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Vector Algebra PPT Maths Class 12

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 Page 1


Introduction to Vectors 
What is a vector?
Algebra of vectors
The scalar product
Page 2


Introduction to Vectors 
What is a vector?
Algebra of vectors
The scalar product
What is a Scalar?
• Scalars are quantities 
that are simply 
defined by a 
magnitude.
• For example the mass 
of an object just has a 
magnitude, so it is a 
scalar quantity.
Another example 
of a scalar is 
speed!
Page 3


Introduction to Vectors 
What is a vector?
Algebra of vectors
The scalar product
What is a Scalar?
• Scalars are quantities 
that are simply 
defined by a 
magnitude.
• For example the mass 
of an object just has a 
magnitude, so it is a 
scalar quantity.
Another example 
of a scalar is 
speed!
Without Scalars We Wouldn’t Be Able To 
Model
Temperature.
Mass of an object.
Page 4


Introduction to Vectors 
What is a vector?
Algebra of vectors
The scalar product
What is a Scalar?
• Scalars are quantities 
that are simply 
defined by a 
magnitude.
• For example the mass 
of an object just has a 
magnitude, so it is a 
scalar quantity.
Another example 
of a scalar is 
speed!
Without Scalars We Wouldn’t Be Able To 
Model
Temperature.
Mass of an object.
What is a Vector?
• A vector quantity has 
both a direction and a 
magnitude (size).
• For example velocity 
is a speed in some 
given direction, for 
example wind.
The wind is blowing 
8 mph in a westerly 
direction.
Page 5


Introduction to Vectors 
What is a vector?
Algebra of vectors
The scalar product
What is a Scalar?
• Scalars are quantities 
that are simply 
defined by a 
magnitude.
• For example the mass 
of an object just has a 
magnitude, so it is a 
scalar quantity.
Another example 
of a scalar is 
speed!
Without Scalars We Wouldn’t Be Able To 
Model
Temperature.
Mass of an object.
What is a Vector?
• A vector quantity has 
both a direction and a 
magnitude (size).
• For example velocity 
is a speed in some 
given direction, for 
example wind.
The wind is blowing 
8 mph in a westerly 
direction.
Without Vectors We Wouldn’t Be Able To 
Model
Torque and 
circular motion.
The forces acting 
on an aircraft.
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FAQs on Vector Algebra PPT Maths Class 12

1. What is vector algebra in the context of JEE?
Ans. Vector algebra in the context of JEE refers to the mathematical operations and concepts used to manipulate and analyze vectors. It involves operations such as addition, subtraction, multiplication, and division of vectors, as well as concepts like dot product, cross product, and vector equations.
2. How can vector algebra be applied to solve JEE problems?
Ans. Vector algebra can be applied to solve JEE problems by representing physical quantities as vectors and using vector operations to manipulate and analyze them. It allows for the simplification of complex problems, visualization of geometric relationships, and determination of unknown quantities using vector equations and properties.
3. What are the properties of vector algebra that are important for JEE preparation?
Ans. Some important properties of vector algebra for JEE preparation include the commutative and associative properties of vector addition, distributive property of scalar multiplication, the dot product of two vectors being commutative and distributive, and the cross product being anticommutative and distributive.
4. Can vector algebra be used to solve problems in three-dimensional space?
Ans. Yes, vector algebra can be used to solve problems in three-dimensional space. In fact, it is particularly useful in three dimensions as it allows for the representation and manipulation of vectors and their components in three coordinate axes. The concepts of dot product, cross product, and vector equations can be extended to three dimensions as well.
5. Are there any special techniques or formulas related to vector algebra that can help in JEE preparation?
Ans. Yes, there are several special techniques and formulas related to vector algebra that can be helpful in JEE preparation. Some examples include the projection of a vector onto another vector, the angle between two vectors using dot product, the area of a triangle using cross product, and the equation of a line or plane using vector equations. It is important to practice applying these techniques to various problem scenarios to develop proficiency.
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