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The perceived brightness of an object with known brightness can be used to gauge distances. Cepheid variables are known to have a brightness directly related to their period. Which means that if we know the period of the Cepheid variable, we know what its brightness is, and can use it to gauge the distance to the stellar group the Cepheid is part of.

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What did Edwin hubble and henrietta leavitt work on?

Henrietta Swan Leavitt is one of the greatest women to work in astronomy. Because of the distinction between men and women in the 1900's - she was not even allowed to work a telescope.She was classified as nothing more than a human computer, but her work pivoted the discovery of the period luminosity relation of Cepheid variables.This provided an important yardstick for measuring distances in the Universe, which was lacking at the time.Even though she made one of the greatest breakthroughs in astronomy, she was not credited with it, Edwin Hubble took it!!


What is a Cepheid Variable?

A Cepheid is a member of a particular class of variable stars. The relationship between a Cepheid variable's luminosity and pulsation period is quite precise, securing classical Cepheids as viable standard candles and the foundation of the Extragalactic Distance Scale. See related link for more information


Cepheid variable stars have been used to determine the?

1)placing cosmological constraints on the expansion of the Universe through the determination of distances to galaxies 2)to measure many characteristics of our galaxy and our relationship to it


Who discovered how to predict changes in the brightness of Cepheid variable stars?

Henrietta Swan Leavitt discovered the relationship between the period and luminosity of Cepheid variable stars in 1908. This discovery led to the development of a method to accurately measure distances to faraway galaxies, known as the cosmic distance ladder.


When was the universe discovered?

In 1929 Edwin Hubble, working at the Carnegie Observatories in Pasadena, California, measured the redshifts of a number of distant galaxies. He also measured their relative distances by measuring the apparent brightness of a class of variable stars called Cepheids in each galaxy. When he plotted redshift against relative distance, he found that the redshift of distant galaxies increased as a linear function of their distance. The only explanation for this observation is that the universe was expanding.Once scientists understood that the universe was expanding, they immediately realized that it would have been smaller in the past. At some point in the past, the entire universe would have been a single point. This point, later called the big bang, was the beginning of the universe as we understand it today.The expanding universe is finite in both time and space. The reason that the universe did not collapse, as Newton's and Einstein's equations said it might, is that it had been expanding from the moment of its creation. The universe is in a constant state of change. The expanding universe, a new idea based on modern physics, laid to rest the paradoxes that troubled astronomers from ancient times until the early 20th Century.Properties of the Expanding UniverseThe equations of the expanding universe have three possible solutions, each of which predicts a different eventual fate for the universe as a whole. Which fate will ultimately befall the universe can be determined by measuring how fast the universe expands relative to how much matter the universe contains.The three possible types of expanding universes are called open, flat, and closed universes. If the universe were open, it would expand forever. If the universe were flat, it would also expand forever, but the expansion rate would slow to zero after an infinite amount of time. If the universe were closed, it would eventually stop expanding and recollapse on itself, possibly leading to another big bang. In all three cases, the expansion slows, and the force that causes the slowing is gravity.A simple analogy to understand these three types of universes is to consider a spaceship launched from the surface of the Earth. If the spaceship does not have enough speed to escape the Earth's gravity, it will eventually fall back to Earth. This is analogous with a closed universe that recollapses. If the spaceship is given enough speed so that it has just enough energy to escape, then at an infinite distance away from the Earth, it will come to a stop (this is the flat universe). And lastly, if the ship is launched with more than enough energy to escape, it will always have some speed, even when it is an infinite distance away (the open universe).

Related Questions

Why is Henrietta Swan Leavitt important?

Henrietta Swan Leavitt was an important astronomer whose work led to the discovery of the relationship between the period and luminosity of Cepheid variable stars. This relationship, known as Leavitt's Law, became a crucial tool in measuring distances to faraway galaxies and establishing the scale of the universe. Her work played a vital role in shaping our understanding of the cosmos.


What is the variable measuring the result of an experiment?

Dependent variable!!


What did Edwin hubble and henrietta leavitt work on?

Henrietta Swan Leavitt is one of the greatest women to work in astronomy. Because of the distinction between men and women in the 1900's - she was not even allowed to work a telescope.She was classified as nothing more than a human computer, but her work pivoted the discovery of the period luminosity relation of Cepheid variables.This provided an important yardstick for measuring distances in the Universe, which was lacking at the time.Even though she made one of the greatest breakthroughs in astronomy, she was not credited with it, Edwin Hubble took it!!


How are Cepheid variable stars used in measuring distances in astronomy?

Cepheid variable stars are used in astronomy to measure distances by observing their pulsation periods. The longer the period of pulsation, the brighter the star, allowing astronomers to calculate the star's true brightness and therefore its distance from Earth. This method, known as the period-luminosity relationship, helps determine distances to faraway galaxies and other celestial objects.


Independent variable in measuring heart rate?

Time is the independent variable.


Independent and dependent are types of this in science?

Variables. A dependant variable is dependent upon the independent variable - it is usually the unit that you are measuring eg mL, degrees, m etc.An independent variable is what youa re measuring - generally a question, object etc.When writing an experiment, it is important to identify these variables, as teachers like to mark them.


Is perception a discreet or continuous variable?

It would depend what aspect of perception you are measuring and how you are measuring it.


What is an across variable?

An across variable is a variable whose value is determined by measuring a difference of the values at the two extreme points of an element.


What is a dependet varible?

dependent variable is what you are measuring in an science experiment


How is independent and dependent variables measured?

Independent Variable is what you are CHANGING and Dependent Variable is what you are MEASURING ! get at me on aim if i helped Gurlsofly5


What are the independent dependent and control variables?

The independent variable is the thing you are changing/varying. The dependent variable is the thing you are measuring. This variable should be affected by the independent variable. Control variables are anything that must be kept constant. If there are any other factors which affect the dependent variable, then these need to be controlled so that they do not have any significant effect (basically ensuring that you are actually measuring the effects of the independent variable).


What is linear transformer?

The Linear Variable Differential Transformer is a type of electrical transformer used for measuring linear displacement. A counterpart to this device that is used for measuring rotary displacement is called a Rotary Variable Differential Transformer.