Questões de Concurso Sobre inglês

Questões Discursivas

Foram encontradas 25.501 questões

Q3264953 Inglês
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        A Construction Technician is a skilled professional involved in construction processes. They can be in general construction or more specialized roles such as drafting, inspecting, and managing, depending on their training or experience. After going through training programs, their scope may extend to monitoring build progress, preparing sites, and drafting blueprints using CAD software. Once they accumulate years of experience, they will be tasked with supervising the contracting team and project.

        This professional’s responsibilities include: the management of all remodel activities; the enforcement of safety requirements to implement safety conditions at work site; the creation of reports about qualitative and quantitative methodologies; the hiring of contractors for maintenance work and upgrades.

        Many hard and soft skills are essential for success and crucial for a construction technician’s day-to-day tasks. Because they have to interpret complex information and transform abstract ideas into tangible products, the number one technical skill necessary for success in construction is excellent communication skills, both receiving and delivering accurate and relevant information.

(https://www.zippia.com/construction-technician-jobs/.10.06.2024. Adaptado)
Read the titles below and decide the one that best represents the content of the text.
Alternativas
Q3263847 Inglês
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         The correction of genetic errors associated with disease in animals suggests that gene editing has potential applications in gene therapy for humans. Gene therapy is the introduction of a normal gene into an individual’s genome in order to repair a mutation that causes a genetic disease. When a normal gene is inserted into a mutant nucleus, it most likely will integrate into a chromosomal site different from the defective allele. Although this may repair the mutation, a new mutation may result if the normal gene integrates into another functional gene. If the normal gene replaces the mutant allele, there is a chance that the transformed cells will proliferate and produce enough normal gene product for the entire body to be restored to the undiseased phenotype.

(www.britannica.com/science/genetic-engineering/ Process-and-techniques. Adaptado)
According to the text, gene therapy intends to
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Q3263846 Inglês
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         The correction of genetic errors associated with disease in animals suggests that gene editing has potential applications in gene therapy for humans. Gene therapy is the introduction of a normal gene into an individual’s genome in order to repair a mutation that causes a genetic disease. When a normal gene is inserted into a mutant nucleus, it most likely will integrate into a chromosomal site different from the defective allele. Although this may repair the mutation, a new mutation may result if the normal gene integrates into another functional gene. If the normal gene replaces the mutant allele, there is a chance that the transformed cells will proliferate and produce enough normal gene product for the entire body to be restored to the undiseased phenotype.

(www.britannica.com/science/genetic-engineering/ Process-and-techniques. Adaptado)
No trecho do texto – it most likely will integrate into a chromosomal site different from the defective allele – o termo em negrito indica 
Alternativas
Q3263845 Inglês
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         The correction of genetic errors associated with disease in animals suggests that gene editing has potential applications in gene therapy for humans. Gene therapy is the introduction of a normal gene into an individual’s genome in order to repair a mutation that causes a genetic disease. When a normal gene is inserted into a mutant nucleus, it most likely will integrate into a chromosomal site different from the defective allele. Although this may repair the mutation, a new mutation may result if the normal gene integrates into another functional gene. If the normal gene replaces the mutant allele, there is a chance that the transformed cells will proliferate and produce enough normal gene product for the entire body to be restored to the undiseased phenotype.

(www.britannica.com/science/genetic-engineering/ Process-and-techniques. Adaptado)
The part of the text that indicates that an unwanted problem may happen is: 
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Q3263844 Inglês
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        Cell culture experiments are widely used in biomedical research, regenerative medicine, and biotechnological production. Due to restrictions on the use of laboratory animals by animal protection laws and the strict implementation of the 3Rs (Replacement, Reduction, and Refinement) formulated by William Russell and Rex Burch to improve the welfare of animals, it can be expected that the general use of cell lines will further increase during the next years to substitute animal-based research. However, it should be noted that cell culture experiments, if not properly conducted, are prone to errors. Therefore, it is essential that cell culture studies are performed with good cell culture practice (GCCP) to assure the reproducibility of in vitro experimentation.

        In particular, inter- and intra-specific cross-contamination and cell misidentification, genetic drift, contamination with bacteria, fungi, yeast, viruses, or chemicals, and lack of quality control testing are widespread fatal cell culture problems that contaminate the literature with false and irreproducible results. Rough estimates suggest that the number of published papers that used problematic cell lines is about 16.1%. Moreover, the International Cell Line Authentication Committee (ICLAC) lists 576 misidentified or cross-contaminated cell lines in its latest register released in June 2021.

