Friday, January 22, 2021

 

MAGNETIC EFFECT OF ELECTRIC CURRENT

 

 MAGNETIC EFFECT:-  The term magnetic effect of electric current means that or electric current flowing in a wire produces in a magnetic field around it. In other words, electric current can produce magnetism.

MAGNET:-  A magnet is an object which attract pieces of iron, steel, nickel and cobalt. Magnets come in various shapes and sizes depending on their in tended use.

BASIC  LAWS OF MAGNETISM:

1] There are two poles namely north pole and south pole.

2] Like poles repel each other, while unlike poles attract each other.

LODE STONE:- The black ore of iron (fe3o) called magnetic capable of attracting  similar pieces of iron is called lode stone.

MAGNETIC SUBSTANCE:-

Those substances which are attracted by magnet are called magnetic substances.

NON MAGNETIC SUBSTANCES:-

Those substances which are not attracted by a magnet are called non magnetic substances.

MAGNETIC FIELD:-

 The space surrounding a magnet in which magnetic force is exerted is called a magnetic field. The magnetic field has both, magnitude as well as direction.] A compass needle placed near a magnet gets deflected due to the magnetic force exerted by a magnet. The north end of the needle of a compass indicates the direction of magnetic field at a point where it is placed. [The S I unit of magnetic field is telsa.

 

MAGNETIC FIELD LINES:-

 A magnetic field is described by drawing the magnetic field lines. (The magnetic field lines are the lines drawn in a magnetic field along which a north magnetic pole would move.) The magnetic field lines are also known as magnetic lines of force. (The magnetic field lines always begin from N-pole of a magnet and end on the S-pole) of a magnet.

Properties of the magnetic field lines:-

(i)           The magnetic field lines originate from the north pole of a magnet and end at its South pole.

(ii)       The magnetic field lines come close to one another near the poles of a magnet but they are widely separated at other places.

(iii)    They exert lateral pressure on each other.

(iv)    They magnetic field lines do not intersect one another. It is because if they do so, it will give two different direction at the same point which is not possible.

 

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Friday, August 14, 2020

Human Eye



Human Eye    
Human eye is one of the most valuable and sensitive organs. It resembles a camera. The human eye works on the refraction of the light through a natural convex lens. Main parts of human eye :
 
 
Structure of Human Eye

 
     Cornea
·       Iris
·       Pupil
·       Cillary muscles
·       Eye lens
·       Retina
·       Optic nerve
      1)   Cornea: The front part of the eye is called as cornea. It is made of a transparent substance .It is a thin membrane of eye, through which light enters the eye first and gets refracted.
     2 )   Iris: Iris is suited just behind the cornea. Iris is a flat, coloured, ring shaped membrane. It control the size of pupil.
     3)   Pupil: There is a hole in the middle of the iris which is called the pupil of the eye. The pupil appears black because no light is reflected from it. Pupil regulates and controls the amount of light entering the eye.
     4)   Cillary muscles : It holds the eye lens and lens by focusing. The focal length of the convex lens present inside the eye can be changed by the action of the Cillary muscles.
     5)   Eye lens: Eye lens is a double convex lens made of a transparent , soft and flexible material like a jelly made of proteins . Being flexible the eye lens can change its shape (it can become thin or thick) to focus light on the retina.
     6)   Retina : The screen on which the image is formed in the eye is called retina. The retina is behind the eye lens. It is a delicate membrane having a large number of light, sensitive cells called ‘rods and cones’ which response to the intensity of light and colour of object respectively by generating electrical signals. 
   7)   Optic nerve: It is a nerve connecting eye and brain. It sends the electrical signals to brain.

              Working of Human Eye
The light rays coming from the object kept in front of us enter through the cornea of the eye, pass through the pupil of the eye and fall on the eye lens so it converges the light rays and produces a real and inverted image of the object on the retina is converged to the brain by the optic nerve and gives rises to the sensations of vision.
 
     

 
 
NOTE : Rod and Cone cells: The retina of our eye has a large number of light sensitive cells. These are two kinds of light sensitive cells on the retina : rods and cones.

Rods are the rod – shaped cells present in the retina of an eye which are sensitive to dim light. Rods are the most important for vision in dim light. Natural animals which sleep during the day and come out at night like the owl have a large number of rod cells in their retina which help them to see properly during the night where there is not much light.

