Q68.For 0 < 𝜃< 𝜋/ 2, if the eccentricity of the hyperbola 𝑥2 −𝑦2cosec2𝜃= 5 is √7 times eccentricity of the ellipse 𝑥2cosec2𝜃+ 𝑦2 = 5, then the value of 𝜃 is: (1) 𝜋 (2) 5𝜋 6 12 𝜋 𝜋 (3) (4) 3 4
What This Question Tests
This problem requires calculating eccentricities for both a given hyperbola and an ellipse, relating them using the provided condition, and then solving a trigonometric equation to find the value of θ.
Concepts Tested
Formulas Used
e_h² = 1 + b²/a² (hyperbola)
e_e² = 1 - b²/a² (ellipse)
cosec²θ = 1/sin²θ
cos(2θ) = 1 - 2sin²θ
📚 NCERT Sections This Tests
2.1 — Two Charges 5 × 10–8 C And –3 × 10–8 C Are Located 16 Cm Apart. At
Physics Class 11 · Chapter 2
2.1 Two charges 5 × 10–8 C and –3 × 10–8 C are located 16 cm apart. At what point(s) on the line joining the two charges is the electric potential zero? Take the potential at infinity to be zero.
9.17 — (A) Sin I¢C = 1.44/1.68 Which Gives I¢C = 59°. Total Internal Reflection
Physics Class 12 · Chapter 9
9.17 (a) sin i¢c = 1.44/1.68 which gives i¢c = 59°. Total internal reflection takes place when i > 59° or when r < rmax = 31°. Now, (sin i /sin r max max ) = 1.68 , which gives imax ~ 60°. Thus, all incident rays of angles in the range 0 < i < 60° will suffer total internal reflections in the pipe. (If the length of the pipe is finite, which it is in practice, there will be a lower limit on i determined by the ratio of the diameter to the length of the pipe.) (b) If there is no outer coating, i¢c = sin–1(1/1.68) = 36.5°. Now, i = 90° will have r = 36.5° and i¢ = 53.5° which is greater than i¢c. Thus, all incident rays (in the range 53.5° < i < 90°) will suffer total internal reflections.
2.5 — A Parallel Plate Capacitor With Air Between The Plates Has A
Physics Class 11 · Chapter 2
2.5 A parallel plate capacitor with air between the plates has a capacitance of 8 pF (1pF = 10–12 F). What will be the capacitance if the distance between the plates is reduced by half, and the space between them is filled with a substance of dielectric constant 6?
📋 Question Details
- Chapter
- Hyperbola
- Topic
- Eccentricity of hyperbola and ellipse
- Year
- 2024
- Shift
- 01 Feb Shift 1
- Q Number
- Q68
- Type
- MCQ
- NCERT Ref
- Class 11 Mathematics Ch 11: Conic Sections
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