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Home Tuition Physics, Nuclear Physics, Karachi, 03362023302,Edexcel physics, IGCSE
NUCLEAR PHYSICS: Chapter 19
Branch of physics that deals with the study of the nucleus is called nuclear physics.
THE NECLEUS:
The central part of an atom having positive charge is called nucleus. It contains protons
and neutrons.
PROTON:
Proton is a positively charged particle present inside the nucleus. Its mass is 91.67x10-27 kg
and its charge is +1.6x1019 kg.
NEUTRON:
Neutron is a neutral particle present inside the nucleus. Its mass is 1.67x1027 kg.
ELECTRON:
Electron is a negatively charged particle revolves around the nucleus in the orbits. Its
mass is 9.1x10-31 kg and its charge is 1.6x10-19 C.
MASS NUMBER:
The total number of protons and neutrons present inside the nucleus is called mass number.
OR
The total number of neutrons present inside the nucleus is called mass number.
i.e. A = Z + N
A = mass number, Z = protons/electrons number, N = neutron number.
CHARGE NUMBER / ATOMIC NUMBER:
The number of protons or electrons present in the atom is called atomic number or
charge number. It is denoted by Z.
NEUTRON NUMBER:
The number of neutrons present in the nucleus is called neutron number. It is denoted
by N
Mathematically it is given as:
N = A – Z
Where N = neutron number, A = mass number.
NEUTRAL RADIOACTIVITY:
Definition:
The spontaneous emission of invisible rays from elements having atomic number
greater than 82 is called radioactivity. The invisible rays are called radioactive rays and
the elements which emit such rays are called radioactive element.
Examples:
Radioactive elements are polonium (z = 84), Radium (z = 88), thorium (z=90) , uranium
(z=92) etc. As the phenomenon is natural, therefore it is termed as natural
radioactivity. It was discovered by Henry Becquerel.
ALPHA, BETA AND GAMMA RAYS:
(Ruther ford’s experiment.)
Ruther ford’s performed an experiment to study the radiations emitted by radioactive
element. A radioactive element for example radium is placed in a cavity made in the
block of the lead. The radiation coming out of the whole in the cavity are allowed to
enter into a vacuum chamber in which magnetic field is applied perpendicular to the
plane of the paper and having direction toward. The charged radiations are deflected
by the magnetic field. Three images are produced on the photographic plate which is
placed in the vacuum chamber straight above the radiations bending towards left are
positively charged radiations and are called Apha () rays. The radiations bending
towards right are negatively charged and are called rays. The under acted radiations
are neutral.
PROPERTIES OF RADIOACTIVE RAYS:
1. Alpha rays:
i. The are positively charged radiations.
ii. They consist of positively charged helium nuclei, called particle (2He4)
iii. Each particle consists of two protons and two neutrons.
iv. Mass of alpha particle is equal to mass of helium nuclei.
v. Charge of apha particle is equal to +2e.
vi. The speed of alpha particle is almost 100 times lesser than the speed of Light.
vii. rays have low penetrating power.
viii. rays have high ioizing power.
ix. rays produce fluorescence in certain substance.
x. rays show relfection in electromagnetic field.
2. Beta rays:
i. They are negatively charged particles.
ii. They consist of negatively charged particle called electron.
iii. Mass of beta particle is equal to mass of electron.
iv. Charge of each particle is equal to –1e
v. rays (electrons) are emitted than the nucleus.
vi. The velocity of a particle is almost 10 times lesser than the velocity of
Light. (Range: 19x109 m/s to 27x107 m/s)
vii. rays effect th photographic plate.
viii. rays have low ionization power.
ix. rays have high ionization power.
x. rays produce fluorescence.
3. Gamma rays:
i. γ – rays are neutral ionizations.
ii. Y – rays are electromagnetic waves like x-rays.
iii. Y – rays have wave length shorter than the wave length of x – rays.
iv. Y – rays have frequency greater than the frequency of x – rays.
v. Y – rays have negligible ionization power.
vi. Y – rays have very high penetrating power.
vii. Y – rays producer feeble flourensence.
viii. Y – rays eject electrons when fall on metal.
ix. Y – rays travel with the speed of light.