Cones are the cone shaped cells which are sensitive to bright to bright light for normal light. The cone cells of our retina also respond to colour.


Power of Accomodation

An eye can focus the images of the distant object as well as the nearby object on its retina by changing the focal length (or converging power of its lens. The focal length of the eye lens is changed by the action of the Cillary muscles). The Cillary muscles can change the thickness of the soft and flexible eye lens and hence its focal length which in turn, changes the converging power of the eye lens.
               The ability of an eye to focus the distant object as well as the nearby objects in the retina by changing the focal length for converging power of its lens is called accommodation. An normal eye has a power of accommodation which enables objects as far as infinity and as close as 25 cm to be focused on the retina.

Far point : the farthest point from the eye at which an object can be seen clearly is known as the “ far point” of the eye. The far point of a normal human eye is at infinity.
Near point: The minimum distance at which an object must be placed so that a normal eye may see it clearly without any strain, is called the least distance of distinct vision. The least distance of distant vision for a normal eye may see it clearly without any strain, is called the least distance of distant vision for a normal eye is about 25 cm .

Note: colour combination:
Red + green= yellow
Blue + green = Peacock blue
Red + Blue= Magenta


Defect of vision
Sometimes the eye of a person cannot focus on the retina properly.  In this case the person is said to have a defect of vision . There are three common defects of vision.
Myopia:    Myopia ( or short – sightedness ) is that defect of vision due to which a person cannot see the distant objects clearly through he can see the nearby objects clearly. The far point of an eye suffering from myopia is less than infinity.

Causes of myopia
The defect of eye called myopia (for short – sightedness) is caused
1)   Due to high converging power of eye lens.
2)   Due to eye ball being too long.

Correction of myopia

Myopia (short –sightedness or near –sightedness ) is corrected by using spectacles containing concave lenses
    


Diagram




Hypermetropia

Hypermetropia or ( long – sightedness) is that defect of vision due to which a person cannot see the nearby objects clearly though he can see the distant objects clearly. The near point of a hypermetropia is centimetres away from retina.

Causes of  Hypermetropia
 1 Due to low converging power of eye lens.
2  Due to eye – ball being too short.

Correction of hypermetropia
Hypermetropia ( long – sightedness or far – sightedness) is corrected by using spectacles combining convex lenses.





Diagram



Presbyopia
Presbyopia is that defect of vision due to which an old person cannot see nearby objects clearly due to the loss of power of accommodation of the eye.( The near point in this case become less than 25 cm ) .

Cause
1 Due to Cillary muscles becoming weak
2 Due to the eye lens becoming rigid

Correction
Presbyopia is corrected by using spectacles containing cylindrical lens.
There are few modes of defect of vision
Cataract
 It is a defect of vision in which usually comes in oblage is cataract. The medical condition in which the lens of the lens of eye of a person becomes progressively resulting in blurred vision is called cataract.
Cause
Cataract develop when the eye lens of a person becomes cloudy due to the formation of a membrane over it.
Correction
The opaque  lens is removed from the ye of the person by surgical operation and a new artificial lens is inserted in the place.

 Colour blindness
It is a genetic disorder caused due to the absence of cone cells in the retina. In this defect, vision is normal, but eye cannot between colours.



Q Why do we have 2 eyes for vision and not just one?
Ans There are many advantages of having two eyes instead of one. Some of them are given below:
1.  Having two eyes gives a wider field of view
2.  Having two eye enables us to judge distance more accurately.

Q What is night blindness?
Ans. Some persons have the difficulty to see the objects in dim light during night. This defect of eye is called night blindness.
 Cause
1 Lack of vitamin a in the food
2 Improper functioning of rods – shaped cells. The rods shaped cells respond to intensity variation OF LIGHT.

Q What is total internal reflection ?
 Ans  When light passes from an optically denser medium to a rarer medium beyond certain angle of incidence it undergoes reflection instead of refraction. This is called total internal reflection and that certain minimum angle of incidence is called critical angle condition for total internal reflection.
1      Light should pass from denser to rarer medium.
2      Angle of incidence should be greater than critical angle.

Atmospheric  refraction : The refraction of light by the Earth’s atmosphere is called as atmospheric refraction.


