Answer:
Observed time, t = 5.58 s
Explanation:
Given that,
Speed of light in a vacuum has the hypothetical value of, c = 18 m/s
Speed of car, v = 14 m/s along a straight road.
A home owner sitting on his porch sees the car pass between two telephone poles in 8.89 s.
We need to find the time the driver of the car measure for his trip between the poles. The relation between real and observed time is given by :
t is observed time.
So, the time observed by the driver of the car measure for his trip between the poles is 5.58 seconds.
Answer:
angle = 0.058699 degree
width of central maximum is 3.170566 × m
distance D = 1.55 m
wavelength w = 543 nm = 543× m
to find out
angle θ and width of the central maximum
solution
we know according to first condition first dark that mean
wavelength = dsinθ
so put value and find θ
543× = 0.530× ×sinθ
sinθ = 543× / 0.530×
sinθ = 1.02452 × [tex]10^{-3}
θ = 0.058699 degree
and
we can say
tanθ = y/D
here y is width of central maximum Y = 2y
put all value we get y
so y = D tanθ
y = 1.55 (tan0.0586)
y = 1.58528 × [tex]10^{-3} m =
so Y = 2 ( 1.58528 × [tex]10^{-3} )
so width of central maximum is 3.170566 × [tex]10^{-3} ) m
Answer:
Explanation:
Magnetic moment of current carrying loop
= current x area
= 2 x π x .1²
M = .0628 unit . it is in j direction so vecor form of it
M = .0628 j
Magnetic field B = 3i + 4 j
Energy
= - M.B
- .0628 j . ( 3i + 4 j )
= - .2512 J
Energy is the capacity to do work but not to produce heat. In physics, energy can exist in various forms, including mechanical and thermal energy.
Energy is the capacity to do work and is an important concept in physics. In the context of this question, it is stated that energy is the capacity to do work but not to produce heat. This highlights the distinction between the two forms of energy. For example, mechanical energy can be used to perform work on an object and cause it to move, while thermal energy is associated with heat and not directly related to work. However, it's important to note that energy can be converted from one form to another, such as converting mechanical energy to thermal energy in a friction process.
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Answer:
6779.7m/s
Explanation:
Using
GMm/(Re +h)² = mv²/ (Re+h)
So making v subject we have
V= √GM/Re+h
So
V = √ 6.67*10^-11 x 5.97*10^24/(6371+2300)*10^3
V= 6779.7m/s
Note h = height of satellite
Re= radius of the earth
M = mass of the earth
the speed at which the person falls
the change in kinetic and potential energy
the location where potential energy is zero
Answer:
the location where potential energy is zero
Explanation:
Answer:
Air resistance
Explanation:
Air resistance encountered as the person falls
Answer:
The frequency of the damped vibrations is 3.82 Hz.
Explanation:
Given that,
Spring constant = 20 lb/in
Damping force = 10 lb
Velocity = 20 in/sec
Weight = 12 lb
We need to calculate the damping constant
Using formula of damping force
Put the value into the formula
We need to calculate the frequency
Using formula of angular frequency
Put the value into the formula
We need to calculate the frequency of the damped vibrations
Using formula of frequency
Put the value into the formula
Hence, The frequency of the damped vibrations is 3.82 Hz.