HALF LIFE OF AN ELEMENT:
Definition:
The deviation in which original number of atom becomes half is called half life of an element. OR
The time in which half of the given number of radioactive atoms, decay into daughter,
is called half life of an element.
Mathematical form:
Mathematically, it is given as:
T1/2 = 0.693/
Where T1/2 = half life = decay constant
When an element decays by or emission if is converted into new element. The new
element is called daughter element and the original element is called parent element.
RADIOACTIVE ISOTOPES:
Definition:
“Element having same atomic number but different atomic masses are called isotopes.”
If one isotope is unstable and emits radioactive rays is called radio isotopes.
OR
“Elements having same proton number but different neutron number and emit , or
rays are called radioactive isotope.”
EXAMPLE:
I. Carbon has two isotopes 6C12 and 6C14 . 6C14 is unstable are emit rays.
Therefore it is considered as a radioactive isotope.
II. Hydrogen has three isotopes, 1H1 , 1H2 and 1H3 .
1H3 is radioactive isotopes and emits out particle.
EINSTEIN ENERGY MASS RELATION:
According to the special theory of relativity, “Energy and mass are interconvert able
mass can be converted into energy and energy can be converted into mass.”
Einstein energy mass radiation is given as
E = mC2
Where, E = energy, m = mass, C = velocity of light.
NUCLEAR REACTION:
DEFINITION:
A reaction which produce certain changes to the nucleus is called nuclear reaction.
NUCLEAR FISSION:
DEFINITION:
The process in which heavy decomposed into lighter nuclei is called nuclear fission or
the phenomenon in which heavy nucleus is broken into two middle order nuclei with
the release of energy is called nuclear fission.
EXAMPLE:
The nuclear fission is given as
92U235 + 0 n1 36Ba144 + 36Kr90 + 3 0n1 + Energy
The energy is released because mass on the right hand is less than the mass on the left
hand side. The difference in mass (loss of mass) is converted into energy.
NUCLEAR CHAIN REACTION:
DEFINITION:
A reaction which once starts repeat itself in the same manner is called nuclear chains reaction.
EXAMPLE:
When 92U235 is bombarded by slow reaction, fission is produced. The three neutrons
released in this fission can be employed to produce fission in three other nuclei of
92U235 and a chain reaction can be developed as shown in figure. If this process is
allowed to continue, then more and more nuclei undergo fission and larger amount of
energy is released. This is called nuclear chain reaction.
TYPES OF CHAIN REACTION:
There are two types of chain reaction:
i. Controlled chain reaction.
ii. Uncontrolled chain reaction.
NUCLEAR REACTORS:
DEFINITION:
A device which is used to perform nuclear chain reaction in controlled manner is called
nuclear reactor.
OR
“A system used to obtain controlled amount of head from nuclear fission is called
nuclear reactor.”
The nuclear chain reaction in uranium releases energy in the form of heart. If the chain
reaction is controlled a constant. How of heat is obtained this heat can be used to run
generator for producing electricity.
The fissionable material 92U235 is fission element. The three neutrons released in each
fission are fast moving. These neutrons must be slowed down because only neutrons
produced fission in 92U235 the process of slowing down of neutrons is called
moderation. In the reactor heavy water is such as moderator.
The chain reaction is controlled by using neutron absorbing rods. Two out of the three
neutrons are absorbed by control rods.
The heat produced in the nuclear reactor is carried away by the circulation of
carbondioxide is the core of reactor. It is used to produce steam and this steam is used
to run the generator for producing electricity.
NUCLEAR FUSSION:
DEFINITION:
The phenomenon in which two light nuclei are combined with the release of energy, is
called nuclear fussion or fussion reaction.
OR
“The process in which two lighter nuclei combines together to heavy. Heavy nucleus is
called nuclear fussion.”
EXAMPLE:
1H2 + 1H3 2He+ + 0n1 + energy
1H2 + 1H2 2He4 + energy.
