Answer:
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Explanation:
Answer:
The time interval is
Explanation:
From the question we are told that
The angular acceleration is
The time taken is
The angular displacement is
The angular displacement can be represented by the second equation of motion as shown below
where is the initial velocity at the start of the 4 second interval
So substituting values
=>
Now considering this motion starting from the start point (that is rest ) we have
Where is the angular velocity at rest which is zero and is the angular velocity after 4.0 second which is calculated as 12 rad/s s
=>
Answer:
447 K
Explanation:
25 C = 25 + 273 = 298 K
Assuming ideal gas, we can apply the ideal gas law
Since pressure is tripled, then . Volume is halved, then
Answer:
An ultra intense laser is one with which intensities greater than 1015 W cm-2 can be achieved.
Explanation:
This intensity, which was the upper limit of lasers until the invention of the Chirped Pulse Amplification, CPA technique, is the value around which nonlinear effects on the transport of radiation in materials begin to appear.
Currently, the most powerful lasers reach intensities of the order of 1021W cm-2 and powers of Petawatts, PW, in each pulse. This range of intensities has opened the door for lasers to a multitude of disciplines and scientific areas traditionally reserved for accelerators and nuclear reactors, applying as generators of high-energy electron, ion, neutron and photon beams, without the need for expensive infrastructure.
Answer:
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