(Weiskirchen S, Schröder SK, Buhl EM, Weiskirchen R. A Beginner’s
Guide to Cell Culture: Practical Advice for Preventing Needless Problems.
Cells. 2023 Feb 21;12(5):682. doi: 10.3390/cells12050682.
PMID: 36899818; PMCID: PMC10000895.
www.ncbi.nlm.nih.gov/pmc/articles/PMC10000895/. Adaptado)
De acordo com o texto, é fundamental que experimentos com culturas de células in vitro
Alternativas
Q3263843 Inglês
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        Cell culture experiments are widely used in biomedical research, regenerative medicine, and biotechnological production. Due to restrictions on the use of laboratory animals by animal protection laws and the strict implementation of the 3Rs (Replacement, Reduction, and Refinement) formulated by William Russell and Rex Burch to improve the welfare of animals, it can be expected that the general use of cell lines will further increase during the next years to substitute animal-based research. However, it should be noted that cell culture experiments, if not properly conducted, are prone to errors. Therefore, it is essential that cell culture studies are performed with good cell culture practice (GCCP) to assure the reproducibility of in vitro experimentation.

        In particular, inter- and intra-specific cross-contamination and cell misidentification, genetic drift, contamination with bacteria, fungi, yeast, viruses, or chemicals, and lack of quality control testing are widespread fatal cell culture problems that contaminate the literature with false and irreproducible results. Rough estimates suggest that the number of published papers that used problematic cell lines is about 16.1%. Moreover, the International Cell Line Authentication Committee (ICLAC) lists 576 misidentified or cross-contaminated cell lines in its latest register released in June 2021.

(Weiskirchen S, Schröder SK, Buhl EM, Weiskirchen R. A Beginner’s
Guide to Cell Culture: Practical Advice for Preventing Needless Problems.
Cells. 2023 Feb 21;12(5):682. doi: 10.3390/cells12050682.
PMID: 36899818; PMCID: PMC10000895.
www.ncbi.nlm.nih.gov/pmc/articles/PMC10000895/. Adaptado)
According to the second paragraph, an example of contaminant that may be present during in vitro cell culture is:
Alternativas
Q3263842 Inglês
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        Cell culture experiments are widely used in biomedical research, regenerative medicine, and biotechnological production. Due to restrictions on the use of laboratory animals by animal protection laws and the strict implementation of the 3Rs (Replacement, Reduction, and Refinement) formulated by William Russell and Rex Burch to improve the welfare of animals, it can be expected that the general use of cell lines will further increase during the next years to substitute animal-based research. However, it should be noted that cell culture experiments, if not properly conducted, are prone to errors. Therefore, it is essential that cell culture studies are performed with good cell culture practice (GCCP) to assure the reproducibility of in vitro experimentation.

        In particular, inter- and intra-specific cross-contamination and cell misidentification, genetic drift, contamination with bacteria, fungi, yeast, viruses, or chemicals, and lack of quality control testing are widespread fatal cell culture problems that contaminate the literature with false and irreproducible results. Rough estimates suggest that the number of published papers that used problematic cell lines is about 16.1%. Moreover, the International Cell Line Authentication Committee (ICLAC) lists 576 misidentified or cross-contaminated cell lines in its latest register released in June 2021.

(Weiskirchen S, Schröder SK, Buhl EM, Weiskirchen R. A Beginner’s
Guide to Cell Culture: Practical Advice for Preventing Needless Problems.
Cells. 2023 Feb 21;12(5):682. doi: 10.3390/cells12050682.
PMID: 36899818; PMCID: PMC10000895.
www.ncbi.nlm.nih.gov/pmc/articles/PMC10000895/. Adaptado)
O trecho em negrito do primeiro parágrafo – cell culture experiments, if not properly conducted, are prone to errors – apresenta, no contexto, uma
Alternativas
Q3263841 Inglês
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        Cell culture experiments are widely used in biomedical research, regenerative medicine, and biotechnological production. Due to restrictions on the use of laboratory animals by animal protection laws and the strict implementation of the 3Rs (Replacement, Reduction, and Refinement) formulated by William Russell and Rex Burch to improve the welfare of animals, it can be expected that the general use of cell lines will further increase during the next years to substitute animal-based research. However, it should be noted that cell culture experiments, if not properly conducted, are prone to errors. Therefore, it is essential that cell culture studies are performed with good cell culture practice (GCCP) to assure the reproducibility of in vitro experimentation.

