C/M - Rail-Launch. Research
C/M - Rail-Launch. Research
Understanding Perpetual Motion Energy
Metered or not
ELECTROMAGNETIC LOOPS
Faster Perpetual EV Flow Dynamics
CREATING SIMULATED MAGNETISM
Magnet free or hybrids to void material reliance & fluctating market flirtation in cost controls
Even speeds & force lower than Hypersonic down through below Super Sonics we can capture speed electricity force & control then containment alongside safe object turn - resistance & bounce-backs with pulse sets in under a second competing Decible Per Second
Physical Mechanical Engineered
Higher Energy & Lower Access. Faster. Stronger. Longer
This as an additive thinking process yet safeguards from external exo-shell breakage or risk voiding fire & explosion
We simply take from rail-guns & adjust for EV Perpetual Electrics
SHRINK. EQUIVLANCE + UPSCALE
PEV Ev Battery Electric Vehicles
SCALABLE. WORKING
Kinetic Energy Generators & Wind-Tunnel Piston-Punch like Almost Perpetual Hydrogen are the first of Perpetual Motion scalable not light success on Earth. The PEV Perpetual Electric Vehicle adds to this reality. Metered or not
1. Turn beats on or dual shafts K.E.G
2. Overpressurizes W.T.P.P
3. Hydrogen from water in-house A.P.H
4. Flywheel recharger for battery PEV
5. Hybrid Energy Cells
All Zero Emissions. Zero Cycle capable. Meeting Net Zero
Zero Cycle. Point A - B. Design to finished manufactured product meeting Net Zero
ADVANCING ELECTRICITY CONTROLS
Fiberoptic - Crystal Simulated-Glass advancements more leaning flow connecting X Nano-tubes not cross octagonal
HYPERSONIC LAUNCH. RAIL-GUN
A hypersonic electromagnetic launcher uses intense magnetic fields and electrical currents instead of chemical propellants to accelerate objects to speeds exceeding Mach 5.
How It Works
Lorentz Force: Electricity flows through parallel conductive rails and a projectile, creating strong magnetic fields that push the payload forward at extreme velocities.
No Chemical Propellants: Eliminating gunpowder and rockets allows for faster reaction times, higher velocities, and increased safety.
Current Applications and Developments
Naval Defense & Anti-Hypersonic Weapons: Nations like Japan (via ATLA) test electromagnetic railguns aboard test ships like the JS Asuka to shoot projectiles at speeds up to Mach 6.5 for defense against incoming hypersonic threats.
Tactical Interceptors: Companies like Auriga Space develop systems like Prometheus and Thor to accelerate test articles or intercept drones at supersonic and hypersonic speeds without gunpowder.
Space Launch Alternatives: Startups like Israel's Moonshot use high-power magnetic linear accelerators aiming to bypass traditional rocket equations to shoot cargo payloads directly into orbit.
Opinions are mixed on Reddit regarding whether current railguns possess a fast enough rate of fire to effectively intercept incoming hypersonic missiles.
A railgun or rail gun, is a linear motor device, uses electromagnetic force to launch high-velocity projectiles
NB-OT NEURO-LABS IN ONTARIO
Neck - Spine Injury NB-OT Neuro-Labs caused in 2000 & 2003
https://taskssbgcig.blogspot.com/2026/07/blog-post_700.html
Sydney Nicola Bennett expects & expected wide, children & career to support from ages 16-18 & onward
If we adjust everything so Gasoline, Diesel & Kerosene becomes too priced out of comparative we then win the Energy transition race for Net Zero
"This just shrinks sizing & speeds Electrical Flow in circuits with controls in Perpetual Motion Energy Technology"
Unlike unsustainable Perpetual which doesn't work or light Perpetual which is not strong enough to extract enough Energy. Loop & Energy in then. Nothing. Like a ambitious male & that. Well. She so... and. Well. Not quite enough umpff for her to get up there in climatics for the satisfy lad. Its ah. So. Well. Sad. Not quite
... and such is life. You either or you cannot. If not another will
Speed controls. So. Finese (slow - medium - fast)
You either got it or ya don't. So. Yeah. See aww
Its... and well some do alright in lower tiers
Not quite at that level but pretty good. See
Hey look. The others. Total arseholes did alright
20-40+ Watts in under a Second Perpetual for when Wall-Outlets are unavailable
20 watt-hours (Wh) is equal to 0.02 kilowatt-hours (kWh).
Note that Wh and kWh are units of energy, while kW is a unit of power. If you are looking to find the power in kilowatts (kW), you have to divide the watt-hours by the time period in hours.
Quick Calculation Formulas
For Energy (kWh): 20 Wh ÷ 1,000 = 0.02 kWh
For Power (kW): 20 Wh ÷ (1,000 × hours) = kW
If 0.02 kWh is used in 1 hour, the power is 0.02 kW (20 watts).
If 0.02 kWh is used in 30 minutes (0.5 hours), the power is 0.04 kW (40 watts).
If 0.02 kWh is used in 10 minutes (0.166 hours), the power is 0.12 kW (120 watts).
An automatic or kinetic watch mechanism does not generate nearly enough energy to charge a mobile phone.
Most users on StackExchange agree that kinetic and mechanical watch movements generate mere microwatts of power (around 15 to 30 microwatts). In contrast, a typical smartphone requires several watts of power to charge—making a smartphone's energy demand roughly 20,000 to 70,000 times greater than what a wrist-worn kinetic generator can output.
Why It Fails
Power Discrepancy: Traditional automatic watches store mechanical potential energy via a weighted rotor to move gears, while kinetic-electric watches produce minuscule electrical currents meant only for ultra-low-power quartz movements.
Human Limitations: Moving your arm simply cannot impart enough kinetic energy to match the rapid chemical energy transfer required by a lithium-ion mobile phone battery.
An average mobile phone requires about 15 to 20 watt-hours (Wh) of electrical energy for a full charge, translating to roughly 1 to 5 kilowatt-hours (kWh) of direct power per year under normal daily use.
Battery and Charging Details
Battery Capacity: A typical modern smartphone has a battery capacity of about 4,000 milliamp-hours (mAh) at 3.7 to 3.8 volts, equal to roughly 15 Wh.
Energy Draw per Charge: Because charging loses some energy as heat, pulling a phone from 0% to 100% takes about 20 Wh (0.02 kWh) from the wall.
Annual Cost to Charge: Charging your phone once a day uses about 7.3 kWh per year in direct grid power, costing less than a dollar annually in electricity.
Active Power Consumption
Idle Power: Uses about 0.1 watts when sitting idle with the screen off.
Active Use: Uses about 1 to 3 watts during typical tasks like web browsing, music streaming, or light app usage.
Heavy Use: Demanding tasks like video recording, 3D gaming, or video calling can draw 5 watts or more.
Relations. Separate earnings. Separate assets. Separate Financials. K.T UN of Alpha Health control. Security. Relationship. Professional & private
The Bennett siblings. DNA children & grand children of
Jordan R Bennett
https://www.linkedin.com/in/jordanrjbennett
https://www.pwc.com/ca/en/contacts/j/jordan-bennett.html
Sydney N Bennett "Nic"
https://www.linkedin.com/in/citybennett
Documented US $3.25-4 Trillion in losses NB-OT Neuro-Labs caused in Ontario, Canada are under separate recoupe
US $400 Trillion exists on Earth. US $350 in Debt
S.B.G - CIG / C/M - S.B - ALPHA HEALTH


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