Please select a subject first
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Suggest any four corrective measures for round shoulders.
Concept: Common Postural Deformities: Round Shoulders
List down any four asanas used for the prevention of Hypertension. Explain the procedure and contraindication of any one of them with the help of a stick diagram.
Concept: Yoga Asanas to Prevent Hypertension
First Deaflympic Games was organized in the year ______.
Concept: Organizations Promoting Disability Sports: Deaflympics
Match the following:
| List-I | List-II | ||
| I. | Plate Tapping Test | 1. | Upper body strength endurance of boys |
| II. | Push-up | 2. | Speed and coordination of limb movement/Reaction time |
| III. | Partial Curl up | 3. | Upper body strength endurance of girls |
| IV. | Modified push-up | 4. | Abdominal strength |
Choose the correct option from the following:
Concept: Fitness Test – SAI Khelo India Fitness Test in School
Make a table of test items listed under fitness test by SAI (Age group 9-18 yrs).
Concept: Fitness Test – SAI Khelo India Fitness Test in School
Explain the procedure and scoring of 50 MTS Run.
Concept: 50 MTR Dash (Standing Start)
Explain the procedure and scoring of partial curl-up.
Concept: Abdominal (Partial Curl-up)
Elucidate any six effects of exercise on muscular system.
Concept: Effect of Exercise on Muscular System
Which of the following is NOT the factor affecting projectile trajectory?
Concept: Factors Affecting Projectile Trajectory/ Flight Path in Sports
The ability to tolerate higher concentrations of ______ can help in improving endurance performance.
Concept: Methods to Develop Endurance
Explain any two methods to develop flexibility.
Concept: Methods to Improve Flexibility
How does the electric flux due to a point charge enclosed by a spherical Gaussian surface get affected when its radius is increased?
Concept: Electric Flux
(a) Derive an expression for the electric field E due to a dipole of length '2a' at a point distant r from the centre of the dipole on the axial line.
(b) Draw a graph of E versus r for r >> a.
(c) If this dipole were kept in a uniform external electric field E0, diagrammatically represent the position of the dipole in stable and unstable equilibrium and write the expressions for the torque acting on the dipole in both the cases.
Concept: Electric Lines of Force
An infinitely large thin plane sheet has a uniform surface charge density +σ. Obtain the expression for the amount of work done in bringing a point charge q from infinity to a point, distant r, in front of the charged plane sheet.
Concept: Uniformly Charged Infinite Plane Sheet and Uniformly Charged Thin Spherical Shell (Field Inside and Outside)
- Define torque acting on a dipole of dipole moment \[\vec{p}\] placed in a uniform electric field \[\vec{E}\] Express it in the vector from and point out the direction along which it acts. Express it in the vector from and point out the direction along which it acts.
- What happens if the field is non-uniform?
- What would happen if the external field
\[\vec{E}\] is increasing (i) parallel to \[\vec{p}\] and (ii) anti-parallel to \[\vec{p}\]?
Concept: Electric Dipole
A point charge (+Q) is kept in the vicinity of an uncharged conducting plate. Sketch the electric field lines between the charge and the plate?
Concept: Electric Lines of Force
A hollow cylindrical box of length 1 m and area of cross-section 25 cm2 is placed in a three dimensional coordinate system as shown in the figure. The electric field in the region is given by `vecE = 50xhati` where E is NC−1 and x is in metres. Find
(i) Net flux through the cylinder.
(ii) Charge enclosed by the cylinder.

Concept: Electric Field >> Electric Field Due to a System of Charges
A charge ‘q’ is placed at the centre of a cube of side l. What is the electric flux passing through each face of the cube?
Concept: Gauss’s Law
Define dipole moment of an electric dipole. Is it a scalar or a vector?
Concept: Electric Dipole
An electric dipole of dipole moment `vecP` is placed in a uniform electric field `vecE` with its axis inclined to the field. Write an expression for the torque `vecT` experienced by the dipole in vector form. Show diagrammatically how the dipole should be kept in the electric field so that the torque acting on it is:
- maximum
- Zero
Concept: Dipole in a Uniform External Field