        In particular, inter- and intra-specific cross-contamination and cell misidentification, genetic drift, contamination with bacteria, fungi, yeast, viruses, or chemicals, and lack of quality control testing are widespread fatal cell culture problems that contaminate the literature with false and irreproducible results. Rough estimates suggest that the number of published papers that used problematic cell lines is about 16.1%. Moreover, the International Cell Line Authentication Committee (ICLAC) lists 576 misidentified or cross-contaminated cell lines in its latest register released in June 2021.

(Weiskirchen S, Schröder SK, Buhl EM, Weiskirchen R. A Beginner’s
Guide to Cell Culture: Practical Advice for Preventing Needless Problems.
Cells. 2023 Feb 21;12(5):682. doi: 10.3390/cells12050682.
PMID: 36899818; PMCID: PMC10000895.
www.ncbi.nlm.nih.gov/pmc/articles/PMC10000895/. Adaptado)
No trecho do primeiro parágrafo – However, it should be noted that cell culture experiments – o termo em negrito pode ser substituído, sem alteração de sentido, por 
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Q3263840 Inglês
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        Cell culture experiments are widely used in biomedical research, regenerative medicine, and biotechnological production. Due to restrictions on the use of laboratory animals by animal protection laws and the strict implementation of the 3Rs (Replacement, Reduction, and Refinement) formulated by William Russell and Rex Burch to improve the welfare of animals, it can be expected that the general use of cell lines will further increase during the next years to substitute animal-based research. However, it should be noted that cell culture experiments, if not properly conducted, are prone to errors. Therefore, it is essential that cell culture studies are performed with good cell culture practice (GCCP) to assure the reproducibility of in vitro experimentation.

        In particular, inter- and intra-specific cross-contamination and cell misidentification, genetic drift, contamination with bacteria, fungi, yeast, viruses, or chemicals, and lack of quality control testing are widespread fatal cell culture problems that contaminate the literature with false and irreproducible results. Rough estimates suggest that the number of published papers that used problematic cell lines is about 16.1%. Moreover, the International Cell Line Authentication Committee (ICLAC) lists 576 misidentified or cross-contaminated cell lines in its latest register released in June 2021.

(Weiskirchen S, Schröder SK, Buhl EM, Weiskirchen R. A Beginner’s
Guide to Cell Culture: Practical Advice for Preventing Needless Problems.
Cells. 2023 Feb 21;12(5):682. doi: 10.3390/cells12050682.
PMID: 36899818; PMCID: PMC10000895.
www.ncbi.nlm.nih.gov/pmc/articles/PMC10000895/. Adaptado)
No trecho do primeiro parágrafo – Due to restrictions on the use of laboratory animals – a expressão em negrito introduz uma
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Q3263839 Inglês
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        Cell culture experiments are widely used in biomedical research, regenerative medicine, and biotechnological production. Due to restrictions on the use of laboratory animals by animal protection laws and the strict implementation of the 3Rs (Replacement, Reduction, and Refinement) formulated by William Russell and Rex Burch to improve the welfare of animals, it can be expected that the general use of cell lines will further increase during the next years to substitute animal-based research. However, it should be noted that cell culture experiments, if not properly conducted, are prone to errors. Therefore, it is essential that cell culture studies are performed with good cell culture practice (GCCP) to assure the reproducibility of in vitro experimentation.

        In particular, inter- and intra-specific cross-contamination and cell misidentification, genetic drift, contamination with bacteria, fungi, yeast, viruses, or chemicals, and lack of quality control testing are widespread fatal cell culture problems that contaminate the literature with false and irreproducible results. Rough estimates suggest that the number of published papers that used problematic cell lines is about 16.1%. Moreover, the International Cell Line Authentication Committee (ICLAC) lists 576 misidentified or cross-contaminated cell lines in its latest register released in June 2021.

