Projects
We aim to create a multidisciplinary startup center based on a deep understanding and application of physics and chemistry. In Phase I, we plan to launch interconnected projects with the highest profit-to-cost ratio (both material and intellectual), in agreement with our investors:
Project 1. ENERGY
Project 2. ENERGY DEVICES
Project 5. SPACE
Project 6. HOMES
Project 7. FILTER
Project 8. CONTROL BOARD
Project 17. ARMOR #1
Other projects will be patented and held for Phase II, III, and beyond.
Why do we believe that launching so many projects simultaneously is feasible? For several reasons:
1) We have a deep understanding of the physical principles behind these devices, ensuring their efficient functioning. We have developed truly innovative solutions.
2) The products of these projects are in high demand and their markets are currently highly profitable, especially given the critical shortage of homes and electricity. If we don’t meet the demand, others certainly will.
3) There are significant savings on administration, leadership, technical control, equipment, and software due to the common elements across these projects.
4) By launching several projects simultaneously, one will reach the prototype, pre-production, and mass production stages faster than the other, accelerating the company’s growth, profitability, and resource sustainability.
5) We are from the former USSR and are experienced in hiring highly skilled specialists at a fraction of Western salaries.
6) Recently, the development speed has significantly increased, in part due to AI. We actively use it, including in physics, design, and engineering.

Replacement of conventional wind and hydro generators with cheaper and more efficient alternatives, along with expanding their use to a broader range of applications (wind, currents, tides, ebb and flow, waves, etc.).

Application of Project 1 principles as separate electricity-generating devices, including from: shock absorbers, cables, load suspensions, backpacks, equipment, straps, vibrations, etc.

The energy generated at night from natural sources (such as wind and ocean currents in Project 1) largely goes unused due to the high cost of storage. It is proposed to utilize this nighttime energy to pump groundwater into water towers. During the day, the release of this water provides:
— irrigation for desert vegetation;
— additional electricity generation from the released water (in addition to daytime production).

Using electricity from Project 1 to enable a global transition of maritime shipping to electric propulsion, with vessels recharging en route without needing to enter ports.

Launching payloads into Earth orbit, including satellites, using three independent forces (including two powered by energy from Project 1). The project bears a distant resemblance to the secret German V-3 project from World War II.

Affordable quick-assembly modular homes with proper geometric design and adjustable transparency, featuring built-in space for easy expansion/modifications, etc. An ecosystem with all necessary household products.

Maintenance-free air purification systems for indoor spaces and buildings, including our homes from Project 6, utilizing water, ultraviolet light, and electricity.

A user-friendly, interactive company/project management software with open architecture: employees themselves select the necessary modules and interconnections within it. The software digitizes all relationships between stages, employees, and departments of the company/project: objectives and responsible parties, deadlines, incentives, department/employee interconnections, current status, etc.

Reinventing the internal combustion engine concept in terms of maximally fast and efficient conversion of the kinetic energy of combustible mixture molecules into shaft rotation. No crankshaft, no valves, minimal parts, maximum efficiency.

Miniaturization, cost reduction, and technical adaptation of turbofan engines to enable their application in personal flying devices (Project 11).

A personal aerial vehicle featuring autonomous takeoff and landing capabilities for point-to-point pilot transport, leveraging wing efficiency advantages over traditional rotary-wing flight.

Desert wind-based water harvesting systems utilizing the principle of reducing kinetic energy of air molecule thermal motion for enhanced moisture condensation on specialized surfaces (the picture illustrates the principle only, not the actual method).

AI-assisted management of bathroom equipment (faucets, shower, directional toilet flush, clog removal, surface cleaning). Aerated water supply instead of plain water for water savings.

Interactive physics learning program for children: students set their own initial conditions, parameters, and interaction conditions for objects and systems of bodies, then visually observe the results while qualitatively and quantitatively exploring fundamental laws of physics and chemistry. Includes a reward system and leaderboards for correct answers similar to video games. Distribution through: Google Play, App Store, schools, colleges, etc.

Self-inflating ballast system preventing capsized vessels from sinking. Particularly relevant for tankers in distress (the picture illustrates the principle only, not the actual method).

A device for instant extraction of foreign objects from the body: shrapnel, bullets, splinters, needles, snake/insect venom. Worldwide, 150,000 to 200,000 people die annually from venomous animal and insect bites.

Revolutionary armor for a wide range of applications (personnel, buildings, vehicles, aircraft) based on the “frozen” energy of specific molecules. Utilizes an enhanced and amplified version of the known fragmentation effect on incoming objects.

A modular, automatically deployable protection system for modern military equipment against evolving threats (such as drones, ATGMs, etc.) (the photo shows an attempt to create something remotely similar under field conditions).

This will permanently eliminate thoughts of attacking a neighbor.

Replacement magazines for small arms. Compatible with the weapon without requiring modifications, alongside standard factory magazines. Variant featuring polymer casings for weight reduction.

Installation of electrical infrastructure in roadways for charging electric vehicles (buses, personal cars, etc.) while in motion.

Classified (all details to be discussed in negotiations).

Classified (all details to be discussed in negotiations).

Safety containers for flammable materials.

Artillery barrels without internal rifling and associated wear (projectile rotation achieved by alternative means).

Mobile shields for protecting personnel (deployed position) and equipment (stowed position).