Twinkle stars
The twinkling of stars is due to the atmospheric refraction of starlight. The starlight on entering the Earth’s atmosphere undergoes refraction continuously before it reaches the Earth. The continuously changing atmosphere refracts the light from the stars by different amounts from one moment to the next. When the atmosphere refracts more star light toward us, the star appears to be bright and when the atmosphere refracts less star light, then the star appears to be dim. In this way, the star light reaching our eyes increases and decreases continuously due to atmospheric refraction and the star appears to twinkle at night.

·      Advance sunlight and delayed sunset
Sun is visible to us about 2 min after the actual sunset because of atmospheric refraction. By actual sunset because of atmospheric refraction. By actual crossing of the horizon by the sun. The time difference between the actual sunset and the apparent sunset is about 2 min.

Rayleigh law of scattering
According to ray light, the amount of scattering is inversely proportional to the fourth power of the wavelength . Therefore the light of shorter wave length is scattered much more than the light of longer wavelength. There is no change in the wavelength of light rays during scattering.
 Note: thE MOST BEAUTIFUL PHENOMENA OF NATURE SUCH AS BLUE COLOUR OF SKY. White colour of clouds, Red of sunrise and sunset can be explained in terms of scattering of light.

Blue colour of sky
Blue colour have a shorter wavelength than red. So according to Ray light scattering law, Blue colour of sunlight scattered much more strongly by the larger no. Of molecules present in the Earth’s atmosphere. Hence the sky appears blue.

 Mirage
 The apparent inverted images formed due to not surface in deserts is called mirage. This is caused by total reflection of light in atmosphere.

TYNDALL EFFECT
The phenomenon of scattering of light by the colloidal particles known as Tyndall effect. This effect can be observed when;
1      A fine beam of sunlight enters a room containing suspended particles of dust, the path of the beam of light visible .It is due to the scattering of light.
2      Sunlight passes through a canopy of dense forest, mist contains tiny droplets of water which acts as particles of colloid dispersed in air.

Dispersion of light
In the year 1665 Newton found that if a beam of white light is passed through a triangular glass prism the white light splits to form a band of seven colours. The splitting of white light into its constituents colours is called dispersion.
            The band of seven colours formed on a white screen, when a beam of white light is passed through a glass prism, it is called spectrum of white light. The seven colours of the spectrum are red, orange, yellow, green, blue, indigo and violet.
Note: When the light rays change its path due to some particles it is termed as Scattering of light.

Causes of Dispersion : The dispersion of white light occurs because colour of white light travels at different speed through a glass prism. When white light consisting of seven colour falls on a glass prism, each colour in it is refracted by  different angles, with the result that seven colours are spread out to form a spectrum.


Ques. How rainbow is formed ?
Ans. A Rainbow is produced by the dispersion of white (sun) light by raindrops in the atmosphere. Each raindrop acts as a tiny glass prism splitting the sunlight into a spectrum. A Rainbow is always  formed in a direction opposite to that of the Sun.

Ques. Why does not glass prism produce a dispersion of light?
Ans. A glass slab acts as a combination of two identical glass prism is in an inverted position with respect to the first. The first prism splits the white light into the seven colours. The colour components fall on the second prism, where it recombines them to form white light.
Ques. Why does the sun appear reddish early in the morning?
Ans. At sunset or sunrise, the sun rays pass through a maximum length of atmosphere. Much of the blue light and shorter wave length has been taken out by scattering. Only the red colour of light reaches the observer. That is why when sunset and sunrise appear red.

Ques. Explain why the planets do not twinkle?
Ans. The planets are much closer to the Earth and are thus seen as extended sources. If we consider a planet as a collection of a large number of point sized sources of light, the total variation in the amount of light entering our eye from all individual point -sized sources will average out to zero thereby nullifying twinkling effects of planets.

Ques. Why does the sky appear dark instead of blue to an astronaut?
Ans. The sky appears dark instead of blue to an astronaut because at such a huge height there is no atmosphere to scatter the light. Hence the sky appears completely dark.

















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Thursday, June 25, 2020

Metal and Non Metals




Metal and Non Metal

Element: An Element id the substance which is made up of entirely one kind of atoms. For example hydrogen, helium etc.
Metals: Metals are those elements which lose their electron to gain positive charge. for example Sodium (Na), Potassium (K) etc.

