Answer:
C. 2000kg rated sling
Explanation:
ensures better safety and can carry twice more mass than current mass.
Answer:
Explanation:
Given that,
Frequency of the radio signal,
It is detected at a pint 2.1 km from the transmitter tower, x = 2.1 km
The amplitude of the electric field is, E = 800 mV/m
Let I is the intensity of the radio signal at that point. Mathematically, it is given by :
is the rms value of electric field,
So, the intensity of the radio signal at that point is . Hence, this is the required solution.
Answer:
It will take 29.31 seconds for the Boxster to catch the Scion
Explanation:
Given the data in the question;
lets say Toyota Scion xB is car A and Porsche Boxster convertible is B and Toyota Scion xB is car A
the distance travelled by car A is
x = × t
where is the speed of the car and t is time
the distance travelled by car B before reaching car A will be;
x + x₀ = × t
Now lets replace x by × t
so
( × t) + x₀ = × t
x₀ = ( × t) - ( × t)
x₀ = t ( - )
t = x₀ / ( - )
so we substitute
t = 170 m / (24.4 - 18.6)
t = 170 / 5.8
t = 29.31 s
Therefore; it will take 29.31 s for the Boxster to catch the Scion
Answer: The average kinetic energy of hydrogen atoms is
Explanation:
To calculate the average kinetic energy of the atom, we use the equation:
where,
K = average kinetic energy
k = Boltzmann constant =
T = temperature =
Putting values in above equation, we get:
Hence, the average kinetic energy of hydrogen atoms is
Answer:
Explanation:
Gauss' Law should be applied to find the E-field 3.9 cm from the surface of the sphere.
In order to apply Gauss' Law, an imaginary spherical shell (Gaussian surface) should be placed around the original sphere. The exact position of the shell must be 3.9 cm from the surface of the original sphere.
Gauss' Law states that
Here, the integral in the left-hand side is equal to the area of the imaginary surface. After all, the reason behind choosing the imaginary surface a spherical shell is to avoid this integral. The enclosed charge in the right-hand side is equal to the charge of the sphere, -84.0 nC. The radius of the imaginary surface must be 5 + 3.9 = 8.9 cm.
So,
Answer:
The charge that passes through the starter motor is .
Explanation:
Known Data
First Step: Find the number of the electrons per unit of volume in the wire
We use the formula .
Second Step: Find the drag velocity
We can use the following formula
Finally, we use the formula .
Answer:
Apparent frequency of the bell to the observer is 546.12 Hz
Explanation:
The frequency of train bell (frequency of source) = 505 Hz
The speed of train (observer) = 27.6 m/s
The speed of sound in the air is (velocity of sound) = 339 m/s
The apparent frequency of the bell to the observer is calculated as follows:
Apparent frequency of bell to the observer.