Link to the first video about Earth battery on YouTube here

– Clip 1 Introduction – Clip 2 Course Description – Clip 3 Test Parameters – Clip 4 Test Equipment – Clip 5 Overview – Clip 6 Steel Stripe – Clip 7 Remote Steel Stripe – Clip 8 Comparison First Steel stripe – Clip 9 Aluminium Plate – Clip 10 Aluminium Plate watered – Clip 11 Copper Plate – Clip 12 Copper Plate close to Zinc plate   Clip 13 Growing 1 –  Clip 14 Growing 2 –  Clip 15 Growing 3 –  Clip 16 Conclusion – Clip 17 End of Part 1

Clip 1

Clip 1

 This first part is the continuation of my experiments I have started 2 years ago. It also one power source we will utilise for our free energy systems. We investigate various metals in ground and measure electrical potential and current. I will also touch on the benefits it has for the vegetations in terms of growth rate.

Clip 2

Clip2

Earth Battery Part 1
Earth Battery Topology

– Compare the potential and current between Zinc and soft Steel
Aluminum and copper
– Touch on effects on vegetations by using metal and non metal in ground

Clip 3

Clip 3

Test Parameters

1. Zinc, Soft Steel, Aluminium and Copper

Clip 4

Clip 4

Test Equipment
Tools

– Handheld DMM

Clip 5

Clip 5

Overview

 In my first test I will use a soft steel stripe I have inserted in the ground 2 years ago. I will use copper and the aluminum plate for additional tests as well.

Clip 6

Clip 6

Clip 7

Clip 7

Clip 8

Clip 8

Clip 9

Clip 9

Clip 10

Clip 10

Clip 11

Clip 11

We insert the Copper plate for testing

Clip 12

Clip 12

Clip 13

Clip 13

Growing of strawberries in desolate soil

Clip 14

Clip 14

Clip 15

Clip 15

Clip 16

Clip 16

Conclusion

To achieve a high potential with an earth battery depends first on the metal in use.
Here the focus is to achieve the highest potential. This information is existing since
the early 18th century and should not surprise anybody. Many experiments and test
have been done to get the battery working as a galvanic element in terms of
electrochemical reaction. This form does create much higher current but also does
deplete and corrode the metal in the battery. This is not the case for an earth battery.
The more tricky part is that it is not clear cut to understand how to influence to achieve
high power. Watering that aluminium plate for example did not lead to a higher
potential and current as expected. Copper does achieve the highest potential to Zinc
in our test. Keeping the metal plates closer to each other does also increase the current,
less resistance.
The question is how close can you get and can we use it almost as close as in a
battery cell but only based on earth and water. What we can do now is to focus on
potential when using an array of these plates in the ground and using the water battery
coils from Nathan Stubblefield.

Clip 17

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Clip 17

The End Part 1

The Earth Battery