Explanation:
Hey there!
Given;
Mass of the Earth (M) = 6.0*10^24kg.
Radius of Earth (R) = 6400km = 6400*1000= 6.4*10^6.
Gravitational constant (G) = 6.67*10^-11Nm^2/kg^2.
Height from surface of Earth (h) = 350km= 3.5*10^5m
Gravity (g) = ?
We have;
Where "G" is gravitational constant, "M" is mass of earth, "g" is acceleration due to gravity, "h" height from surface of Earth.
Keep all values.
g=8.7m/s^2
Therefore,gravityfromdistance350kmabove theEarth'ssurfaceis8.7m/s^2.
Hopeithelps...
Continental Tropical
The approximate horizontal component of the initial velocity is 12.3 m/s
When an object is thrown at an angle from the horizontal direction, the object is said to be in projectile motion. The object which follows the projectile motion.
Given is Ronnie kicks a playground ball with an initial velocity of 16 m/s at an angle of 40° relative to the ground.
The horizontal component of the projectile is
Vx= V cosθ
Substitute the values, we get
Vx = 16 cos(40) =
Vx =12.3 m/s
Thus, approximate horizontal component of the initial velocity is 12.3 m/s.
Learn more about projectile.
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Answer:
Explanation:
Given the wave function
y(x,t) = 0.340 sin (15πt − 4πx + π/4)
Generally a wave function is of the form
y(x, t) = A•Sin(wt - kx + θ)
Where
A is amplitude
w is angular frequency
θ is the phase angle
k is the wave number.
Then, comparing this with given wave function
k = 4π, w = 15π and θ = π/4
Speed and direction?
The speed of a wave function can be determined using wave equation
v = fλ
w = 2πf
Then, f = w/2π = 15π/2π = 7.5Hz
Also k = 2π/λ
Then, λ = 2π/k = 2π/4π = 0.5 m
Then,
v = fλ = 7.5 × 0.5
v = 3.75m/s
Direction
Since the time and distance coefficient have opposite sign, for an increasing time interval, the translation will have to increase in the positive direction to nullify the change and maintain the phase. Hence, the wave is traveling in the positive x direction
B. refraction
C. destructive bending
D. constructive bending
Current = 4 amps
Resistance =
Explanation:
Given that,
Voltage, V = 220 V
Current, I = 4 A
We have to find the resistance of the appliance.
Ohm's law gives the relation between the current, resistance and the voltage.
V = I R, R = resistance
So,
Resistance of the appliance is .
Hence, this is the required solution.
4.7
5.7