(Weiskirchen S, Schröder SK, Buhl EM, Weiskirchen R. A Beginner’s
Guide to Cell Culture: Practical Advice for Preventing Needless Problems.
Cells. 2023 Feb 21;12(5):682. doi: 10.3390/cells12050682.
PMID: 36899818; PMCID: PMC10000895.
www.ncbi.nlm.nih.gov/pmc/articles/PMC10000895/. Adaptado)
According to what is stated in the first paragraph, William Russel and Rex Burch aimed at improving
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Q3263838 Inglês
Leia o texto para responder à questão.

        Cell culture experiments are widely used in biomedical research, regenerative medicine, and biotechnological production. Due to restrictions on the use of laboratory animals by animal protection laws and the strict implementation of the 3Rs (Replacement, Reduction, and Refinement) formulated by William Russell and Rex Burch to improve the welfare of animals, it can be expected that the general use of cell lines will further increase during the next years to substitute animal-based research. However, it should be noted that cell culture experiments, if not properly conducted, are prone to errors. Therefore, it is essential that cell culture studies are performed with good cell culture practice (GCCP) to assure the reproducibility of in vitro experimentation.

        In particular, inter- and intra-specific cross-contamination and cell misidentification, genetic drift, contamination with bacteria, fungi, yeast, viruses, or chemicals, and lack of quality control testing are widespread fatal cell culture problems that contaminate the literature with false and irreproducible results. Rough estimates suggest that the number of published papers that used problematic cell lines is about 16.1%. Moreover, the International Cell Line Authentication Committee (ICLAC) lists 576 misidentified or cross-contaminated cell lines in its latest register released in June 2021.

(Weiskirchen S, Schröder SK, Buhl EM, Weiskirchen R. A Beginner’s
Guide to Cell Culture: Practical Advice for Preventing Needless Problems.
Cells. 2023 Feb 21;12(5):682. doi: 10.3390/cells12050682.
PMID: 36899818; PMCID: PMC10000895.
www.ncbi.nlm.nih.gov/pmc/articles/PMC10000895/. Adaptado)
The text is mainly about
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Q3258941 Inglês

Autism Teaching Methods: Applied

Behavior Analysis and Verbal Behavior



Applied Behavior Analysis, or ABA, is a method of teaching children with autism and Pervasive Developmental Disorders. It is based on the premise that appropriate behavior – including speech, academics and life skills – can be taught using scientific principles.


ABA assumes that children are more likely to repeat behaviors or responses that are rewarded (or “reinforced”), and they are less likely to continue behaviors that are not rewarded. Eventually, the reinforcement is reduced so that the child can learn without constant rewards.


Research shows that ABA works for kids with autism. “Thirty years of research demonstrated the efficacy of applied behavioral methods in reducing inappropriate behavior and in increasing communication, learning, and appropriate social behavior,” according to a U.S. Surgeon General’s Report.


The most well-known form of ABA is discrete trial training (DTT). Skills are broken down into the smallest tasks and taught individually. Discrete, or separate, trials may be used to teach eye contact, imitation, fine motor skills, self-help, academics, language and conversation. Students start with learning small skills, and gradually learn more complicated skills as each smaller one is mastered. […]



Source adapted from:

www.teaching-methods-childrens-with-autism

Read the sentences below and determine whether they are true ( T ) or false ( F ) according to structure and grammar use in Text 2.

( ) The underlined words in The most wellknown…” and “the smallest tasks…” (4th paragraph) are examples of adjectives in the superlative of superiority degree.
( ) The word Eventually in “Eventually, the reinforcement is reduced so that the child can learn without constant rewards.” (2nd paragraph), can be replaced by Finally without changing its meaning.
( ) In “…according to a U.S. Surgeon General’s Report.” (3rd paragraph), the apostrophe ’s is the reduced form of the verb to be: is.
( ) The verbs: “taught” and “broken” (4th paragraph), has their correct infinitive forms as teaches and breaks.

Select the option that presents the correct sequence from top to bottom.
Alternativas
Q3258940 Inglês

Autism Teaching Methods: Applied

Behavior Analysis and Verbal Behavior



Applied Behavior Analysis, or ABA, is a method of teaching children with autism and Pervasive Developmental Disorders. It is based on the premise that appropriate behavior – including speech, academics and life skills – can be taught using scientific principles.