ENERGY OF THE SUN:
Solar energy from the sun is due to the fusion of hydrogen into helium. This fusion is
fossible because the temperature in the sun is about 1.5x106 C. The fusion reaction
that happens in the sun is given as::
1H2 + 1H2 2H4 + energy
THE ATOMIC BOMB:
The atomic bomb is based on nuclear fission. The maximum amount of mass required
to start the nuclear fission is called critical mass. If the mass is slightly greater than the
critical mass, the chain reaction will develop at a faster rate and in a very short time
tremendous amount of energy will be released. This producer is adopted in atomic
bomb.
THE HYDROGEN BOMB:
The hydrogen bomb is based on the principle of nuclear fission. To start fission
reaction, a very high temperature is nucleated. This high temperature is obtained from
fission chain reaction.
The energy released in the explosion of hydrogen bomb is far greater than that
released from the explosion of an atom.
USES OF RADIO ISOTOPES:
The isotopes of an element which emits out radiation is called radio isotope. Radio
isotopes are widely used in
i. Agriculture
ii. Medicine etc.
I INDUSTRY:
A Radio isotopes are used to check the thickness of the material being produced.
B Radio isotopes are used to detect cracks in welded joints.
C Radio isotopes are used to detect the leakages in pipes.
II AGRICULTURE:
A Varieties of seeds for various agriculture commodities which show resistance
against the attacks of pets have been produced after imitation through
radiations from radio isotopes.
B Radiation from radio isotopes are used to kill bacteria and preserve food stuff.
C It is used to determine the optimum amount of fertilizers and other nutrient
intake by plants. Its count rate is used to determine the amount of chemicals
absorbed by various parts of the plants.
III MEDICINE:
A Radio isotopes iodine 131, is used to study thyroid glands.
B Radio isotopes phosphorus 32 is used to locate the position of tumor in the
brain.
C Radio isotope strontium is used in the treatment of internal wounds.
D Radio isotope sodium is used tracing the blood circulation in the body.
E Radio isotope phosphorus has found effective for heating leukemia as radiation
emitted by Hood cancer if destroys the excess production of white blood corpuscles (cells).
F Radio isotope cobalt – 60 is used to treat cancerous tumors inside the body RADIATION HAZARDS:
In contrast to good use in industry, agree culture medicine etc. nuclear radiations are very
dangerous to the human body. They can damage the body cells due to the ionization which
they produce. A body, if strongly heated suffers the following diseases.
i. Anemia (a decrease in red blood corpuscles).
ii. Leukemia (an increase in white blood corpuscles)
iii. Malignant tumors.
iv. Cataracts (eye lens becomes opaque).
RADIATION SAFETY:
(Precautions to minimize radiation danger)
i. One should be at a safe distance from radio isotopes.
ii. The time for radiation exposure should be short.
iii. The radiations from nuclear reactor are shielded by the thick concrete walls.
iv. The radioactive material should be kept in lead box with the lid made of lead.
Electronics: Chapter 18 X Physics,03362023305, Edexcel, IGCSE, Physics tuition karachi
Q1. What do you mean Electronics?
Ans: ELECTRONICS:
It is that branch of Physics which deals in the structure and analysis of devices which
emit electrons. In electronics, uses and flow and controlling of those devices are
studied. Additionally which circuit designed for emitting, flow and control of electrons
are called Electronic circuits.
Q2. Give application of electronics in every day life.
Ans: Applications of electronics in every day-life are as follows:
(i) Radio (ii) TV (iii) Motion Pictures Iiv) Computers (v) VCR
APPLICATION IN MODERN ELECTRONICS:
(i) Automatic Washing Machine (ii) Microwave oven
(iii) Robots (iv) Telephones (v) Pocket Calculator.
Q3. Define Insulator and Semiconductor.
Ans: INSULATOR:
Those things which do not conduct electricity or which do not posses, free electrons
are called insulator. For example, Non-metallic objects as Gases and liquids.
SEMICONDUCTOR:
Those things which possess intermediate qualities between conductor and non-
conductor, like IVA group elements. When Carbon or Germenium or Silicon is
combined with Randium, then the mixture possess free-electrons and these electrons
are responsible for the flow of electric current.
Q4. What are P-type materials?
