YouTube Video lectures for each topic in JEE Chemistry in all chapters of XI and XII Classes. Related Text in brief form is also provided.
Showing posts with label Basic concepts-clxi-ch1. Show all posts
Showing posts with label Basic concepts-clxi-ch1. Show all posts
Sunday, May 8, 2016
XI - 1.14 Stoichiometry of Chemical Equations - Video Lectures
Chemistry Lesson: Reaction Stoichiometry
GetChemistryHelp
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XI - 1.13 Percentage Composition and Molecular Formula - Video Lectures
Molecular and Empirical Formulas from Percent Composition
Khan Academy
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Thursday, May 5, 2016
Wednesday, May 4, 2016
XI - 1.11 Mole Concept - Video Concepts
XI - 1.11 Mole Concept - Video Concepts
Mole concept
A mole is measuring unit like for example dozen.
A mole is a collection of 6.022*1023 particles
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Askiitians
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ExamFearVideos
Tuesday, May 3, 2016
XI - 1.10 Atomic and Molecular Mass - Video Lectures
XI -
1.10 Atomic and Molecular Mass - Video Lectures
1.9 Atoms and Molecules
Atoms are the smallest particle of an element which may or may not have independent existence, but it takes part in chemical reactions.
Molecule is the smallest particle of a substance (element or compound) capable of independent existence.
There are 112 elements in nature as per the present knowledge. Obviously there are 112 different types of atoms.
Molecules may have two or more atoms. Molecules are divided into two types:
1. Homoatomic molecules
2. Heteroatomic molecules
1.10 Atomic and Molecular Mass
Atomic Mass: An atom is such a small particle that its mass cannot be determined with the help of any available balance. By an indirect method, the absolute mass of hydrogen atom has been found to be 1.66 X 10 to the power of -24 g.
Chemists have defined the atomic mass of hydrogen as one and expressed the atomic mass of other elements as multiples of hydrogen's atomic mass. The relative atomic masses expressed in terms of hydrogen as termed atomic weights.
Atomic weights of some common elements
Metals
Magnesium 24.3
Aluminium 27.0
Iron 55.8
Zinc 65.4
Tin 118.7
Gram Atomic Mass: Gram atomic mass is the quantity of an element whose mass in grams is numerically equal to its atomic mass.
Molecular Mass: Measuring the mass of a single molecule is not possible. Hence as in the case of atoms, molecular mass is defined as the average relative mass of its molecule as compared to the mass of an atom of carbon (C12) having mass number 12.
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Teacher's Pet
XI - 1.8 Avogadro's Hypothesis Video Lectures
XI -
1.8 Avogadro's Hypothesis Video Lectures
1.8 Avogadro's Hypothesis
Avogadro's hypothesis or suggestion is that matter consists of two kinds of ultimate particles. These are atoms and molecules.
Atoms are the smallest particle of an element which may or may not have independent existence, but it takes part in chemical reactions.
Molecule is the smallest particle of a substance (element or compound) capable of independent existence.
The actual hypothesis is that under similar conditions of temperature and pressure, equal volumes of all gases contain equal number of molecules.
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Smart Learning
XI - 1.7 Dalton Atomic Theory - Video Lectures
XI -
1.7 Dalton Atomic Theory - Video Lectures
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Exam Fear Videos
1.7. Dalton’s atomic theory
To provide theoretical justification to the laws of chemical combination which are experimentally verified, John Dalton postulated a simple theory of matter. The basic postulates of Dalton’s atomic theory are:
a. Matter is made up of extremely small indivisible and indestructible ultimate particles called atoms.
b. Atoms the same element are identical in all respects ie., in shape, size, mass and chemical properties.
c. Atoms of different elements are different in all respects and have different masses and chemical properties.
d. Atom is the smallest unit that takes part in chemical combinations.
d. Atoms of two or more elements combine in a simpler whole number ratio to form compound atoms (molecules).
e. Atoms can neither be created nor destroyed during any physical or chemical change.
f. Chemical reactions involve only combinations, separation or rearrangement of atoms.
Modern atomic theory
As a result of new discoveries made after Dalton developed his postulates, some modifications were done to atomic theory. They are:
1. Atom is no longer considered to be indivisible: It is found that atom is made up of subatomic particles such as electrons, protons and neutrons. We now state how many electrons are there, protons are there in an atom.
2. Atoms of same element may not be similar in all respects. Atoms of same elements have different atomic masses. These different atoms are called isotopes.
3. Atoms of different elements may have similar one or more properties. Atomic mass of calcium and argon (40 a.m.u.) are same. So the property of atomic mass is same for atoms of different elements. Isobars or elements or atoms having the same atomic mass.
4. Atom is the smallest unit which takes part in chemical reactions. Though electrons and protons are there, it is atom which takes part in chemical reactions and electrons exchange takes place between atoms.
5. The ratio in which the different atoms combine may be fixed and integral but may not always be simple. For example in sugar molecule the ratio of C,H and O atoms is 12:22:11, which is not simple.