ABA assumes that children are more likely to repeat behaviors or responses that are rewarded (or “reinforced”), and they are less likely to continue behaviors that are not rewarded. Eventually, the reinforcement is reduced so that the child can learn without constant rewards.


Research shows that ABA works for kids with autism. “Thirty years of research demonstrated the efficacy of applied behavioral methods in reducing inappropriate behavior and in increasing communication, learning, and appropriate social behavior,” according to a U.S. Surgeon General’s Report.


The most well-known form of ABA is discrete trial training (DTT). Skills are broken down into the smallest tasks and taught individually. Discrete, or separate, trials may be used to teach eye contact, imitation, fine motor skills, self-help, academics, language and conversation. Students start with learning small skills, and gradually learn more complicated skills as each smaller one is mastered. […]



Source adapted from:

www.teaching-methods-childrens-with-autism

Based on Text 2, what does the acronym DTT stand for? Which alternative answers the question correctly?
Alternativas
Q3258939 Inglês

Autism Teaching Methods: Applied

Behavior Analysis and Verbal Behavior



Applied Behavior Analysis, or ABA, is a method of teaching children with autism and Pervasive Developmental Disorders. It is based on the premise that appropriate behavior – including speech, academics and life skills – can be taught using scientific principles.


ABA assumes that children are more likely to repeat behaviors or responses that are rewarded (or “reinforced”), and they are less likely to continue behaviors that are not rewarded. Eventually, the reinforcement is reduced so that the child can learn without constant rewards.


Research shows that ABA works for kids with autism. “Thirty years of research demonstrated the efficacy of applied behavioral methods in reducing inappropriate behavior and in increasing communication, learning, and appropriate social behavior,” according to a U.S. Surgeon General’s Report.


The most well-known form of ABA is discrete trial training (DTT). Skills are broken down into the smallest tasks and taught individually. Discrete, or separate, trials may be used to teach eye contact, imitation, fine motor skills, self-help, academics, language and conversation. Students start with learning small skills, and gradually learn more complicated skills as each smaller one is mastered. […]



Source adapted from:

www.teaching-methods-childrens-with-autism

Based in Text 2, what the Applied Behavior Analysis method consists on?
Alternativas
Q3258938 Inglês

Text 1


Companies know how we think


Companies can now find out exactly how you think through the science of neuromarketing. Advertisers are currently collaborating with scientists to test their products directly on our brains. Some experts believe that one in ten TV commercials have already been designed using neuromarketing.


The reasons are obvious.The technique allows companies to discover exactly what people like about their products. For example, when we eat a type of potato chip, it may be the color, the flavor, or the pleasant noise it makes when you crunch it in your mouth that we like most.


In order ................ tap into what’s going ................ in consumers’ brains, it all begins laboratories and office buildings.


Groups of volunteers submit themselves to a simple process. Wearing a special headset called an electrode cap, they watch commercials or test products. The caps allow researchers to monitor brain activity. When something attracts the attention of the volunteers, this is highlighted on a computer. They literally use this device to read the minds of their volunteers. This may sound a little scary, but advertisers are just tapping into our existing thoughts and desires. And that’s what advertisers have always tried to do.


Previously, companies would give people a survey or questionnaire to complete in order to research their customers. The problem was that people didn’t always tell the truth. They may not want to be critical of a product or advertisement because they don’t want to upset the interviewer. The electrode cap overcomes this problem. It shows when someone really is interested in something.


Neuromarketing is also used to develop packaging for the world’s most famous brands. The aim is to make their products stand out in a busy marketplace. This will become standard as more companies capitalize on the technology. With millions invested in advertising, companies simply cannot afford to hope that their ads and products will be a success. If they can find out what we think first, and change their products to make them more successful, they will quickly pay off the high cost of neuromarketing and dominate their market.

Study the words in bold in the following paragraph from Text 1.


“Groups of volunteers submit themselves to a simple process. Wearing a special headset called an electrode cap, they watch commercials or test products. The caps allow researchers to monitor brain activity. When something attracts the attention of the volunteers, this is highlighted on a computer. They literally use this device to read the minds of their volunteers.”


The words in bold are:

Alternativas
Q3258847 Inglês
Text I


Shock of the old: Believe it or not, battery-powered vehicles
have been around since Victorian times.