Non Metals: These are those elements which gain the the electron to attain the negative charge. For example Neon (Ne) Argon (Ar)

Physical properties of the Metals: 

The following are the physical properties of metal :
  1. Malleability: The property of the metals due to which they can be beaten into the sheets is called as the malleability. Most the metals are malleable in the nature. Gold (Au) is the most Malleable element.

2. Ductility: The property of the metals due to which they can be drawn into the wires is called as the Ductility. Most the metals are ductile in the nature. Gold (Au) is also  the most ductile

3. Sonorous: It is the property of metals due to which they produce ringing sound. Usually Metals produce ringing sound when being hit.
4. Lusterious: It is the property of metals due to which they have shiny surface. Usually most of the  metals  have shiny surface.

5. Metals are a good conductor of electricity which means that they can conduct electricity due to the free moving electrons present in them. Copper is used as wiring as it is a good conductor of electricity.
6. Metals have high melting points and high boiling points as they have strong metallic bonds.
7. Metals are hard, they can’t be broken easily and require a lot of energy and strength to break.  Iron is used to make cars, buildings, ships, etc.
8. Metals weigh a lot as they have a high density. Metals are heavy for their size.
9. They don’t have flexibility and have tensile strength. Metals can’t be stretched.

Difference between metals and non metals based on the physical properties.


Chemical Properties of the Metals: 

1.       Reaction of metals with Oxygen: 


     Metals react with oxygen to form metals oxides which are basic in nature.


Reaction of Metals with Oxygen
Note:
 Magnesium metals does not react with oxygen at room temperature  but on heating magnesium burns in air giving intense heat and light to form basic oxide called as magnesium oxide.


2. Reaction of Metals with acids: 
Metals React with acid to form metal salt and hydrogen gas.


Note: Metals displace hydrogen from dilute acids

Reaction of metals with Water: 
Metals React with to form metal hydroxide and hydrogen gas.

Reaction of the metals with water
Note: Magnesium metals does not react with cold water. However it reacats with hot water to form magnesium hydroxide.

  1.      1.    Reaction of Non metal with water:  

    Non metals do not react with water (or steam) to evolve hydrogen gas. This is because non-metals cannot give electrons to reduce the hydrogen ions of water into hydrogen gas.
     2.   Reaction of Non-Metals with Dilute Acids:- Non- metals do not react with dilute acids. In other words non-metals do not displace hydrogen from acids.
     3.   Reaction of Non-Metals with salt solutions:-  A more reactive non-metal displaces a less reactive non-metal from its salt solution
        
      

     4.   Reaction of Non-metals with Chlorine: - Non-Metals react with Chlorine to form covalent chlorides which are non-electrolytes.


    5.   Reaction of Non-Metals with hydrogen: - Non-Metals react with hydrogen to from covalent hydrides.

 Difference between Metals and Non metals based on the chemical properties


Difference between metals ans Non metals Based on the chemical properties





Ionic Compounds 
            or
 Reaction of Metal with Non-Metal or ionic compounds: -

The Compounds formed by the transfer of electrons from a metal to a non- metal are known as ionic compounds or electrovalent compounds. Ionic compounds have strong electrostatic force of attraction between the positive and negative charge.
   Properties of Ionic compounds:-
     1.   Ionic compounds are solids, hard and brittle.
   2.   Ionic compounds have closed packed structures.
   3.   Ionic or electrovalent compounds are soluble in water because they form ions in aqueous solution.
   4.   Ionic compounds are insoluble in organic solvents like alcohol, acetone.
   5.   Ionic compounds conduct electricity in molten state and in aqueous solution because ions carry current.
   6.   They do not conduct electricity in solid state because ions are not free to move.
   7.   Ionic compounds have high melting and boiling points. It is because of strong force of attraction between oppositely charged ions; therefore, high energy is required to break the metallic bonds between ions.
Minerals:- The elements or compounds which occur naturally in the earth’s crust are known as minerals.
 Ores:- Minerals contain a very high percentage of a particular metal and the metal can be profitably extracted from it. These mineral are called ores.
Alloys: - An alloy is a homogeneous mixture of two or more metals, or a metal and a non- metal.
     Alloys                                              Constituents
         Brass                                                Copper, Zinc
         Bronze                                              Copper, Tin
         Steel                                                 Iron, Carbon
Gangue:-  The unwanted material, or impurities present in the ores are called gangue.
Enrichment of ore:- Ores minerals from the earth are, usually, contaminated with gangue. The removal of gangue, from the ore, is called enrichment of ore.
Uses of Non-Metals:
·       Non-metals used in fertilizers to enhance the growth of plants.
·       Liquid hydrogen is used as a rocket fuel.
·       Carbon is used for making the electrodes of electrolytic cells and dry cells.
·       Due to its inertness, nitrogen is used to preserve food materials.
·        Non-metals used in water purification process.
  Uses of Metals: -
·                      Copper and aluminium metals are used to make wires to carry electric current.
·                      Iron, Copper and aluminium metals are used to make house-hold utensils and factory equipments.
·                      Zinc is used for galvanizing iron to protect it from rusting.
·                      The liquid metal ‘mercury’ is used in making thermometers.
·                      Lead metal is used in making car batteries. 

