Answer:
E = 1.76 J
Explanation:
Given that,
Mass of an object, m = 0.4 kg
It moves by a vertical distance of 0.45 m in the Earth's gravitational field.
We need to find the change in its gravitational potential energy. It can be given by the formula as follow :
So, the change in its gravitational potential energy is 1.76 J.
Answer:
Gravity
Explanation:
Gravity is constantly pulling objects downward. Without it, everything would float out into space.
I hope this answer helps :)
Answer:
The answer for the given question above would be option C. GRAVITATIONAL FORCE. Based on the given scenario above of a leaf that falls to the ground when Tonya let it go, the force that pulled the leaf to the ground is the gravitational force. This kind of force is a force that attracts any object with mass.
Hope this helps!!!
Answer:
The net downward force on the tank is
Explanation:
Given that,
Area = 1.60 m²
Suppose the design of a cylindrical, pressurized water tank for a future colony on Mars, where the acceleration due to gravity is 3.71 meters per second per second. The pressure at the surface of the water will be 150 K Pa , and the depth of the water will be 14.4 m . The pressure of the air in the building outside the tank will be 88.0 K Pa.
We need to calculate the net downward force on the tank
Using formula of formula
Where, P = pressure
g = gravity at mars
h = height
A = area
Put the value into the formula
Hence, The net downward force on the tank is
The net downward force on the tank's flat bottom can be found by calculating the pressure at the bottom of the container.
Since the density is constant, the weight can be calculated using the density:
w = mg = pVg = pAhg.
The pressure at the bottom of the container is therefore equal to atmospheric pressure added to the weight of the fluid divided by the area.
#SPJ3
Answer:
Wavelength = 0.66 meters
Explanation:
Given the following data;
Speed = 330 m/s
Frequency = 500 Hz
To find the wavelength;
Mathematically, wavelength is calculated using this formula;
Substituting into the equation, we have;
Wavelength = 0.66 meters
Answer:
It will take 313.376 sec to raise temperature to boiling point
Explanation:
We have given that potential difference V = 120 Volt
Current i = 4.50 A
So resistance
Heat flow in resistor will be equal to
It is given that this heat is used for boiling the water
Mass of the water = 0.525 kg = 525 gram
Specific heat of water 4.186 J/gram/°C
Initial temperature is given as 23°C
Boiling temperature of water = 100°C
So change in temperature = 100-23 = 77°C
Heat required to raise the temperature of water
So
t = 313.376 sec
So it will take 313.376 sec to raise temperature to boiling point
Answer:
Explanation:
Voltage, V = 120 V
Current, i = 4.5 A
mass of water, m = 0.525 kg
initial temperature of water, T1 = 23°C
Final temperature of water, T2 = 100 °C
specific heat of water, c = 4.18 x 1000 J/kg °c
let the time taken is t.
Heat given by the heater = heat gain by the water
V x i x t = m x c x (T2 - T1)
120 x 4.5 x t = 0.525 x 4.18 x 1000 x (100 - 23)
540 t = 47701.5
t = 88.34 s
Stress built up in a rock fault
Heat given off by a forest fire
Water flowing through a hose
Answer:
B
Explanation:
stress built up on a rock fault