Sunday, 26 October 2025
Wednesday, 31 January 2024
SOLAR SYSTEM
The solar system has one star, eight planets, five officially recognized dwarf planets, at least 290 moons, more than 1.3 million asteroids, and about 3,900 comets.It is located in an outer spiral arm of the Milky Way galaxy called the Orion Arm, or Orion Spur. Our solar system orbits the center of the galaxy at about 515,000 mph (828,000 kph). It takes about 230 million years to complete one orbit around the galactic center.
We call it the solar system because it is made up of our star, the Sun, and everything bound to it by gravity – the planets Mercury, Venus, Earth, Mars, Jupiter, Saturn, Uranus, and Neptune; dwarf planets Pluto, Ceres, Makemake, Haumea, and Eris – along with hundreds of moons; and millions of asteroids, comets, and meteoroids.Our solar system is the only one we know of that has a planet that supports life. So far, we only know of life on Earth, but we’re looking for life on other worlds
Friday, 19 January 2024
What would happen if Jupiter and Saturn collided today?
If Jupiter and Saturn were to collide today, it would have a significant impact on our solar system. Both planets are massive gas giants, with Jupiter being the largest planet and Saturn being the second-largest.
Firstly, the collision would release an enormous amount of energy and create a catastrophic event. The gravitational forces involved would cause a massive explosion, sending shockwaves throughout the solar system. The collision would potentially result in the destruction of both planets, with debris scattered across space.
The gravitational influence of Jupiter and Saturn on other celestial bodies, such as their moons and nearby asteroids, would also be affected. The gravitational pull of these planets helps maintain the stability of their respective systems. The collision could disrupt the orbits of these objects, leading to potential collisions or disturbances in other parts of the solar system.
Furthermore, the combined mass and energy released from the collision would have a significant impact on the overall gravitational dynamics of the solar system. It could potentially affect the orbits of other planets, including Earth, as well as the stability of the entire system. The gravitational interactions between celestial bodies play a crucial role in maintaining the delicate balance in our solar system, and such a collision would disrupt this balance.
In terms of observing the collision from Earth, it would likely be a spectacular event. The massive explosion would release an intense burst of energy and light, potentially visible from great distances. The resulting debris and particles from the collision could create beautiful celestial displays, resembling a cosmic fireworks show.
However, it is important to note that this scenario is purely hypothetical, as the likelihood of Jupiter and Saturn colliding is extremely low. The vast distances between these planets in our solar system make such an event highly improbable. Nonetheless, exploring the consequences of such an event allows us to understand the immense forces at play in the universe and appreciate the delicate balance that exists in our solar system.
Wednesday, 17 January 2024
SOLAR SYSTEM - PHOTON BELT - BIOFIELD PHYSIOLOGY
1. Our Solar System completing the minor cycle that takes approximately 26,000 years, known as the “Procession of the Equinoxes,”
2. The Milky Way Galaxy completing the cycle around the Pleiadian System that takes 230 million years and
3. The galaxy completing the cycle around the Great Central Sun, which takes about 16 billion years. When all these processional cycles are synchronized, it completes the Grand Cycle or Grand Procession! This is what is accruing!"
Tuesday, 2 January 2024
KEPLER'S 3rd LAW
We all know that the Earth takes about 365 days to complete an orbit around the Sun, this is our period of revolution.
Kepler's third law* tells us that the square of the period of revolution of a planet around the Sun is proportional to the cube of its average distance from the Sun. In simple terms, planets closer to the Sun have shorter periods of revolution than the outer planets. Thus, the distant Neptune takes 165 years to complete an orbit while the small Mercury only 88 days.
* the squares of the orbital periods of the planets are directly proportional to the cubes of the semi-major axes of their orbits. Kepler's Third Law implies that the period for a planet to orbit the Sun increases rapidly with the radius of its orbit.KEPLER'S
Tuesday, 14 November 2023
MARS IS RED & MOON IS WHITE
Because of chemistry
Mars is red because it has a lot of iron on its surface, and that iron likes to react with oxygen.
