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The work experience transformed

As production became mechanized and relocated to factories, the experience of workers underwent significant changes. Farmers and artisans had controlled the pace of their labor and the order in which things were done. If an artisan wanted to take the afternoon off, he could. If a farmer wished to rebuild his fence on Thursday instead of on Wednesday, he could. They conversed and often drank during the workday. Indeed, journeymen were often promised alcohol as part of their wages. One member of the group might be asked to read a book or a newspaper aloud to the others. In the warm weather, doors and windows might be opened to the outside, and work stopped when it was too dark to see.

Work in factories proved to be quite different. Employees were expected to report at a certain time, usually early in the morning, and to work all day. They could not leave when they were tired or take breaks other than at designated times. Those who arrived late found their pay docked; five minutes’ tardiness could result in several hours’ worth of lost pay, and repeated tardiness could result in dismissal. The monotony of repetitive tasks made days particularly long. Hours varied according to the factory, but most factory employees toiled ten to twelve hours a day, six days a week. In the winter, when the sun set early, oil lamps were used to light the factory floor, and employees strained their eyes to see their work and coughed as the rooms filled with smoke from the lamps. In the spring, as the days began to grow longer, factories held “blowing-out” celebrations to mark the extinguishing of the oil lamps. These “blow-outs” often featured processions and dancing.

Freedom within factories was limited. Drinking was prohibited. Some factories did not allow employees to sit down. Doors and windows were kept closed, especially in textile factories where fibers could be easily disturbed by incoming breezes, and mills were often unbearably hot and humid in the summer. In the winter, workers often shivered in the cold. In such environments, workers’ health suffered.

The workplace posed other dangers as well. The presence of cotton bales alongside the oil used to lubricate machines made fire a common problem in textile factories. Workplace injuries were also common. Workers’ hands and fingers were maimed or severed when they were caught in machines; in some cases, their limbs or entire bodies were crushed. Workers who didn’t die from such injuries almost certainly lost their jobs, and with them, their income. Corporal punishment of both children and adults was common in factories; where abuse was most extreme, children sometimes died as a result of injuries suffered at the hands of an overseer.

As the decades passed, working conditions deteriorated in many mills. Workers were assigned more machines to tend, and the owners increased the speed at which the machines operated. Wages were cut in many factories, and employees who had once labored for an hourly wage now found themselves reduced to piecework, paid for the amount they produced and not for the hours they toiled. Owners also reduced compensation for piecework. Low wages combined with regular periods of unemployment to make the lives of workers difficult, especially for those with families to support. In New York City in 1850, for example, the average male worker earned $300 a year; it cost approximately $600 a year to support a family of five.

Questions & Answers

calculate molarity of NaOH solution when 25.0ml of NaOH titrated with 27.2ml of 0.2m H2SO4
Gasin Reply
what's Thermochemistry
rhoda Reply
the study of the heat energy which is associated with chemical reactions
Kaddija
How was CH4 and o2 was able to produce (Co2)and (H2o
Edafe Reply
explain please
Victory
First twenty elements with their valences
Martine Reply
what is chemistry
asue Reply
what is atom
asue
what is the best way to define periodic table for jamb
Damilola Reply
what is the change of matter from one state to another
Elijah Reply
what is isolation of organic compounds
IKyernum Reply
what is atomic radius
ThankGod Reply
Read Chapter 6, section 5
Dr
Read Chapter 6, section 5
Kareem
Atomic radius is the radius of the atom and is also called the orbital radius
Kareem
atomic radius is the distance between the nucleus of an atom and its valence shell
Amos
Read Chapter 6, section 5
paulino
Bohr's model of the theory atom
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is there a question?
Dr
when a gas is compressed why it becomes hot?
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It has no oxygen then
Goldyei
read the chapter on thermochemistry...the sections on "PV" work and the First Law of Thermodynamics should help..
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Which element react with water
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an increase in the pressure of a gas results in the decrease of its
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definition of the periodic table
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What is the lkenes
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what were atoms composed of?
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Source:  OpenStax, U.s. history. OpenStax CNX. Jan 12, 2015 Download for free at http://legacy.cnx.org/content/col11740/1.3
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