Ans: P-TYPE METRIAL:
Germinium and Silicon like elements possess four electrons in then outermost shell. If
any atom is mixed with such atoms. Who possess three electrons, then three electrons
from each side will make a covalent bond but an incomplete one. Because Germinium
and Silicon need four electrons in the outermost shell. Therefore, the substance made
from the mixture of Germinium and Silicon with Randium would possess greater
amount of positive charges. Hence the material which possess positive charges, is
called P-type material.
Q5. Define N-type material.
Ans: N-TYPES:
If an atom of five electrons, is mixed with crystal of Germinium and Silicon, for example
Arsenic. Then four electrons will form convalent bond and one electron will remain free
Since this material possess negative charges, therefore it is called N-type material.
Q6. Differentiate between N-type and P-type.
Ans:
N – TYPE
1. It is formed when Germinium like, atom Is combined with Arsenic like atom having 5+ ve valency.
2. It has excess of negative charge.
3. Conductivity is produced because of
one additional electron.
4. This is semiconductor. P – TYPE
1. It is formed when Germinium like atom is mixed with Inidium like atom having
3 + ve valency.
2. It has excess of positive charge.
3. Conductivity is produced because
Less electrons.
4. This also a semiconductor.
Q7. What is P-N junction ?
Ans: P-N JUNCTION:
When a block of P-type element is placed with block of N-type element then their
mutual boundary is called P-N junction and device formed is called Semi diode.
If a P-N junction, concentration of free electrons is high in N-type where as P-type
element has concentration of holes. Now P-type elements diffuse free-electrons in
matter and holes diffuse in N-type. Hence, this junction is known as P-N junction.
Q8. Prove how does P-N diode work.
Ans: P-N JUNCTION AS A DIODE:
When a P-N junction is joined with a battery in such manner that P-type material is
connected to positive terminal and N-type is joined with negative potential, then
positive terminal pulls the whole P-type and negative terminal will repel the electrons.
Now current will flow around the junction. If negative terminal is connected with P-
type and positive terminal is with N-type then negative potential attract the holes and
positive terminal will attract the electrons. Therefore, no current will passes across the
P-N junction. This proves that current passes in one direction in P-N junction and same
ss in diode. Hence diode works as P-N junction.
Q9. What is diode?
Ans: DIODE:
This consists of two electrodes placed in a high standard glass tube. That is why it is
called Diode. Among two of them, one electrode is made by a tungsten filament
coated with metal e.g. Barium Oxide or Strancium, which is called Cathode. The other
electrode consists of a Nickel plate which is called Anode. When filament is heated, it
emits electrons and makes an electron-cloud around the cathode. When positive
potential is supplied to positive anode, then it attracts the electrons and hence current
is passed.
Q10. Define hole, Thermonic emission and Doping.
Ans: HOLE:
When atom like Indium is mixed with atom like Silicon then three electrons of Indium
make covalent bond with three electrons of Silicon and one electron remains alone.
Hence, covalent bond is not a complete one because of that single electron and a
place remains vacant. Ths vacant place is called Hole.
THERMONIC EMISSION:
Such process in which a cathode of diode emits electrons on heating is known as
thermonic emission.
DOPING:
It is a process in which an element is made semiconductor P-type and N-type by mixing.
Q11. Define Forward Biased.
Ans: FORWARD BIASED:
When a P-N junction is joined with a battery
in such a manner that its P-type is connected
with positive terminal and N-type with negative
terminal, then current will flow this phenomenon
is known as Forward Biased. The Potential
produces an electric field, due to which resistance
in height of junction falls down. Since the height of
potential resistance is 0.7 to 0.1, therefore an increase
in Potential will vanish the resistance and resistance
falls down to zero and current flows in circuit.
Q12. Explain Reverse Biased.
Ans REVERSE BIASED:
When a P-N junction is joined with a battery
in such a way that its P-type is connected to
negative terminal and N-type is connected
with positive terminal then a reverse potential
creates an electric field which acts in the
direction of field of Potential resistance.
Therefore, a powerful field produces on the
junction. And height of resistance raises.
The high of resistance resists against the flow
of electrons. Hence, no current flows. This whole
process is known as Reverse Biased.
Q13. What is meant by Rectification?