   The history of the electric car is surprisingly enraging. If you imagine early electric vehicles at all (full disclosure: I didn’t until recently), it will probably be as the quixotic and possibly dangerous dream of a few eccentrics, maybe in the 1920s or 1930s, when domestic electrification became widespread. It’s easy to imagine some stiff-collared proto-Musk getting bored of hunting and affairs, eyeing his newly installed electric lights speculatively, then wreaking untold havoc and mass electrocutions. The reality is entirely different.

   By 1900, a third of all cars on the road in the US were electric; we’re looking at the history of a cruelly missed opportunity, and it started astonishingly early. The Scottish engineer Robert Anderson had a go at an electric car of sorts way back in the 1830s, though his invention was somewhat stymied by the fact rechargeable batteries were not invented until 1859, making his crude carriage something of a one-trick pony (and far less useful than an actual pony).

   It’s debatable whether or not Scotland was ready for this brave new world anyway: in 1842, Robert Davidson (another Scot, who had, a few years earlier, also tried his hand at an electric vehicle) saw his electric locomotive Galvani “broken by some malicious hands almost beyond repair” in Perth. The contemporary consensus was that it was attacked by railway workers fearful for their jobs.

   Despite this unpromising start, electric vehicles had entered widespread commercial circulation by the start of the 20th century, particularly in the US. Electric cabs crisscrossed Manhattan, 1897’s bestselling US car was electric and, when he was shot in 1901, President McKinley was taken to hospital in an electric ambulance. London had Walter Bersey’s electric taxis, and Berlin’s fire engines went electric in 1908; the future looked bright, clean and silent.

   By the 1930s, however, the tide had definitively turned against electric, cursed by range limitations and impractical charging times while petrol gained the upper hand thanks partly – and ironically – to the electric starter motor. The Horseless Age magazine, which vehemently backed the petrol non-horse, would have been delighted. There was a brief resurgence of interest in the late 1960s, when the US Congress passed a bill promoting electrical vehicle development, but nothing much actually happened until the Nissan Leaf sparked interest in 2009. Electric still isn’t quite there yet, battling infrastructure and battery problems that might have been familiar to Anderson and friends.


Adapted from The Guardian, Tuesday 24 October 2023, p. 6 https://www.theguardian.com/lifeandstyle/series/shock-of-the-old/2023/oct/24/all
In “which vehemently backed” (5th paragraph) the verb is similar in meaning to:
Alternativas
Q3258846 Inglês
Text I


Shock of the old: Believe it or not, battery-powered vehicles
have been around since Victorian times.

   The history of the electric car is surprisingly enraging. If you imagine early electric vehicles at all (full disclosure: I didn’t until recently), it will probably be as the quixotic and possibly dangerous dream of a few eccentrics, maybe in the 1920s or 1930s, when domestic electrification became widespread. It’s easy to imagine some stiff-collared proto-Musk getting bored of hunting and affairs, eyeing his newly installed electric lights speculatively, then wreaking untold havoc and mass electrocutions. The reality is entirely different.

   By 1900, a third of all cars on the road in the US were electric; we’re looking at the history of a cruelly missed opportunity, and it started astonishingly early. The Scottish engineer Robert Anderson had a go at an electric car of sorts way back in the 1830s, though his invention was somewhat stymied by the fact rechargeable batteries were not invented until 1859, making his crude carriage something of a one-trick pony (and far less useful than an actual pony).

   It’s debatable whether or not Scotland was ready for this brave new world anyway: in 1842, Robert Davidson (another Scot, who had, a few years earlier, also tried his hand at an electric vehicle) saw his electric locomotive Galvani “broken by some malicious hands almost beyond repair” in Perth. The contemporary consensus was that it was attacked by railway workers fearful for their jobs.

   Despite this unpromising start, electric vehicles had entered widespread commercial circulation by the start of the 20th century, particularly in the US. Electric cabs crisscrossed Manhattan, 1897’s bestselling US car was electric and, when he was shot in 1901, President McKinley was taken to hospital in an electric ambulance. London had Walter Bersey’s electric taxis, and Berlin’s fire engines went electric in 1908; the future looked bright, clean and silent.

