Answer:
A. The wires exert equal magnitude attractive forces on each other.
Explanation:
Magnetic field due to current i on current 2i
B₁ = 10⁻⁷ x 2 i / r where r is distance between the two wires
Force on wire II due to wire I per unit length
= magnetic field x current in wire II
= B₁ x 2 i
= [ 10⁻⁷ x 2 i / r ] x 2i
= 4 x 10⁻⁷ i² / r
Magnetic field due to current 2i on current i
B₂ = 10⁻⁷ x 4 i / r where r is distance between the two wires
Force on wire I due to wire II per unit length
= magnetic field x current in wire I
= B₂ x i
= [ 10⁻⁷ x 4 i / r ] x i
= 4 x 10⁻⁷ i² / r
So final forces on each wire are same .
This force will be attractive in nature . The direction of force can be known from fleming's right hand rule .
Answer:
Rocket will go to a height of 8.678 m
Explanation:
Mass of the rocket m = 50 gram = 0.05 kg
Spring constant k = 1050 N /m
Spring is stretched to 9 cm
So x = 0.09 m
Work done in stretching the spring
From energy conservation this energy will convert into potential energy
Potential energy is equal to , here m is mass, g is acceleration due to gravity and h is height
So
So rocket will go to a height of 8.678 m
Answer:
8.68 m
Explanation:
compression in spring, x = 9 cm = 0.09 m
Spring constant, K = 1050 N/m
mass of rocket, m = 50 g = 0.05 kg
Let it go upto height h.
Use conservation of energy
Potential energy stored in spring = potential energy of the rocket
0.5 x 1050 x 0.09 x 0.09 = 0.05 x 9.8 x h
h = 8.68 m
Thus, the rocket will go upto height 8.68 m.
Answer:
Light travels as a wave. But unlike sound waves or water waves, it does not need any matter or material to carry its energy along. This means that light can travel through a vacuum—a completely airless space. It speeds through the vacuum of space at 186,400 miles (300,000 km) per second.
Explanation:
Hope this helps :))
B. 60 cm
C. 75 cm
D. 90 cm
Answer:
- 48.55 degree
Explanation:
Resistance increases when temperature increases. This increase is linear and which is defined by the following relation between resistance and temperature
is resistance at temperature t , R₀ is resistance at temperature t₀ , t is rise in temperature and α is temperature coefficient of resistance .
Putting the values we get
125 = 99.6 ( 1 + 3.72x 10⁻³ x t )
t = 68.55
Therefore temperature of boiling chlorine is 20-68.55 = - 48.55 degree celsius .
To solve this problem it is necessary to apply Snell's law and thus be able to calculate the angle of refraction.
From Snell's law we know that
Where,
n_i = Refractive indices of each material
= Angle of incidence
= Refraction angle
Our values are given as,
Replacing
Re-arrange to find
Therefore the angle will the beam make with the normal in the glass is 26°
A distance of d is covered with 53 mile/hr initially.Time taken to cover this distance t1 = d/53 hourNext distance of d is covered with x mile hours.Time taken to cover this distance t2 = d/x hours.We have average speed = 26.5 mile / hour
= Total distance traveled/ total time taken
=