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Widgets

As you have probably guessed from my website, I strive to add as much value to the civilization as possible, so this page is dedicated to online widgets I build to help out if and when needed, or if I have a cool idea. All the widgets are free and for informational purposes only, they are as accurate as I could get them but I still hold no liability for accuracy.

Also if you’re a scientist or researcher you can use any tool and publish on the back of the results if you like, also if you need your own tool contact me, I’ll build you the tool you need for free if I can.

The Global Infection Spread Simulator is an interactive website widget designed to help you understand how viral or bacterial infections can spread across countries over time. By selecting an origin country or custom location, adjusting infection characteristics such as transmissibility, incubation period, infectious period, immunity levels, and severity, and applying interventions such as travel restrictions, isolation, hygiene measures, treatment, and contact reduction, you can visualize how different scenarios may unfold. The simulator combines animated global mapping, country-level burden tables, timeline controls, stochastic trial variation, and outcome charts to show how small changes in assumptions or public-health actions can dramatically alter the trajectory of an outbreak. It is intended as an educational and scenario-planning tool, helping people explore the dynamics of infectious disease spread and the potential value of early, coordinated intervention.

This is a psychic training game where you can take several tests to win the game. The tests include remote viewing, precognition and remote influence. You can also download all your results if you do exceptionally well.

The Civilisation Risk Cascade Simulator is an interactive web widget that lets you explore how major shocks, such as pandemics, cyberattacks, food price spikes, wars, extreme weather, AI disruption and energy shortages, can ripple through a country’s interconnected systems over time. By selecting a country, starting area, shock type, severity, duration and response conditions, users can see how pressure builds across critical sectors including health, energy, food, logistics, finance, communications, governance, public order, the economy and the environment. The simulator also allows users to apply different interventions, such as emergency reserves, cyber defences, rationing, public-health measures, international support or energy-demand management, to compare how early action and resilience planning can reduce cascading failure risk and improve societal recovery.

This Historical Sky Lookup Widget lets you recreate the sky exactly as it appeared at a specific moment in the past, showing the positions of the stars, planets, Moon and Sun from any chosen country, city, or precise latitude and longitude. You can enter an exact date, time and time zone, then generate a visual sky map along with detailed astronomical information that can be downloaded as an image, data file, or combined report. It is designed for curiosity, education, storytelling, memory-making and personal reflection, allowing people to explore what the heavens looked like during meaningful moments such as births, weddings, anniversaries, first dates, graduations or historic events. It can also be used to create beautiful free gifts relating to special occasions, such as a personalized sky image from the night someone was born, married, or experienced an important life milestone.

The Catholic Miracle Atlas is an interactive web widget designed to let you explore Catholic miracles across history, beginning with the birth of Jesus and extending through Marian apparitions, Eucharistic miracles, saintly signs, Lourdes healings, canonization miracles, relic traditions and modern devotional events. You can search and filter by country, year, saint, miracle type, recognition status or keyword, while viewing results through a visually striking world map, luminous location markers, timeline displays and detailed miracle cards. The widget is built as an expandable atlas, allowing additional records to be imported over time so it can grow into a richer public catalogue of Catholic miracle traditions. It is also intended to help normalize the existence of miracles in society.

The Game Theory Decision Simulator is an interactive strategy widget that helps you think through difficult decisions by modelling them as strategic games. It allows you to enter the decision you are facing, define possible options, estimate incentives, risks, costs, trust, power dynamics, information quality, future interaction and mutual benefit, then receive a ranked recommendation based on game-theory principles such as Nash equilibrium, Pareto efficiency, minimax safety, signaling, commitment, reciprocity and repeated-game logic. The simulator is designed to work across every scale of human strategy, from small personal choices, family or team dynamics and business negotiations, all the way up to national policy, geopolitical conflict, deterrence and alliance behavior, making abstract strategic theory practical, visual and usable for real-world decision-making.

ProteinFix is an innovative disease-to-protein discovery web app designed to help you explore the biological mechanisms behind disease and identify the proteins, pathways, and repair strategies that may be most relevant to future treatments. By entering a disease, you can visualize implicated proteins in an interactive network, see how each target may contribute to dysfunction, and explore possible intervention types such as inhibition, replacement, stabilization, immune modulation, toxic protein clearance, or synthetic binder design. The app ranks protein targets by evidence strength, tractability, safety, novelty, and repair potential, while linking users to major biomedical resources for deeper research. ProteinFix is intended as an educational and research-navigation tool, helping you understand where disease biology may be repairable and where the next generation of AI-designed therapeutics could emerge.