Ans: RECTIFICATION:
The process, in which D.C is changed to AC, is called Rectification. The producting
current is used for charging battery and plating. Usually semiconductor is used for this
purpose. The device which converts AC to D.C is called Rectifier. There are two types of
rectifier.
i. Half-wave Rectifier
ii. Full-wave Rectifier
Q14. Explain Half-wave rectifier.
Ans: HALF- WAVE RECTIFIER:
Wave of current always consists of
two parts. One part is positive and
other one is negative.
Only positive part conducts A.C in
half-wave rectifier where as negative
charged does not . Consider the given circuit Diode and Resistance are connected
parallel and transformer is also connected parallel to them. When diode passes the
current during half positive round, where as stops the half negative round. Hence
there is only one direction for flow of current.
Q15. Give complete structure of Complete wave Rectifier.
Ans: COMPLETE WAVE RECTIFIER:
In this process, A.C conducts with both parts
of voltage, which consists of two parts. This
process is performed with two diodes which
alternately work for each other.
One diode provides current to load during half
positive cycle of voltage where as the other does
the same thing in next half cycle of voltage.
Hence current flows only in one direction.
Therefore, complete wave rectifier uses both half
cycles of voltage to provide DC output.
Q16. Diode works as Rectifier. Explain.
Ans: DIODE AS A RECTIFIER:
Such device which change A.C voltage in DC are called Rectifiers and Phenomena is
called Rectification
Voltage is supplied as Input, which is rectified necessarily. During positive half cycle, P-
type of diode is positive, holes are pulled towards junction. Hence resistance of
junction falls and current flows in the circuit . It becomes negative in other negative half
cycle and holes pulled away from junction. Now resistance of junction raises and no
current flows. So, it is proved that Diode only allow to pass positive cycle, means that
Diode works as a Half-wave Rectifier.
Q17. What are Transistors? How many types of transistors are?
Ans: TRANSISTORS:
Word “Transistor” is composed of two words, one is “Transformer” and other is
“Resistor”.
Schematic construction
p-type Collector n-type Collector
n-type Base p-type Base
p-type Emitter n-type Emitter
pnp npn
It is a semiconductor device which consists of three electrolytes. First one is “BASE”.
second is “Emitter” and third one is “Collector” . Detail of their wok is as follows:
BASE:
It is central parts of the transistor which separates the collector and emitter.
EMITTER:
This part supplies charges.
COLLECTOR:
This part of transistor receives charges.
TYPES OF TRANSISTORS:
i. N.P.N.Types transistors:
In this type of transistor, layer of P-type is placed between two parts of N-types
of material. Central part is called Base, other two parts are Emitter and Collector
respectively.
ii. P. N. P Type Transistors:
P.N.P type transistor consists of N-type material sandwiches between two P-
type materials Central core is called Base, and other two are Collector and
emitter respectively.
Q18. How transistors work?
Ans: WORKING OF TRANSISTORS:
There are two paths for the flow of current in transistors.
i. Base Emitter path where transistors receive current.
ii. Collector emitter path from where current is received from transistors.
Q19. How does an transistor work as an Amplifier?
Ans: TRANSISTOR AS AMPLIFIER:
Amplifier means an accumulator of transistor, if amount of current is increased
in Base, quantity of current reaches maximum in Collector such maximization of
current shows that transistor has qualities of an amplifier.
NPN Transistor Amplifier
USES OF TRANSISTORS:
Transistor is used in following apparatus.
i. Radio ii. Television (iii) Computer
iv. Telephone Set. (v) Stabilizers voltage (vi) VCR
Q20. What do you mean by Electromagnetic Waves?
Ans: ELECTROMAGNETIC WAVES:
Such waves which are produced when magnetic and electric field make a right angle in
a vibrating state are called Electromagnetic Waves. They do not need any medium to
transportation. Examples are light waves Radiowaves, Ultraviolet waves etc.
Q21. Explain Telecommunication.
Ans: TELECOMMUNICATION:
The branch of Physics which studies the production and uses of radial waves of
different frequencies, transporting audible and visual impression, is called
Telecommunication. Following devices works as telecommunication devices
i. Telephone
ii. Telegraph
iii. Radio
iv. Television
Q22. Write the names of parts used in Telegraph.
