Answer:
The torque on the coil is
Solution:
No. of turns per meter length, n = 1400 turns\m
Current, I = 4.9 A
Angle,
No. of turns of coil, N = 42 turns
Area, A =
Current in the coil, I' = 0.45 A
Now,
To calculate the exerted torque on the coil:
The magnetic field, B produced inside the coil is given by:
Now, the torque exerted is given by:
Answer:
Explanation:
Given:
A long solenoid having
no. of turns per meter, n =1400
current, I = 4.9 A
A small coil of wire placed inside the solenoid
angle of orientation with respect to the axis of the solenoid, °
no. of turns in the coil, N = 42
area of the coil,
current in the coil,
We have for torque:
.......................(1)
∵................................(2)
where:
B= magnetic field
The permeability of free space =
Substitute B from eq. (2) into eq. (1) we have:
putting the respective values in above eq.
Answer:
They both rises to same height.
Explanation:
When an object is sliding up in friction less surface than according to conservation of energy its potential energy will be converted into kinetic energy.
Here, m is the mass, v is the velocity, g is the acceleration due to gravity and H is the height.
Here the height is independent on the mass of an object and its only depend on velocity.
Now according to the question, two objects have same velocity but they have different masses.
Therefore, they rises to the same height because height will not change with mass.
Let's recall Kinetic Energy Formula as follows:
Ek = Kinetic Energy ( Joule )
m = mass of the object ( kg )
v = speed of the object ( m/s )
Let us now tackle the problem !
Given:
initial speed of first object = initial speed of second object = v
final speed of first object = final speed of second object = 0
mass of first object = m
mass of second object = 2m
Asked:
height = H = ?
Solution:
We will use Conservation of Energy to solve this problem:
Both objects rise to the same height
Grade: High School
Subject: Physics
Chapter: Energy
Answer:
final velocity will be44.72m/s
Explanation:
HEIGHT=h=100m
vi=0m/s
vf=?
g=10m/s²
by using third equation of motion for bodies under gravity
2gh=(vf)²-(vi)²
evaluating the formula
2(10m/s²)(100m)=vf²-(0m/s)²
2000m²/s²=vf²
√2000m²/s²=√vf²
44.72m/s=vf
Answer:
44.2m/s
Explanation:
2gs = vf*2 - vi*2
2 x 9.8 x 100 = vf*2 - 0
1960 = vf*2
vf = 44.2 m/s
The force of gravity is the force with which massively large objects such as the earth attracts another object towards itself. All objects of the earth exert a gravity that is directed towards the center of the earth. Therefore, the force of gravity of the earth is equal to the mass of the object times acceleration due to gravity and also equal to the weight of the object.
F = ma
since F = W
W = ma
Answer:
Force = Mass x Acceleration
Explanation:
Force - The units of force = Newtons( N)
Mass - The units of mass = Kilograms (Kg)
Acceleration - Units of acceleration = (m/s2)