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Rosalind Franklin

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Rosalind was a smart scientist.

ROSALIND FRANKLIN 1920-1958 Pioneer of the study of molecular structures including DNA lived here 1951-1958.jpg
ROSALIND FRANKLIN 1920-1958 Pioneer of the study of molecular structures including DNA lived here 1951-1958.jpg
She studied tiny things. She looked at how life is made. Her work helped us learn about our bodies. She was a great helper to science. Do you like to learn new things?

53 words

Rosalind Franklin was a very smart scientist.

ROSALIND FRANKLIN 1920-1958 Pioneer of the study of molecular structures including DNA lived here 1951-1958.jpg
ROSALIND FRANKLIN 1920-1958 Pioneer of the study of molecular structures including DNA lived here 1951-1958.jpg
She loved to study how tiny things work.

She first studied coal. She looked at the small holes in it. This helped people use coal for fuel.

Later, she studied the building blocks of life. She took special pictures of them. These pictures helped show a shape called a double helix.

TMV virus under magnification.jpg
TMV virus under magnification.jpg

Her work was very important. It helped us understand our bodies. She was a great leader in science.

100 words

Rosalind Franklin was a brilliant English scientist.

ROSALIND FRANKLIN 1920-1958 Pioneer of the study of molecular structures including DNA lived here 1951-1958.jpg
ROSALIND FRANKLIN 1920-1958 Pioneer of the study of molecular structures including DNA lived here 1951-1958.jpg
She studied the tiny parts that make up our world.

She began by studying coal. She looked at the tiny holes in coal. This work helped people use coal as fuel. Later, she moved to Paris. There, she became an expert in X-ray crystallography. This is a way to see the shapes of tiny things using X-rays.

In 1951, she went to King's College London. She studied the shape of DNA. DNA is the material that carries life's instructions. She took a very famous picture called Photo 51. This picture showed the double helix shape of DNA. A double helix looks like a twisted ladder.

Other scientists used her work to find this shape. They won a Nobel Prize for it. However, Franklin was not recognized for this during her life. She later studied viruses.

TMV virus under magnification.jpg
TMV virus under magnification.jpg
She led important work on the structures of viruses. Sadly, she died from cancer at age 37. Her work changed how we see life.

190 words

Rosalind Franklin was a brilliant English chemist and an expert in X-ray crystallography.

ROSALIND FRANKLIN 1920-1958 Pioneer of the study of molecular structures including DNA lived here 1951-1958.jpg
ROSALIND FRANKLIN 1920-1958 Pioneer of the study of molecular structures including DNA lived here 1951-1958.jpg
X-ray crystallography is a way to study the shapes of tiny molecules. Her work helped us understand the structures of many important things. She studied coal, graphite, and different types of viruses. Most importantly, her research was central to understanding DNA. DNA is the molecule that carries the instructions for life. Although her work was very important, many people did not recognize her full impact while she was alive.

Franklin's work often involved looking at how tiny things are put together. In her early research, she studied the small holes in coal. She used helium to find the density of the coal. This helped her see how substances move through those tiny spaces. Later, she used X-rays to look at the structures of molecules. By bouncing X-rays off a sample, scientists can see a pattern. This pattern shows the shape of the tiny object.

TMV virus under magnification.jpg
TMV virus under magnification.jpg
This method allowed her to see the structure of DNA and viruses. She was able to find the key properties that explain how these things are built.

Franklin was born on July 25, 1920, in London.

Blue plaque on The Eagle - geograph.org.uk - 6004523.jpg
Blue plaque on The Eagle - geograph.org.uk - 6004523.jpg
She grew up in a family that was very involved in many things. Her father was a merchant banker and a teacher. Her family even helped settle Jewish refugees who were escaping from Europe. Rosalind was a very bright student from a young age. Her aunt once said she was "alarmingly clever" because she loved math. She went to St Paul's Girls' School, where she excelled in science and Latin. She later studied at Newnham College, Cambridge.

Her scientific journey took her to many different places. In 1942, she worked for the British Coal Utilisation Research Association. This work helped her earn her PhD from Cambridge in 1945. In 1947, she moved to Paris to work with Jacques Mering. There, she became an expert in studying carbon and coal. In 1951, she joined King's College London to study DNA. While there, her student Raymond Gosling took a famous image called Photo 51.

Rue Rosalind Franklin.svg
Rue Rosalind Franklin.svg
This image was a huge part of discovering the double helix shape of DNA.

Franklin's discoveries changed how we understand the living world. Her work on the DNA double helix helped others win a Nobel Prize in 1962. However, she died of ovarian cancer in 1958 at the age of 37. She was just about to show her work on the tobacco mosaic virus in Brussels. Even though she passed away young, her legacy lives on. Her team member, Aaron Klug, continued her research on viruses. He later won the Nobel Prize in Chemistry in 1982. Today, she is remembered as a pioneer in molecular biology.

487 words

Rosalind Elsie Franklin was a highly skilled English chemist and X-ray crystallographer.