   By the 1930s, however, the tide had definitively turned against electric, cursed by range limitations and impractical charging times while petrol gained the upper hand thanks partly – and ironically – to the electric starter motor. The Horseless Age magazine, which vehemently backed the petrol non-horse, would have been delighted. There was a brief resurgence of interest in the late 1960s, when the US Congress passed a bill promoting electrical vehicle development, but nothing much actually happened until the Nissan Leaf sparked interest in 2009. Electric still isn’t quite there yet, battling infrastructure and battery problems that might have been familiar to Anderson and friends.


Adapted from The Guardian, Tuesday 24 October 2023, p. 6 https://www.theguardian.com/lifeandstyle/series/shock-of-the-old/2023/oct/24/all
The idiom in “the tide had definitively turned” (5th paragraph) implies that the course of events had:
Alternativas
Q3258845 Inglês
Text I


Shock of the old: Believe it or not, battery-powered vehicles
have been around since Victorian times.

   The history of the electric car is surprisingly enraging. If you imagine early electric vehicles at all (full disclosure: I didn’t until recently), it will probably be as the quixotic and possibly dangerous dream of a few eccentrics, maybe in the 1920s or 1930s, when domestic electrification became widespread. It’s easy to imagine some stiff-collared proto-Musk getting bored of hunting and affairs, eyeing his newly installed electric lights speculatively, then wreaking untold havoc and mass electrocutions. The reality is entirely different.

   By 1900, a third of all cars on the road in the US were electric; we’re looking at the history of a cruelly missed opportunity, and it started astonishingly early. The Scottish engineer Robert Anderson had a go at an electric car of sorts way back in the 1830s, though his invention was somewhat stymied by the fact rechargeable batteries were not invented until 1859, making his crude carriage something of a one-trick pony (and far less useful than an actual pony).

   It’s debatable whether or not Scotland was ready for this brave new world anyway: in 1842, Robert Davidson (another Scot, who had, a few years earlier, also tried his hand at an electric vehicle) saw his electric locomotive Galvani “broken by some malicious hands almost beyond repair” in Perth. The contemporary consensus was that it was attacked by railway workers fearful for their jobs.

   Despite this unpromising start, electric vehicles had entered widespread commercial circulation by the start of the 20th century, particularly in the US. Electric cabs crisscrossed Manhattan, 1897’s bestselling US car was electric and, when he was shot in 1901, President McKinley was taken to hospital in an electric ambulance. London had Walter Bersey’s electric taxis, and Berlin’s fire engines went electric in 1908; the future looked bright, clean and silent.

   By the 1930s, however, the tide had definitively turned against electric, cursed by range limitations and impractical charging times while petrol gained the upper hand thanks partly – and ironically – to the electric starter motor. The Horseless Age magazine, which vehemently backed the petrol non-horse, would have been delighted. There was a brief resurgence of interest in the late 1960s, when the US Congress passed a bill promoting electrical vehicle development, but nothing much actually happened until the Nissan Leaf sparked interest in 2009. Electric still isn’t quite there yet, battling infrastructure and battery problems that might have been familiar to Anderson and friends.


Adapted from The Guardian, Tuesday 24 October 2023, p. 6 https://www.theguardian.com/lifeandstyle/series/shock-of-the-old/2023/oct/24/all
In “Despite this unpromising start” (4th paragraph), the first word can be replaced by:
Alternativas
Q3258844 Inglês
Text I


Shock of the old: Believe it or not, battery-powered vehicles
have been around since Victorian times.

   The history of the electric car is surprisingly enraging. If you imagine early electric vehicles at all (full disclosure: I didn’t until recently), it will probably be as the quixotic and possibly dangerous dream of a few eccentrics, maybe in the 1920s or 1930s, when domestic electrification became widespread. It’s easy to imagine some stiff-collared proto-Musk getting bored of hunting and affairs, eyeing his newly installed electric lights speculatively, then wreaking untold havoc and mass electrocutions. The reality is entirely different.

   By 1900, a third of all cars on the road in the US were electric; we’re looking at the history of a cruelly missed opportunity, and it started astonishingly early. The Scottish engineer Robert Anderson had a go at an electric car of sorts way back in the 1830s, though his invention was somewhat stymied by the fact rechargeable batteries were not invented until 1859, making his crude carriage something of a one-trick pony (and far less useful than an actual pony).