Ans: Basically, there are two parts in Telegraphy.
i. Electric bell. ii. Transmitter
i. Electric Bell:
It consists of following parts.
a. Electric magnet:
It is connected with a metal strip by the help of a small spring on
opposite hole.
b. Metal Strip:
A metal strip which based on a support.
ii. Transmitter:
It consists of a metal strip, also called Taping Key connected to a battery. On
pressing it, receiver produces round.
Q23. How telegraphing machine work?
Ans: TELEGRAPHY:
A battery is connected with a tapping key. The other end of tapping key is connected
with an Electromagnet. One end of receiver is joined with earth and while a terminal of
battery is connected to earth. Here, earth works a conductor. In telegraphy messages
are consist of dot and dash like codes. These messages press tapping key. The short
interval between pressings of key is called dot and long interval is known as dash.
When tapping key is pressed, then electric current passes through the coil of
electromagnet and this electromagnet attracts the bar. Due to this attraction electric
Circuit is disconnected and current stops its flow. Now the attraction vanishes and
spring takes the bar back to contact point and current starts flowing. Hence with the
press of tapping key the iron bar vibrates and produces buzzing sound which are
received in the form of message by Morse Code..
Q24. Give the structure and working of Telephone.
Ans: STRUCTURE OF TELEPHONE:
Telephone consists of two parts.
i. Carbon microphone,
ii. Airphone
The lines coming from Exchange are
connected to these two parts Likely,
There are two lines in telephone which
work for the communication A battery
in Exchange supplies current to these lines.
WORKING:
Carbon microphone consists of a sensitive diaphragm. There are packed granules of
carbon in front of diaphragm, Diaphragm vibrates when a contraction or expansion
occurs in these granules. When voice of speaker strikes diaphragm, it also fluctuates.
Similarly, there is a constant magnet placed in earphone which is connected with two
soft cores.
TRANSMISSION OF MESSAGE:
When a person speaks in front of microphone, due to compression and rarefaction in
sound waves the diaphragm tends to vibrate. When the diaphragm is compressed,
granules of carbon also compress and inter-granule distance decreases.. With decrease
in distance, resistance lowers in flow of current, and current fluctuates due in the form
of sound waves.
RECEPTION OF MESSAGE:
When current fluctuate in the form of electric current, it passes through the
electromagnetic waves of receiver and disturbs these waves. Due to this, a plate
in front of electromagnet experiences a force on it. These fluctuations are
transformed into sound waves and receiver hears the sound.
Q25. How does the radio propagate sound?
Ans: RADIO:
First, the voice of speaker is formed in front of speaker. This sound produces
fluctuation in microphone, then these sound waves are converted into
Electromagnetic waves. These electromagnetic waves are amplified by an amplifier.
These amplified waves are transported to transmitter which converts them into Radial
waves. Now these radial waves are transmitted to radio sets with the help of powerful
devices. Where these waves strike with the antenna of radio set and then converted
into alternating current Amplifier placed in radio set, amplifies these waves and
transfers towards the loud speaker. Loud speaker works as a headphone and
electromagnetic waves are heard in the form of sound waves.
Q26. How Television transmits picture? Give the principle of Colored Transmission.
Ans: There are two types of TV transmission.
i. Black and White Transmission. ii. Colour Transmission.
BLACK AND WHITE TRANSMISSION:
The picture of persons, in a program, is taken with the help of a particular camera.
These pictures are converted into electromagnetic waves. Now, these waves are
amplified with the help of an amplifier. These amplified waves are transformed into
radial waves with a transmitter, so that these waves can reach the television set
located in remote regions.
In TV set, these radial waves are transformed into electromagnetic waves. Then
these waves are mobilized to Electron gun with the help of amplifier. This electron
gun fires them in the form of rays on the television screen where they form a picture.
COLOUR TRANSMISSION:
A camera consists of three or four tubes is used in colour transmission. These tubes
resolve a picture into colour component. Then, these colors pictures are converted
first into electromagnetic waves and secondly in radial waves. These radial waves
are transmitted to TV Sets with the help of transmitter where they form a picture onTV Set..
Q27. What do you mean by Sound Recording System?