Method of removing impurities

Electromagnetic Separation: -It is a process in which magnetic ore is separated from non-magnetic impurities with the help of electromagnets. The ore is crushed and electromagnets are brought here it which attracts the minerals particles leaving behind the gangue particles.
Chemical separation (leaching): - It makes uses of difference in the chemical properties of mineral and gangue. The ore is treated with suitable reagent which reacts with ore, but not with the gangue. The purified ore is regenerated be sequence reactions. An example of leaching is Balyer’s method of obtaining pure aluminium oxide from bauocite.
Froth-Flotation process: -In order to separate the gangue from the sulphide ores (like Zns, cuss) air is blown through the mixture of ore, water and oil. Metal sulphide come on the top with froth and gangue settles down at the bottom.
Hydraulic washing (washing with water): -This method involves the process of washing with water. It is basically based on the difference in the densities of gangue and ore.

Thermite process (aluminothermy): - It is a process in which molten metal oxide are treated with aluminium power. It is highly exothermic reaction.


Extraction of Metal
Metals low in the activity series: -Metals low in the activity series are very non-reactive. The oxides of these metals can be reduced to metals by heating alone. Metals such as Mercury, Copper etc can be extracted by this method 
Metals in the middle of the activity series: - The metals in the middle of the activity series are moderately reactive. These, usually, present as sulphides or carbonates in nature. They are first converted to metal oxides and then in the next step the metal oxides are reduced to metal.
Metals such as Zinc, Iron, Tin etc can be extracted by this method 

Metals belonging to the high reactivity series:-

The metals which belong to the high reactivity series arte extracted by electrolytic reduction of their molten chlorides or or oxides. Metals such as Potassium, sodium, calcium aluminum etc can be extracted by this method (Electrolytic Reduction) 
NOTE:

Calcination: It the process in which carbonated ore is strongly heated in absence of air to convert into metals oxide.

Raosting : It is the process in which a carbonate ore is heated strongly in presence of air to convert into the metals oxide.



Electrolytic Refining of the Metals


Many metals, such as copper, Zinc, Tin, Nickel, Silver, Gold etc. are refined electrolytically in this process, the impure metal is made the anode and a thin strip of pure metal is made the cathode. A solution of the metal salt is used as an electrolyte. The apparatus is set up. 



On passing current through the electrolyte, impure metal from anode dissolve into the electrolyte. An equivalent amount of pure metal from the electrolyte is deposited on the cathode. Soluble impurities go into the solution, whereas the insoluble impurities settle down at the bottom of the anode as anode mud



Difference between ionic COMPOUNDS And Covalent compounds.



Ionic compounds
Covalent compounds
Ionic compounds contain the ionic bonds
They contain covalent bonds
There is either loss or gain of electrons
There is sharing of electrons
They conduct electricity
They cannot conduct electricity
They have high melting and boiling points
 They have low boiling and melting points
They are soluble in water
They are insoluble in water

Anodizing : Anodizing is a process of forming thick oxide layer of aluminium or aluminium particles.
Roasting: It is a process in which ore is heated in the presence of air so as to obtain metal oxides, which can be reduced easily to get free metal, sulphur ores are converted into oxides by roasting them in air.
Calcination: It is a process of heating ore is absence of air so as to remove moisture and volatile impurities.
Cinnabar: A bright red naturally occurring form of mercury (II) sulphide (HgS) is chief are mercury
Note some of the content is still under process
written by PITE Xpert


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