When iron and oxygen get together, they form iron oxide, also known as rust. Rust is red, or at least red-orange, depending on how much oxygen it has.
The moon, on the other hand, is white because it has very little iron and very little oxygen.
It's mostly made of silicates, which are minerals that contain silicon and oxygen. Silicates are usually gray or white, depending on how they reflect light.
You see, Mars is smaller than Earth, so it cooled down faster and didn't have a strong magnetic field to protect it from the solar wind.
The solar wind is a stream of charged particles that comes from the sun and can strip away a planet's atmosphere.
This thing obliterated Mars and left it without much of an atmosphere. Mars lost most of its water and carbon dioxide, which are sources of oxygen.
But it still had plenty of iron in its crust and mantle, which was exposed to the remaining oxygen in the air and in the rocks.
Over time, the iron oxidized and turned red.
The moon is even smaller than Mars, so it cooled down even faster and never had an atmosphere or a magnetic field to begin with.
It also formed from debris that was ejected when a gargantuan object hit the Earth eons ago.
That debris was mostly silicates, with very little iron or other metals.
The moon also didn't have much volcanic activity or water to bring up more metals or oxygen from its interior. So it stayed gray or white.
Short answer.:
Mars is rusty, the moon is dusty.
Monday, 23 October 2023
SOLAR SYSTEM - 3000 YEARS AGO
They were pretty smart and observant, and they had a lot of interest in astrology and astronomy. They used the stars and the planets to make predictions and charts, and they came up with some cool theories and math models.
One of the earliest texts that talks about astronomy is the Rigveda, which dates back to around 2000 BC or even earlier.
It shows that the Indians had a calendar based on the solar year, and they knew about the four cardinal points.
They also recorded some events like eclipses and comets. The Jyotisa Vedanga is another text that has some astronomical data from around 4000 BC or maybe even 11000 BC.
It's hard to tell for sure, because some of the stuff is written in religious terms.
The Indians also had contact with other cultures like the Babylonians, Greeks, and Persians, and they exchanged ideas and theories.
They learned a lot from them, but they also had their own contributions. For example, they had a heliocentric model of the solar system, which means they thought that the Sun was at the center and the planets orbited around it.
That's pretty impressive, considering that some people in Europe still believed in a geocentric model until the 16th century.
The Indians also had a concept of Navagraha, which means nine heavenly bodies.
They included the Sun, the Moon, and five planets that are visible to the naked eye: Mercury, Venus, Mars, Jupiter, and Saturn.
The other two were Rahu and Ketu, which are not really planets but points where the Moon crosses the ecliptic plane.
They thought that these points caused eclipses when they swallowed the Sun or the Moon.
So, that's how Indians 3,000 years ago came to know about planets in the solar system. They used their eyes, their brains, and their curiosity to explore the sky and figure out how it works.
They had some mistakes and myths, but they also had some facts and insights. Their legacy is still alive today in math, science, and culture
Sunday, 22 October 2023
WILL SOLAR SYSTEM BE A RED GIANT?
The solar system with the red giant Sun, will continue to orbit the center of the Milky Way Galaxy for billions of years in the future. Of course, the Sun won’t be a red giant forever, either, but long after the Sun dies and becomes a white dwarf it will continue to exist along with planets that orbit it.
There will be no life left on Earth to see it, unfortunately.
Tuesday, 3 October 2023
Monday, 21 August 2023
SUN vs JUPITER
The Sun is 864,000 miles in diameter and Jupiter is 139,820 km in diameter, big difference. It would take at least 10 Jupiters to cover the Sun’s diameter.
Thursday, 13 July 2023
SOME FACTS OF OUR SOLAR SYSTEM
- Neptune makes a complete orbit around the Sun in about 165 Earth years.
- A day on Venus is longer than a year.
- The hottest planet in our solar system is Venus.
- Uranus is the coldest planet in our solar system.
- Mercury & Venus are the only 2 planets in our solar system that have no moons.
- Due to the Sun and Moon’s gravitational pull, we have tides.
- If Particles Exist That Travel Faster Than The Speed Of Light, We Could Send Messages Back In Time.