Ans: SOUND RECORDING SYSTEM:
Sound recording system means to record or capture sound. When voice of person
strikes to microphone, then microphone converts it into fluctuating current. This
fluctuating current is amplifier by a transistor and transferred to a magnetic heat.
This head is called Recording Head. A plastic tape coated with magnetizable
material of Ferric Oxide and Chromium oxide, is placed in front of recording head.
Magnetic field varies with fluctuating current which magnetize the different parts of
tape and sound is recorded in a magnetic pattern on the tape.
Q28. What is Radar?
Ans: RADAR:
Radar, intuitively means to defect and find range of an object with radial methods
radar is large used for the war purposes. This device works as guidance for
aeroplanes and sea-ships on airports and sea-ports respective.
STRUCTURE OF RADAR:
Radar consists of a transmitter receiver
and other several indicating devices
electromagnetic waves of high frequency
i.e. more than 600 MHz produced from a
transmitter which are sent in required
direction with the help of a concave
antenna of radar. When these waves strike
a body, they reflect back with this reflection,
we can detect and find range of a body.
These waves travel with velocity of light.
USES OF RADAR:
i. Radar is used for the forecasting of weather, tornadoes and aviation.
ii. It is used to locate the track of satellite, and for military purpose on land
and sea.
Q29. How does a satellite transmit?
Ans: SATELLITE:
Satellite is a spherical object which consists of different device it suspends in a
particular position of space several satellites are revolving around the earth in their
orbits. Satellite is mainly used for the communication purposes. It is necessary to
remain static relative to earth, in order to match the orbital velocity of satellite with
the spinning velocity of the earth solar power is used in satellite nuclear energy is
also used for this purpose.
TRANSMISSION FROM SATELLITE:
Due to high power, satellite receives signals from an object or a body. Then it amplifies
these signals and transmits these amplified signals towards a particular part of the
earth where these amplified signals are received by TV and Radio etc. On earth, these
signals are received with the help of Dishes, Feed-harms and Satellite receivers. We
often see games, news, and other world affair from other distant parts of the world by
this principle.
Machines: Chapter 9, X Physics
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Machines:
Definition:
“A device which performs the work in convenient (useful) manner is called machine.”
OR
“A device which applies the force in such a way that it performs greater work is called
machine.”
Example:
i. Lever ii. Pulley iii. Trolley
Effort:
Definition:
“The force directly applied on the machine is called effort.” It is denoted by “P “.
Load:
Definition:
“The weight lifted by machine is called load. “It is denoted by “W”.
Mechanical Advantage:
Definition:
“The ratio of load to effort is called mechanical advantage.”
Mathematical form:
Mechanical advantage = load
effort
Unit:
It has no unit because it is the ratio between similar quantities.
Input:
“The work done on a machine is called input.”
OR
“The product of effort and the distance moved by effort is called input.”
Mathematical form:
If effort “P “ acts through a distance “d “.
Then,
Out put:
Definition:
“The work done by a machine is called output.”
OR
“The product of load and the distance moved by load is called output.”
Mathematical form:
If load “W” is lifted through a height “h”
Then,
Efficiency:
Definition:
“The ratio of output to input is called efficiency.”
OR
“The ratio of work done by a machine to the work done by a machine is called
efficiency.”
Mathematical form:
Efficiency = output
Input
It always calculated in percentage.
Efficiency = Output x 100
Input
Or efficiency = work done by a machine x 100
Work done on a machine
A machine is said to be ideal if output is equal to input. For this machine the efficiency
is 100%.
Hence for ideal machine.
Output = Input
W x h = P x d
W = d
P h
Hence the mechanical advantage of 100% efficient machine is given by the above
relation.
Lever:
Definition:
A simplest kind of machine which consists of rigid capable of rotating about a fixed
point (fulcrum) is called lever.
The turning point about which lever rotates is called Fulcrum.
The perpendicular distance between load “w” and fulcrum is called weight arm or load
arm.
The perpendicular distance between effort “p” and the fulcrum is called effort arm.
Kinds Of Lever:
There are three kinds of lever.
1. Lever of first kind.
2. Lever of second kind.
3. Lever of third kind.
Lever Of first kind:
If fulcrum “F” lies is in between effort “p” and weight “w” then it is said to be lever of
first kind.
