Answer:
46.9 C
Explanation:
The heat released by the gold bar is equal to the heat absorbed by the water:
where:
is the mass of the gold bar
is the specific heat of gold
is the initial temperature of the gold bar
is the mass of the water
is the specific heat of water
is the initial temperature of the water
is the final temperature of both gold and water at equilibrium
We can re-arrange the formula and solve for T_f, so we find:
Answer:
Explanation:
Given:
Unkown:
Formula:
Step by step solution:
As we know the time period of pendulum is given by the equation
so here
L = length of the pendulum
Now on increasing the temperature due to thermal expansion the length of the pendulum will increase and due to this the time period of the pendulum will also increase
Now due to increase in time period of the pendulum the clock will become slow and it will give incorrect time due to this increase in temperature
Thermal expansion increases the pendulum period, and the clock will lose time
Simple Harmonic Motion is the motion of an object (repetitive movement) through its equilibrium point where the frequency of vibrations / oscillation per second is constant
The motion that occurs in the pendulum is one example of simple harmonic motion
Terms used:
Whereas the relationship T and f:
n = number of vibrations / oscillation
t = time (s)
Formula used:
From this formula shows that the period is proportional to the length of the pendulum rod.The longer the pendulum rod , the greater the amount of time in one vibration
If thermal expansion occurs in the pendulum clocks, the pendulum rod changes in length ,proportional to the temperature change, and increases the pendulum period, so the clock will lose time
The distance of the elevator
Rank the pendulums according to the number of complete cycles
the average velocity
Answer:
C. The final kinetic energy is equal to the initial potential energy.
Explanation:
Based on the Principle of energy conservation:
Sum of the Initial Energy = Sum of the Final Energy
Initial Kinetic Energy + Initial Potential Energy = Final Kinetic Energy + Final Potential Energy..........(1)
Since according to the question:
Initial Kinetic Energy = 0
Final Potential Energy = 0
The equation (1) above reduces to
Initial Potential Energy = Final Kinetic Energy
Any help would be much appreciated.
B) 0.0228938 m3
C) 0.5457875 m3
D) 0.0457875 m3
Answer: C) 0.5457875
Explanation: Charles' Law: This law states that volume is directly proportional to the temperature of the gas at constant pressure and number of moles.
(At constant pressure and number of moles)
where,
= initial volume of gas =
= initial temperature of gas =
= final volume of gas = 0?
= final temperature of gas =
Thus the final volume is
sliding friction
rolling friction
drag
Answer:
Drag friction.
Explanation:
If you have a solid object, go through air, it experiences drag because the air molecules push back a tiny bit. This drag is enhanced because in water, the molecules are more resistant than air, that's why if you try to run in knee deep water, you experience much more drag than when you are running with your legs out of the water.
2/What is the average speed of the object during the following interval in t=6 sec and t= 8 sec
(1) Distance = speed × time
Total distance = 10m/sec × 3sec = 30m
(2) Average speed = (25m/sec + 10m/s) ÷ 2 = 17.5m/sec