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The helium leak testing takes advantage of the relatively small size of the helium atom as the indicating gas for detecting the smallest of leaks.

Therefore, it is a valuable test in searching for leaks in brazed assemblies.

In addition to alpha and beta decay, various uranium isotopes will also spontaneously decay by fission.

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Temperature now is about 277C and the Materialist model suggests the temperature would have been higher in the past. Visible crystal damage does not indicate any substantial additional leakage can be caused by subsequent decay events and in no case could it increase the age by more than a factor of two.

Helium leakage data firmly supports the validity of a young earth and casts doubt on the widely accepted yet fatally flawed conventional U-PB old earth age measurements.

By measuring the amount of remaining helium in samples at specific depth intervals, and knowing temperature at each interval, known leak rate with temperature establishes the activity level and time.

Actual helium measurements taken from core samples submitted to independent labs for blind testing revealed that the Earth’s age is roughly 6000 years (±2000 years). Evolutionary scientists performing the tests did not consider pressure to be a factor due to the hardness of the zircon crystals.

A leak this size would take approximately 3.17 years to leak one cubic centimeter of helium through the leak.

This makes it sufficiently sensitive to use as an acceptance test on the most critical of components.

The Carbon-14 (C) dating method is useful for dating organic material. Rubidium/Strontium decay is generally used to date igneous and metamorphic rock.

Potassium/Argon decay is used to measure ages of the “oldest” rocks.

If a leak is present, the gas analyzer in the unit alarms and the leak point may then be identified.

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