Showing posts with label roof. Show all posts
Showing posts with label roof. Show all posts

Tuesday, October 29, 2019

Humanoido Supplement to Singularity Observatory Study of Remote Mountain Wildlife Flora and Fauna by the Repurposing of Aplanatic HD Schmidt Cassegrain Amped Catadioptrics

World's largest Amped telescopes at Singularity Observatory are capable to ultra fine resolution
and perform double duty scientific studies through the evolution of time by safely viewing mountains
and jungles 100 miles away depending on conditions and the height of the mountain.


Humanoido Supplement to Singularity Observatory Study of Remote Mountain Wildlife Flora and Fauna by the Repurposing of Aplanatic HD Schmidt Cassegrain Amped Catadioptrics

Scientific Studies: Let's travel back through space and time to find the remaining oldest living species of plants and animals, that are living in modern day cities atop tall skyscraper gardens and landscapes.

The original study covers Flora as observed at remote mountains that have developed for millions of years of evolution within the archipelago Mountains Pacific Rift.

https://space1usa.blogspot.com/2019/10/singularity-observatory-study-of-remote.html

The study can have supplements as well, by a study within the closest modern skyscraper cities that surround the archipelago. Nearly every skyscraper has vegetation planted on rooftops, that are frequented by birds. These plants and birds can add significant data to the study collective of these species. What are the most common plant species found? Which are the oldest of evolution? What is the most common altitude at which the wildlife is found? Which birds have a habit of plant visitations? These and numerous other questions can be answered by this study.

Friday, July 13, 2018

Skyscraper as Observatory

The Skyscraper as Observatory 
A Skyscraper Observatory is different compared to a conventional domed observatory. It has protective sub walls and a partial sub ceiling, yet remains in full view of the night sky in a selected orientation such as East to South plus East to North inclusive of the Zenith.

Not any skyscraper will work, as tall narrow structures are often in great constant motion and vibration due to the ruler effect. Some floors as low as level 6 are known to cause motion sickness. These narrow skyscrapers amplify small motions, earthquakes, local traffic, trains, buses, construction sites, and underground subways. Some telescope companies offer anti-vibration pads to help reduce vibrations. These may work best at specific harmonics.

The best structures are newer, more expensive, quad wide, stable, and don't have the problems associated with the former. Many of these new quads are so well built, top-most safety roof access is granted for spectacular nighttime all-sky observing. New quad designs also have elevators leading to the top, while decades and older buildings have elevators that may stop and require an additional six flights of stairs to reach the top! Older skyscrapers may have roofs that are not safe near the edges. An errant high gust of wind could potentially lift a bystander and cause a plummet to the death! Many are banned from going rooftop due to a form of suicide. Observe all roof-top precautions.

Some trends in skyscrapers are notable. Oldest buildings had windows covered in metal bars. These were often modded over the years to include the attachment of bar cages to hold potted plants, a few items, and a small clothes line. The next generation skyscraper included a small narrow deck for a washing machine capable of supporting more substantial weight. These designs spawned many variations of patio/decks. (curved, rectangular, open, closed, caged, partial walled, ceiling, no ceiling, sides, no sides, fenced, blocked...) Following, modern skyscrapers were born of two designs. One design has no deck with the washing machine located indoors in the kitchen, and another design has one or two usually opposing larger decks. Generally the smaller deck is for the washing machine and hanging up clothes while the larger deck holds an unobstructed majestic skyline view. It's this latter design that's perfect for a skyscraper observatory.

Saturday, January 20, 2018

Space1 First Kinematic Rocket

THE 1ST KINEMATIC ROCKET - A MARVEL OF THE AGE
Humanoido launched thousands of rockets over the years. Early on this included the first Kinematic rocket designed and built by Humanoido's Father who was an avid rocket scientist and inventor. After launching many rockets, in particular chemical rockets, Humanoido requested a much larger and more reliable rocket design that could go higher.

The chemical rocket had cracked at the fuel compartment and leaked fuel whereupon it had to be discontinued. It was simply launched too many times and wore out. With cracking of the fuel tank, the rocket could never reach its previous high altitude record. The new invented Kinematic rocket was the greatest dream come true, and could go an estimated 25 times the full altitude of the chemical rocket.

These recyclable Kinematic rockets were launched and retrieved by Humanoido at a large expanse country location. Living on a ranch with acres of open expanse unobstructed land had its benefits. The rockets used a matching special launcher custom built for all space missions. Humanoido's Father who was a special technician grade and engineer, went all out on the project. He took a spare house on the property and converted it into a construction lab equipping it with machines and engineering tools, where he built the rocket during the week.

Parts were recycled from old tractors, other farm machinery, parts found on the premises, as well as cedar parts from a farmhouse roof and a blue aquamarine circular launcher dowel component that came from the kitchen broom handle. Some of the parts were machined by hand and the single rocket successfully lasted over many launches until the entire system was believed lost when moving to a new home in the city. Humanoido is interested in building a new one, and scaling up the system design to launch astronauts in the future.

ABOUT THE KINEMATIC ROCKET
The Kinematic Rocket had the traditional rocket shape with a nose and tail, but with two opposing planar sides. Presumably each side could become a payload attachment anchor though there is no memory of attaching payloads. The rocket had a varying thickness of shape, thicker at the nose where the bulk of the weight remained, and thinner at the tail where the launcher gripped the rocket for launching into the deep sky.

The nose came to a point so the recovery field had to be evacuated for safety reasons. No parachute was used and the rocket returned at high speed to the Earth in a streamlined fashion, nose down. Even with no parachute on the landings, the rocket never broke and remained in service a long time.

As the rocket used mechanical energy propellant for flight, no liquid or powder fuel was needed. The rocket and the launcher were safe for shipping and transport, as well as storage. The power of the rocket, the amount of energy, how far it could travel, and its velocity were all dependent on the amount of energy imparted to it during launch.