ROSALIND FRANKLIN 1920-1958 Pioneer of the study of molecular structures including DNA lived here 1951-1958.jpg
ROSALIND FRANKLIN 1920-1958 Pioneer of the study of molecular structures including DNA lived here 1951-1958.jpg
X-ray crystallography is a scientific technique used to determine the atomic and molecular structure of a crystal. By directing X-rays at a sample, scientists can observe the resulting diffraction patterns. These patterns reveal how atoms are arranged in space. Franklin’s expertise in this field was essential for understanding the molecular structures of DNA, RNA, viruses, coal, and graphite. While her research on coal and viruses was respected during her lifetime, her role in the discovery of the DNA structure was largely unacknowledged while she lived. Because of this, she has been called many names, such as the "forgotten heroine" or the "dark lady of DNA."

Franklin’s scientific method relied on observing how different materials reacted to physical properties. In her early career, she studied the porosity of coal. Porosity refers to the tiny spaces or holes within a material. Franklin used helium to measure the density of these spaces. She discovered that substances are expelled from coal in order of their molecular size as the temperature increases. This discovery helped scientists classify different types of coal. It also allowed them to predict how coal would perform as fuel. This work was vital for creating wartime devices like gas masks. This research formed the basis of her PhD thesis, which she earned from the University of Cambridge in 1945.

After her work in England, Franklin moved to Paris in 1947 to work with Jacques Mering. Mering was an expert in applying X-ray diffraction to amorphous substances. Amorphous substances are materials that do not have a regular, repeating crystal structure. This was a significant challenge because most X-ray work had focused on regular crystals. Franklin applied these methods to study how carbon changes when it is converted to graphite. She successfully identified two types of carbon: graphitising and non-graphitising. Her findings in Paris became a core part of the study of the physics and chemistry of carbon.

In 1951, Franklin began a new chapter as a research associate at King's College London.

Blue plaque on The Eagle - geograph.org.uk - 6004523.jpg
Blue plaque on The Eagle - geograph.org.uk - 6004523.jpg
She worked in the Medical Research Council's Biophysics Unit under the direction of John Randall. Although she was originally hired to study proteins and lipids, Randall redirected her focus to DNA fibers. This shift led to some of her most famous work. While at King's College, Franklin discovered key properties of DNA. These properties were necessary to describe the double helix structure. Her student, Raymond Gosling, captured a famous X-ray diffraction image known as Photo 51.
In memoriam card Wellcome L0043312 (cropped).jpg
In memoriam card Wellcome L0043312 (cropped).jpg
This image was critical to the discovery of the DNA structure. However, the image was shown to James Watson by Maurice Wilkins without Franklin's permission.

Due to disagreements with her director, John Randall, and her colleague, Maurice Wilkins, Franklin moved to Birkbeck College in 1953.

TMV virus under magnification.jpg
TMV virus under magnification.jpg
At Birkbeck, she worked under John Desmond Bernal. She led pioneering research into the molecular structures of viruses. One of her major focuses was the tobacco mosaic virus. Her work helped scientists understand how these viruses are built at a molecular level. This research was highly advanced for the time and laid the groundwork for future studies in virology.

Franklin’s life was marked by both great achievement and early loss. She was born on July 25, 1920, into an influential British Jewish family in London.

Rue Rosalind Franklin.svg
Rue Rosalind Franklin.svg
She was a brilliant student who excelled in science, Latin, and several languages. Despite her scientific success, she faced professional difficulties and interpersonal conflicts. In 1958, at the age of 37, Franklin died of ovarian cancer. This occurred just one day before she was scheduled to present her work on the tobacco mosaic virus at an international fair in Brussels. Her death came before she could receive the widespread recognition her work deserved.

The impact of Franklin's work is seen in the highest honors of science. In 1962, Francis Crick, James Watson, and Maurice Wilkins shared the Nobel Prize in Physiology or Medicine for the discovery of the DNA double helix. James Watson later remarked that if Franklin had not died, she likely would have been awarded a Nobel Prize in Chemistry. Although she did not live to see the full impact of her DNA research, her legacy continued through her colleagues. Her team member at Birkbeck, Aaron Klug, continued her research on viruses and won the Nobel Prize in Chemistry in 1982.

Rosalind Franklin University of Medicine and Science, (cropped).jpg
Rosalind Franklin University of Medicine and Science, (cropped).jpg
Today, her contributions are recognized as foundational to the field of molecular biology.

784 words
🖼️ Images & Media (8)
File:In memoriam card Wellcome L0043312 (cropped).jpg
In memoriam card Wellcome L0043312 (cropped).jpg
File:TMV virus under magnification.jpg
TMV virus under magnification.jpg
File:Blue plaque on The Eagle - geograph.org.uk - 6004523.jpg
Blue plaque on The Eagle -...
File:Franklin-Wilkins Building King's College London.jpg
Franklin-Wilkins Building King's College...
File:ROSALIND FRANKLIN 1920-1958 Pioneer of the study of molecular structures including DNA lived here 1951-1958.jpg
ROSALIND FRANKLIN 1920-1958 Pioneer of...
File:Rosalind Franklin University of Medicine and Science, (cropped).jpg
Rosalind Franklin University of Medicine...
File:Rue Rosalind Franklin.svg
Rue Rosalind Franklin.svg
File:רחל פרנקלין שלט רחוב.jpg
רחל פרנקלין שלט רחוב.jpg
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