Answer:
a)
b)
Explanation:
Given:
(a)
Using the equation of motion :
..............................(1)
where:
v=final velocity of the body
u=initial velocity of the body
here, since the body starts from rest state:
putting the values in eq. (1)
Now, the momentum of the body just before the jump onto the tyre will be:
Now using the conservation on momentum, the momentum just before climbing on the tyre will be equal to the momentum just after climbing on it.
(b)
Now, from the case of a swinging pendulum we know that the kinetic energy which is maximum at the vertical position of the pendulum gets completely converted into the potential energy at the maximum height.
So,
above the normal hanging position.
The unit that should be used to measure energy when calculating specific heat capacity is Energy is in Joules ( J ).
The specific heat capacity should be determined in joules per kilogram degree-celsius ( J k g − 1 ∘ C − 1 ).
It is to be supplied for the substance with respect to mass and it increased the temperature.
Hence, The unit that should be used to measure energy when calculating specific heat capacity is Energy is in Joules ( J ).
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The unit used to measure energy when calculating specificheat capacity is the joule (J).
The joule (J), a unit used to quantify energy, is used to calculate specific heat capacity. In the International System of Units (SI), the joule serves as the default unit of energy.
It is described as the quantity of energy that is delivered when one newton of force is exerted across a one-meter distance.
Thus, the quantity of heat energy needed to increase the temperature of a particular substance by a specific amount is measured as specificheat capacity. J/kg°C, or joules per kilogramme per degree Celsius, is the unit of measurement.
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Answer:
Energy,
Explanation:
It is given that,
Wavelength of the photon,
We need to find the photon representing the particle interpretation of this light. it is given by :
So, the energy of the photon is . Hence, this is the required solution.
Answer:
90 m/s
Explanation:
The formula for velocity of wave in a string is given as,
v' = √(T/m') ................ Equation 1
Where v' = velocity of the string, T = Tension on the string, m' = mass per unit length of the string.
Given: T = 4050 N, and
m' = m/l where m = mass of the string, l = length of the spring.
m = 0.5 kg, l = 1 m
m' = 0.5/1 = 0.5 kg/m
Substitute into equation 1
v' = √(4050/0.5)
v' = √(8100)
v' = 90 m/s.
Hence the velocity of the wave in the string = 90 m/s
If f1= 300, F2= 60, and f2=260, find f1 to the nearest unit.
Answer:
F1 = 80
Explanation:
f1= f2 √ (F1/F2)
Where f1 = 300, f2 = 260 and F2 = 60
Putting in the above formula
300 = 260√(F1/60)
Dividing both sides by 260
=> 1.15 = √(F1/60)
Squaring both sides
=> 1.33 = F1/60
Multiplying both sides by 60
=> F1 = 80
The length of the chain such that the gate is just on the verge of opening is mathematically given as
l=8.58m
Generally, the equation for the is mathematically given as
Therefore
Fh= 77048 N
Where
ycp-y=0.00625
In conclusion, resultant force
x = F'' - W
x = 9810* 10*( \pi/4 )*0.25^2 *(10-l)-200
x = 4615.5-481.5 l
Therefore
77048* 0.00625 - 1 *(4615.5-481.5 l) = 0
l=8.58m
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Answer:
Explanation:
given,
length of lever = 1 m
diameter of cylinder = 25 cm
weight of cylinder = 200 N
hydrostatic force
=
= 77048 N
now,
=
= 0.00625 m
Finding the resultant force
F = 4615.5-481.5 l
taking moment about hinge
l = 8.58 m