Answer:
45.6°C
Explanation:
Kinetic energy =
Use m= 1.80kg and v=7.80m/s (mass and speed of hammer).
K = 0,5*1.80kg*(7.80m/s)^2 = K=54.8J
Heat is 60% of Kinetic energy. Q = 0.6*54.8J = 32.9J
As it is stuck 10 times the total heat is 10*32.9J = Total Heat = 329J
Use the equation to find change of temperature:
Q = 329J; m = 8.00g of aluminium; C_v = 0.900J/g°C (For aluminium)
Calculating gives Change of Temperature = 45.6°C
b. electric engine
c. LP gas engine
d. Wankel engine
Answer:
Usually when climbing, it's best to be in the small front ring and the largest back ring. If your cadence is about 100 rpm, then whatever gear you're in is fine. It depends on the road, but as long as your pedaling is at a level you're comfortable with, you're fine.
Explanation:
Google answer by the way.
The acceleration of the race car after 12.0 seconds is -3.33 m/s^2.
To find the acceleration of the race car after 12.0 seconds, we need to use the formula for acceleration: acceleration = change in velocity / time. The initial velocity of the race car is 144 km/h, and it comes to a halt, so the final velocity is 0 km/h. We need to convert these velocities to meters per second (m/s) before using the formula.
Given that 1 km/h = 0.2778 m/s, the initial velocity is 144 km/h x 0.2778 m/s = 40 m/s. Similarly, the final velocity is 0 km/h x 0.2778 m/s = 0 m/s.
Plugging these values into the formula, we get: acceleration = (0 m/s - 40 m/s) / 12.0 s = -3.33 m/s^2.
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Covalent and Ionic
I believe that inflation explains why the universe appears to be the same in all directions (isotropic), why the cosmic microwave background radiation is distributed evenly.