P F W
Example: Balance, handle of a pump, a pair of scissors, see-saw.
Lever Of second kind:
If load “W” is in between fulcrum “ f “ and effort “p “ then it is called lever of second kind
F p
W
Example:
Door, the nut cracker, punching machine etc.
Lever Of third kind:
If effort “E” is in between fulcrum “ f “ and load “ w “ then it is called lever of third kind.
F p
W
Example:
Human air, upper and lower jaws in the mouth, a pair of forceps etc.
Principle Of Lever: Torque of effort = torque of load
in all kinds of lever. Effort x effort arm = load x load arm
Mechanical Advantage Of Lever
p x d = w x h
W = d
p h
Pulley:
A pulley is groved wheel supported in a frame called block such that wheel can turn
about an axle in the block. The pulley can be suspended from a fixed beam by means
of a hook. A rope can pass over the pulley. The pulley can be used in two ways.
1. Fixed Pulley:
The block of the pulley is fixed to the
ceiling as shown in fig.
Load “w” is tied to one end of the rope
and effort “p “ is applied at the other end.
If we neglect the weight of the rope and
friction then
W x OB = P x OA
As OB and OA are equal, therefore they
cancel out hence,
W = P
Or W or M.A, = 1
P
The effort applied “P” is equal to the weight “ w “ . This pulley is used only to
change the direction of force.
2. Moveable Pulley:
In this case the block of moveable pulley and effort “p “ is
applied at force and of the rope shown in fig.
two segments of the rope are lifting “w”.
The tension in each segment is “p” hence, W = 2 p
Now
Inclined Plane:
Definition:
A surface which makes certain angle “0” (0” < 0 < 90o) with the horizontal surface is called
inclined plane.
It is used in raising heavy loads. The load “w” is lifted through a height “ h “ by applying
through a distance “ I “ along the plane as shown in fig.
Output = Input
W x h = p x I
W = I
p h
But MA = W/P
From fig sin 0 = p = h
H I
1___ = 1
Sin 0 h
Wedge:
Definition:
It consists of two inclined plane put together as shown in fig, it is used to split wood
into pieces.
Mechanical advantage:
M.A. = Length of inclined surface of the wedge
Thickness of the wedge
Screw:
Definition:
It consists of threaded rod with head, called the screw head.
The distance between two adjacent threads is called
its pitch. When a screw is turned one revolution by
an effort “p” applied at the screw head, the screw
moves forward into the wood through a distance
equal to its pitch. If ‘d ‘ be the radius of screw head then the effort “ p “ moved through a
distance 2 d.
If there is no loss of energy due to friction then
Output = Input
W x h = p x 2 d
w /p = 2 d /h
But MA = w / p
Screw Jack:
It is a simple machine used to lift a car or other automobiles.
The car or automobile of weight “w” is placed on the
plate form provided for this purpose. The pitch of the
screw is “h” . The effort “p” is applied at the handle H.
when effort moves a distance 2nd (one rotation) where
“d” is the length of the rod, the load “w” is lifted through
a height “h”.
Output = Input
Wh = p x 2nd
W / p = 2nd /h
Ma = w / p
But
Wheel and Axle:
A wheel with larger radius (R) and another with smaller radius (r) are fixed on the same
shaft and are called wheel and axle respectively. It is often used to lift bucket of water
from the well. The shaft in clamp so that it can rotate freely.
The effort “p” is applied at the rim of wheel of radius R while the load W is lifted by a
string wound around the axle.
For one complete rotation, the effort moves through a distance 2R while the load is
raised through a distance 2r.
If friction is neglected, then
Output = Input
W x 2r = p x 2 R
W = 2R
P 2r
W = R
P r
But MA = w / p
Sunday, May 30, 2010
Statics: Chapter 6: X Physics,03362023305,home tuition Karachi
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Example:
of the table. If this book is slightly raised
Example:


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The plate will come to rest in a position so that
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SYSTEM | UNITS |
(I) C.G.S. System (ii) M.K.S. System (iii) S.I.System (iv) F.P.S. or B.E. System | Dynes-cm Newton-meter Newton-meter Lbs-ft. |