   It’s debatable whether or not Scotland was ready for this brave new world anyway: in 1842, Robert Davidson (another Scot, who had, a few years earlier, also tried his hand at an electric vehicle) saw his electric locomotive Galvani “broken by some malicious hands almost beyond repair” in Perth. The contemporary consensus was that it was attacked by railway workers fearful for their jobs.

   Despite this unpromising start, electric vehicles had entered widespread commercial circulation by the start of the 20th century, particularly in the US. Electric cabs crisscrossed Manhattan, 1897’s bestselling US car was electric and, when he was shot in 1901, President McKinley was taken to hospital in an electric ambulance. London had Walter Bersey’s electric taxis, and Berlin’s fire engines went electric in 1908; the future looked bright, clean and silent.

   By the 1930s, however, the tide had definitively turned against electric, cursed by range limitations and impractical charging times while petrol gained the upper hand thanks partly – and ironically – to the electric starter motor. The Horseless Age magazine, which vehemently backed the petrol non-horse, would have been delighted. There was a brief resurgence of interest in the late 1960s, when the US Congress passed a bill promoting electrical vehicle development, but nothing much actually happened until the Nissan Leaf sparked interest in 2009. Electric still isn’t quite there yet, battling infrastructure and battery problems that might have been familiar to Anderson and friends.


Adapted from The Guardian, Tuesday 24 October 2023, p. 6 https://www.theguardian.com/lifeandstyle/series/shock-of-the-old/2023/oct/24/all
The phrase “wreaking […] havoc” (1st paragraph) is similar in meaning to:
Alternativas
Q3258843 Inglês
Text I


Shock of the old: Believe it or not, battery-powered vehicles
have been around since Victorian times.

   The history of the electric car is surprisingly enraging. If you imagine early electric vehicles at all (full disclosure: I didn’t until recently), it will probably be as the quixotic and possibly dangerous dream of a few eccentrics, maybe in the 1920s or 1930s, when domestic electrification became widespread. It’s easy to imagine some stiff-collared proto-Musk getting bored of hunting and affairs, eyeing his newly installed electric lights speculatively, then wreaking untold havoc and mass electrocutions. The reality is entirely different.

   By 1900, a third of all cars on the road in the US were electric; we’re looking at the history of a cruelly missed opportunity, and it started astonishingly early. The Scottish engineer Robert Anderson had a go at an electric car of sorts way back in the 1830s, though his invention was somewhat stymied by the fact rechargeable batteries were not invented until 1859, making his crude carriage something of a one-trick pony (and far less useful than an actual pony).

   It’s debatable whether or not Scotland was ready for this brave new world anyway: in 1842, Robert Davidson (another Scot, who had, a few years earlier, also tried his hand at an electric vehicle) saw his electric locomotive Galvani “broken by some malicious hands almost beyond repair” in Perth. The contemporary consensus was that it was attacked by railway workers fearful for their jobs.

   Despite this unpromising start, electric vehicles had entered widespread commercial circulation by the start of the 20th century, particularly in the US. Electric cabs crisscrossed Manhattan, 1897’s bestselling US car was electric and, when he was shot in 1901, President McKinley was taken to hospital in an electric ambulance. London had Walter Bersey’s electric taxis, and Berlin’s fire engines went electric in 1908; the future looked bright, clean and silent.

   By the 1930s, however, the tide had definitively turned against electric, cursed by range limitations and impractical charging times while petrol gained the upper hand thanks partly – and ironically – to the electric starter motor. The Horseless Age magazine, which vehemently backed the petrol non-horse, would have been delighted. There was a brief resurgence of interest in the late 1960s, when the US Congress passed a bill promoting electrical vehicle development, but nothing much actually happened until the Nissan Leaf sparked interest in 2009. Electric still isn’t quite there yet, battling infrastructure and battery problems that might have been familiar to Anderson and friends.


Adapted from The Guardian, Tuesday 24 October 2023, p. 6 https://www.theguardian.com/lifeandstyle/series/shock-of-the-old/2023/oct/24/all
The last sentence indicates that some hurdles remain to be:
Alternativas
Respostas
6881: D
6882: E
6883: A
6884: C
6885: D
6886: B
6887: C
6888: E
6889: A
6890: B
6891: D
6892: A
6893: B
6894: A
6895: E
6896: A
6897: A
6898: E
6899: D
6900: B