ChronoFlux Arena is an experimental noetic science web application designed as a visually engaging game where you attempt to speed up or slow down a local clock through focused intention, while the system compares the results against an online reference time source before and after each test. The widget records each play as a structured experiment, calculating signed drift, z-scores, p-values, cumulative statistics, timing quality, and directional outcomes, while allowing users to export their data, individual tests, CSV files, JSON proof packages, and evidence reports for later analysis. Its immediate purpose is to explore whether human intention can produce measurable effects on time-based systems, while its broader long-term vision is to support research into whether intention, noetic AI, and emerging technologies could one day contribute to understanding time-space influence and possible pathways toward faster-than-light travel.

This is the AI version of the Human ChronoFlux arena. The purpose is to test if AI intention can bend spacetime. To use it you will need to install Chat GPT Codex in Powershell and install a bridge to link it to your Codex. If you want to use the bridge I have build you can download the Zip file.

This app is an immersive party and event display that transforms live random-data patterns into dramatic visual experiences, allowing you to choose from scenes such as a dormant dancer becoming fully animated, a dark disco ball erupting into light, a sleeping city switching on, a portal opening, a starship launching, or an energy core reaching peak activation. Multiple parallel 1-and-0 streams are converted into statistical scores and analysed through a rolling network-variance-inspired coherence model, with subdued standby states giving way to increasingly bright, energetic and synchronised visuals as the measured signal rises. The concept is inspired by the Global Consciousness Project 2.0 at gcp2.net, an ongoing research initiative using a globally distributed network of random number generators to investigate whether periods of shared human attention or emotion correspond with unusual structure or coherence in random physical data; the wider research programme is also examining whether reported effects might reflect a direct causal influence or a passive, potentially precognitive relationship with random fluctuations.

The AeroSkin Rocket Stability Lab is an interactive evolutionary optimisation engine that enables users to explore thousands of potential aerodynamic surface configurations entirely within their web browser. Inspired by the principles of natural selection, the system begins by generating a diverse population of virtual rocket designs, each with different combinations of textures, geometries and placement across the rocket body. Every configuration is evaluated using the simulator’s aerodynamic scoring model, considering characteristics such as stability, yaw damping, flow attachment, drag efficiency and robustness under varying flight conditions. The highest-performing designs are retained and used to produce the next generation through crossover and controlled mutation, allowing progressively better solutions to emerge over time. Users can define optimisation objectives, adjust mutation rates, constrain the search space, monitor live fitness improvements, compare evolving populations and instantly load the best-performing design back into the simulator for further exploration. Although the optimisation is based on a heuristic aerodynamic model rather than full computational fluid dynamics (CFD), it provides a powerful and visually engaging environment for investigating how evolutionary search algorithms can discover increasingly effective rocket surface configurations and generate novel design ideas that may warrant more detailed engineering analysis.

Vacuum Forge is an interactive research-concept tool designed to explore how hypothetical regions of negative energy might be intensified, enlarged and stabilised through laser-driven cavities, squeezed-light states, dynamic boundaries, layered Casimir structures and large-scale arrays. You can alter dozens of parameters, including cavity geometry, plate separation, laser power, wavelength, phase, coherence, quantum squeezing, materials, temperature, stacking and module count, while a built-in evolutionary AI tests and breeds configurations to identify the strongest theoretical designs. Negative energy is of particular interest because many speculative models of warp drives, traversable wormholes and certain forms of time travel require negative energy density or other exotic stress-energy conditions to shape spacetime in ways that ordinary matter cannot. Vacuum Forge does not claim to produce physically real negative energy or solve quantum field theory; instead, it provides a visually rich hypothesis-generation environment for comparing ideas, identifying scaling bottlenecks and exploring which configurations may deserve deeper theoretical or experimental investigation.

Spacetime Forge is an interactive negative-energy configuration simulator designed to explore how hypothetical warp drives, traversable wormholes and time-travel systems might be structured within speculative spacetime physics. You can adjust geometry, shell thickness, energy density, ring count, cavity separation, stability weighting and quantum-constraint penalties while watching each configuration update through live scientific visualisations. A built-in evolutionary AI can test finite or unlimited generations of candidate designs, compare their estimated energy requirements, stability and spacetime stress, and continuously refine the strongest configurations it discovers. The tool is intended as an exploratory research sandbox rather than proof that these technologies are currently feasible, helping you compare theoretical models, expose the scale of the negative-energy challenge and investigate which geometries appear most efficient under the assumptions selected.