6. Atom of one elements may be changed into atoms of other element. Transmutation is the process by which atoms one element can be changed into elements of other elements by subjecting it to alpha rays.
7. The mass of atom can changed into energy. Mass and energy are convertible. The equation give for such conversion is E = mc². Hence we cannot say that mass is not destructible. But in chemical reactions, atom remains unchanged and its mass is not destroyed to liberate energy.
Monday, May 2, 2016
XI - 1.6 Laws of Chemical Combination - Video Lectures
Class XI
1.6 Laws of Chemical Combination
During any physical or chemical change, the total mass of the products is equal to the total mass of reactants.
b. Law of constant proportions
A pure chemical compound always contains same elements combined together in the same definite proportion by weight.
c. Law of multiple proportions
When two elements combine to form two or more than two compounds, the weights of one of the elements which combine with a fixed weight of the other, bear a simple whole number ratio.
d. Law of reciprocal proportions
When two different elements combine separately with the same weight of a third element, the ratio in which they do so will be the same or some simple multiple of the ratio in which they combine with each other.
e. Gay Lussac’s law of combing volumes
Under similar conditions of temperature and pressure, whenever gases react together, the volumes of the reacting gases as well as products (if gases) bear a simple whole number ratio.
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Askiitians
Part 2
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Askiitians
1.6 Laws of Chemical Combination
1.6. Laws of chemical combination
a. Law of conservation of massDuring any physical or chemical change, the total mass of the products is equal to the total mass of reactants.
b. Law of constant proportions
A pure chemical compound always contains same elements combined together in the same definite proportion by weight.
c. Law of multiple proportions
When two elements combine to form two or more than two compounds, the weights of one of the elements which combine with a fixed weight of the other, bear a simple whole number ratio.
d. Law of reciprocal proportions
When two different elements combine separately with the same weight of a third element, the ratio in which they do so will be the same or some simple multiple of the ratio in which they combine with each other.
e. Gay Lussac’s law of combing volumes
Under similar conditions of temperature and pressure, whenever gases react together, the volumes of the reacting gases as well as products (if gases) bear a simple whole number ratio.
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Askiitians
Part 2
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Askiitians
XI - 1.5 Chemical Classification of Matter - Video Lectures
Class XI -
1.5 Chemical Classification of Matter - Video Lectures
1.5. Chemical classification of matter
1. ElementFurther classification: Metals, non-metals, metalloids
2. Compound
Further classification: Inorganic and organic
3. Mixture
Further classification: Homogeneous mixtures - they are called solutions.
Heterogeneous mixtures: They have visible boundaries of separation between the different constituents and they can be easily seen with naked eye.
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Linda Hanson
Sunday, May 1, 2016
Video Lectures 1.4 Measurement and Significant Figures
Video Lectures 1.4 Measurement and Significant Figures
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Issacs Teach
Accuracy
Accuracy is a measure of the difference between the true value (the value to be measured) and the value measured by an instrument.
Precision is depends totally on the instrument and it is the difference between measurements of the same dimension made number of times. It is expressed as the difference between one measurement and the arithmetic mean of the number of measurements.
Significant figures: Significant figures in a number are include all the certain digits plus one doubtful digit.
If a number has 4 significant figures or digits, it means 3 of them are certain and fourth one is doubtful.
Rules for determining the number of significant figures
1. All non-zero digits are significant
Decimal place does not determine the number of significant figures.
2. A zero becomes significant in case it comes between two non-zero numbers.
3. The zeros at the beginning of a number are not significant.
For example 0.0004 has only one significant figure.
4. All zeros placed to right of a number are significant. They represent the precision of the measuring scale.
For example 267.000 has six significant figures.
(The precision does not come by writing the number. It comes because the instrument has the ability to read a number certainly up to that level of measurement.)
Rules of calculations involving significant figures
Rule 1. The final result of addition or subtraction should be reported up to the same number of decimal places as are present in the term having the least number of decimal places.
Example- addition of three numbers
6.414
2.3
0.501
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9.215 is the answer but the answer should be reported up to one decimal place only as 2.3 is the term having least number of decimal places.
Hence correct answer is 9.2
Rule 2. In multiplication or division, the final result should be reported up to the same number of significant figures as are present in the term with the least number of significant figures.
Example: 4.2345*1.25 = 5.293125
The final result should be reported up to three significant figures only as 1.25 has three significant figures. Hence the correct answer to be reported is 5.29.
Rounding off figures of retention of significant figures.
i) If the digit coming after the desired number of significant figures happens to be more than 5, the preceding digit or figure is increased by 1.
ii) If that digit is less than 5, it is neglected and hence the preceding significant figure remains unchanged.
iii) If that digit happens to be 5, the preceding digit is increased by one in case it is odd number. If preceding digit is an even number, it remains the same.
If the problem has number of steps, the rounding off is to be done at the final answer level only.
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