics and Applications


https://www.youtube.com/watch?v=BIPi0vXdssE
Capacitors in Series and Parallel


https://www.youtube.com/watch?v=5hFC9ugTGLs
How Capacitors Work


https://www.youtube.com/watch?v=hrpPKCDLRN0
Semiconductors - Physics inside Transistors and Diodes


https://www.youtube.com/watch?v=agujzHdvtjc
Transformers - Electric Power transmission


https://www.youtube.com/watch?v=ukBFPrXiKWA
Inductors and Inductance


https://www.youtube.com/watch?v=f_MZNsEqyQw&t=511s
Capacitors and Capacitance: Capacitor physics and circuit operation


RATIO AND PROPORTION - PRACTICE QUESTIONS WITH SOLUTIONS - WORKSHEET PDF

 RATIO AND PROPORTION - PRACTICE QUESTIONS WITH SOLUTIONS - WORKSHEET PDF

 

RATIO AND PROPORTION

DIRECT/INDIRECT

Pg140

# Two numbers are in the ratio 6:5. One of the numbers is 0.03.

Work out the two possible values for the other number.

 

# The sides of a quadrilateral are in the ratio 2:3:5:8.

The difference between the shortest side and the longest side is 7.5cm. Work out the perimeter of the quadrilateral.

 

# In a right-angled triangle, the difference between two of the angles is 20°.

a Work out the size of the angles in the triangle.

b How many solutions are there to part a? Explain why.

c For each solution to part a, write the ratio of the angles from smallest to biggest in its simplest form.

 

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Pg143

#  In a factory, 4 people can pack 20 boxes in 1 hour.

How long does it take 3 people to pack 20 boxes? Give your answer in hours and minutes.

 

# It takes 8 people 5 days to dig a hole.

How long does it take 10 people to dig the hole?

 

Pg144

#  The values of X and Y in the table are in direct proportion. Work out the missing numbers A, B, C and D.

 

# Julio reads that the length of an adult's head and the length of their body are in direct proportion.

 Julio's dad has a head length of 24 cm and a body length of 156 cm.

Using these measurements, work out

 a the body length of an adult with a head length of 26cm

b the total height of an adult with a body length of 143 cm.

 

# It takes 6 people 20 days to paint 4 houses.

a How many houses can 3 people paint in 20 days?

b How many people does it take to paint 4 houses in 10 days?

c How many days does it take 8 people to paint 4 houses?

d Copy and complete the table.

 

 

 

 

 

 

X RAY - GOOD YOUTUBE DEMOS

 X RAY - GOOD YOUTUBE DEMOS

 



X Ray Production Animation


 

PHOTOELECTRIC EFFECT NUMERICALS - CHAPTER 14 - DUAL NATURE OF RADIATION AND MATTER SOLUTIONS

 

 PHOTOELECTRIC EFFECT NUMERICALS - CHAPTER 14 - DUAL NATURE OF RADIATION AND MATTER SOLUTIONS

 

7. What will be the energy of each photon in monochromatic light of frequency 5x 10^14 Hz?

8. Observations from an experiment on photoelectric effect for the stopping potential by varying the incident frequency were plotted. The slope of the linear curve was found to be approximately 4.1x l0^-15 V s. Given that
 charge of each electron is 1.6*10^-19 C - find the Planck's constant h.

 9. The threshold wavelength of tungsten is 2.76 x 10^-5 cm. (a) Explain why no photoelectrons are emitted when the wavelength is more than 2.76 x 10^-5 cm. (b) What will be the maximum kinetic energy of electrons ejected in each of the following cases (i) if ultraviolet radiation of wavelength X = 1.80 x 10^-5 cm and (ii) radiation of frequency 4x 10^15 Hz is made incident on the tungsten surface. [Ans: 2.40 eV, 12.07 eV]

 10. Photocurrent recorded in the micro ammeter in an experimental set-up of photoelectric effect vanishes when the retarding potential is more than 0.8 V if the wavelength of incident radiation is 4950 A. If the source of incident radiation is changed, the stopping potential turns out to be 1.2 V. Find the work function of the cathode material and the wavelength of the second source. [Ans: 1.71 eV, 4270 A] 

II. Radiation of wavelength 4500 A is incident on a metal having work function 2.0 eV. Due to the presence of a magnetic field B, the most energetic photoelectrons emitted in a direction perpendicular to the field move along a circular path of radius 20 cm. What is the value of the magnetic field B? [Ans. : 1.47 x 104 T]

  12. Given the following data for incident wavelength and the stopping potential obtained from an experiment on photoelectric effect, estimate the value of Planck's constant and the work function of the cathode material. What is the threshold frequency and corresponding wavelength? What is the most likely metal used for emitter? 

13. Calculate the wavelength associated with an electron, its momentum and speed (a) when it is accelerated through a potential of 54 V, [Ans: 0.167 nm, 39.70 x10.23 kg m s•', 4.36 x106 m s•l] (b) when it is moving with kinetic energy of 150 eV. [Ans: 0.100 nm, 66.13x10.23 kg m s•1, 7.26 x106 m ] 

14. The de Broglie wavelengths associated with an electron and a proton are same. What will be the ratio of(i) their momenta (ii) their kinetic energies? [Am: 1,1836] 

15. Two particles have the same de Broglie wavelength and one is moving four times as fast as the other. If the slower particle is an a-particle, what are the possibilities for the other particle? [Ans: proton or neutron] 

16. What is the speed of a proton having de Broglie wavelength of 0.08 A? [Ans: 49.57 x 10^3 m 

17. In nuclear reactors, neutrons travel with energies of 5 x 10'21 J. Find their speed and wavelength. [Ans: 2.45 x 103 m s.', 1.62 A] 

18. Find the ratio of the de Broglie wavelengths of an electron and a proton when both are moving with the (a) same speed, (b) same energy and (c) same momentum? State which of the two will have the longer wavelength in each case? [Ans: (a) 1836, (b) electron; 42.85, electron; (c) 1, equal] 




PHOTOELECTRIC EFFECT NUMERICALS _ NCERT CLASS 12 SOLUTIONS _CHAPTER 11

 PHOTOELECTRIC EFFECT NUMERICALS _ NCERT CLASS 12 SOLUTIONS _CHAPTER 11

 




11.6 In an experiment on photoelectric effect, the slope of the cut-off voltage versus frequency of incident light is found to be 4.12 × 10^–15 V s. Calculate the value of Planck’s constant. 
 
 11.8 The threshold frequency for a certain metal is 3.3 × 10^14 Hz. If light of frequency 8.2 × 10^14 Hz is incident on the metal, predict the cutoff voltage for the photoelectric emission. 
 
 11.9 The work function for a certain metal is 4.2 eV. Will this metal give photoelectric emission for incident radiation of wavelength 330 nm? 11.10 Light of frequency 7.21 × 10^14 Hz is incident on a metal surface. Electrons with a maximum speed of 6.0 × 10^5 m/s are ejected from the surface. What is the threshold frequency for photoemission of electrons? 
 
 11.11 Light of wavelength 488 nm is produced by an argon laser which is used in the photoelectric effect. When light from this spectral line is incident on the emitter, the stopping (cut-off) potential of photoelectrons is 0.38 V. Find the work function of the material from which the emitter is made.