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SCO-51, Sec-13, Shopping Complex, Hisar. Ph. 9896810009 
Ambition Institute
IIT-JEE AIPMT KVPY
Boards
Topic :- Vectors (Sheet)
Helpline No. +91-9896810009
Page 2


SCO-51, Sec-13, Shopping Complex, Hisar. Ph. 9896810009 
Ambition Institute
IIT-JEE AIPMT KVPY
Boards
Topic :- Vectors (Sheet)
Helpline No. +91-9896810009
SCO-51, Sec-13, Shopping Complex, Hisar. Ph. 9896810009 
Page 3


SCO-51, Sec-13, Shopping Complex, Hisar. Ph. 9896810009 
Ambition Institute
IIT-JEE AIPMT KVPY
Boards
Topic :- Vectors (Sheet)
Helpline No. +91-9896810009
SCO-51, Sec-13, Shopping Complex, Hisar. Ph. 9896810009 SCO-51, Sec-13, Shopping Complex, Hisar. Ph. 9896810009 
Page 4


SCO-51, Sec-13, Shopping Complex, Hisar. Ph. 9896810009 
Ambition Institute
IIT-JEE AIPMT KVPY
Boards
Topic :- Vectors (Sheet)
Helpline No. +91-9896810009
SCO-51, Sec-13, Shopping Complex, Hisar. Ph. 9896810009 SCO-51, Sec-13, Shopping Complex, Hisar. Ph. 9896810009 SCO-51, Sec-13, Shopping Complex, Hisar. Ph. 9896810009 
Page 5


SCO-51, Sec-13, Shopping Complex, Hisar. Ph. 9896810009 
Ambition Institute
IIT-JEE AIPMT KVPY
Boards
Topic :- Vectors (Sheet)
Helpline No. +91-9896810009
SCO-51, Sec-13, Shopping Complex, Hisar. Ph. 9896810009 SCO-51, Sec-13, Shopping Complex, Hisar. Ph. 9896810009 SCO-51, Sec-13, Shopping Complex, Hisar. Ph. 9896810009 SCO-51, Sec-13, Shopping Complex, Hisar. Ph. 9896810009 
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FAQs on Vector Assignment - Class 11 Physics for Competitive Examination

1. What is a vector in physics?
Ans. A vector in physics is a quantity that has both magnitude and direction. It is represented by an arrow, where the length of the arrow represents the magnitude and the direction of the arrow represents the direction. Examples of vector quantities include displacement, velocity, acceleration, and force.
2. How are vectors represented in mathematics?
Ans. Vectors in mathematics are represented using coordinate notations or component form. In a coordinate notation, a vector is represented by its initial and terminal points in a coordinate system. In component form, a vector is represented by its components along the coordinate axes. For example, a vector in three-dimensional space can be represented as (x, y, z), where x, y, and z are the components along the x, y, and z axes respectively.
3. What is the difference between a scalar and a vector quantity?
Ans. A scalar quantity in physics is a quantity that has only magnitude and no direction. Examples of scalar quantities include distance, speed, time, and temperature. On the other hand, a vector quantity has both magnitude and direction. Examples of vector quantities include displacement, velocity, acceleration, and force.
4. How can vectors be added or subtracted?
Ans. Vectors can be added or subtracted using graphical or algebraic methods. In the graphical method, vectors are represented by arrows and added or subtracted by placing the tail of one vector at the head of the other vector. The resultant vector is then the vector from the tail of the first vector to the head of the second vector. In the algebraic method, vectors are represented by their components and added or subtracted component-wise. The resultant vector is then obtained by adding or subtracting the corresponding components.
5. What is the unit of a vector quantity?
Ans. The unit of a vector quantity depends on the specific vector quantity being considered. For example, the unit of displacement is meters (m), the unit of velocity is meters per second (m/s), the unit of acceleration is meters per second squared (m/s^2), and the unit of force is newtons (N). It is important to note that the unit of a vector quantity includes both the magnitude and direction.
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