Answer:
This is not a clear indication of the hot zone as the information of the radioactivity of the background is not provided clearly.
Explanation:
According to IAEA as well as NRCP, the hot area is defined on the basis of the radioactivity reading it shows instead of contrast or comparative reading from the background. The value of radiation activity which will be required to declare an area as hot zone is if it is greater than 0.1 mSv/h or
.
The angle at which an observer draw an object to convert it from 3D to 2D plane such as real object image to a plane paper is known as angle of projection. There are two angle of projection used in drawing: 1st angle of projection(first quadrant of coordinate plane)
Answer:
The last option is the correct answer. EDX will equal 40 on line 6
Explanation:
An element is pushed into stack at line no. 04 and call instruction at line no. 05 pushes a return address.
The return addrees is the instruction address followed by call function.In this scenario it is the address of line 6.
Now, the subroutine pops the return address from the stack,i,e. it pops 40 from the stack into edx and then puts the return address back in the stack, and returns.
Therefore, edx contains the value 40 when it returns from subroutine,
When a technician is ohming out a load in a circuit, the reading that the technician should get if the load is good is some numbers.
<h3>What does Ohming out a circuit mean?</h3>
The term “Ohming out a motor” is known to be the act of measuring the electrical resistance that is present in the motor windings and comparing it with the normal values.
Note that When a technician is ohming out a load in a circuit, the reading that the technician should get if the load is good is some numbers as it will tell if there is a measure of comparison or not.
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Explanation:
Specific cutting energy:
It the ratio of power required to cut the material to metal removal rate of material.If we take the force required to cut the material is F and velocity of cutting tool is V then cutting power will be the product of force and the cutting tool velocity.
Power P = F x V
Lets take the metal removal rate =MRR
Then the specific energy will be

If we consider that metal removal rate and cutting tool velocity is constant then when we increases the cutting force then specific energy will also increase.