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4.981 questões de Universidade Estadual do Ceará (UECE), todas de 2017. Cada uma tem página própria, com enunciado completo, alternativas e gabarito — e dá para responder na própria página.

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4.981 questões encontradas. Mostrando a página 120 de 250.

  • DC285E44-CB

    Inglês

    Interpretação de texto | Reading comprehension
    UECE · 2017DifícilEntre para guardar nos favoritos

                                                  T E X T


          If all of the children who currently are sedentary started exercising every day, societies could save enormous amounts of money in the coming decades and have healthier citizens as a whole, according to a remarkable new study. In the United States alone, we could expect to save more than $120 billion every year in health care and associated expenses. The study is the first to use sophisticated computer simulations to arrive at a literal and sobering societal price tag for allowing our children to be sedentary.

          Inactivity is, of course, widespread among young people today. Recent research shows that in the United States and Europe, physical activity tends to peak at about age 7 for both boys and girls and tail off continually throughout adolescence. More than two-thirds of children in the United States rarely exercise at all.

          The immediate health consequences for inactive children and their families are worrisome. Childhood obesity, which is linked to lack of exercise, is common, as is the incidence of Type 2 diabetes and other health problems related to being overweight among children as young as 6.

          But the long-term financial costs of inactivity in the young, both for them and society as a whole, have never been quantified. So for the new study, which was published this week in Health Affairs, researchers with the Global Obesity Prevention Center at Johns Hopkins University in Baltimore and other institutions decided to create a bogglingly complex computer model of what the future could look like if we do or do not get more of our children moving.

          The researchers began by gathering as much public data as is currently available about the health, weight and physical activity patterns of all 31.7 million American children now aged 8 to 11, using large-scale databases from the Census Bureau, the Centers for Disease Control and Prevention, and other groups.

          The researchers fed this information into a computerized modeling program that created an electronic avatar for every American child today. In line with reality, two-thirds of these children were programmed to rarely exercise and many were overweight or obese.

          The scientists then had the simulated children grow up. Using estimations about how calorie intake and activity patterns affect body weight, the program changed each virtual child’s body day-by-day and year-by-year into adulthood. Most became increasingly overweight.

          As the simulated children became adults, the scientists then modeled each one’s health, based on obesity-associated risks for heart disease, diabetes, stroke and cancer, and also the probable financial price of dealing with those diseases (adjusted for future inflation), both in terms of direct expenses for hospitalizations, drugs and so on, and lost productivity because of someone’s being ill.

          The results were staggering. According to the computer model, the costs of today’s 8- to 11- year-olds being inactive and consequently overweight would be almost $3 trillion in medical expenses and lost productivity every year once the children reached adulthood and for decades until their deaths.

          But when the researchers tweaked children’s activity levels within their model, the numbers began to look quite different. If they presumed that, in an imaginary America, half of all children exercised vigorously for about 25 minutes three times a week, such as during active recess or sports or, more ambitiously, ran around and moved for at least an hour every day, which is the amount of youth exercise recommended by the C.D.C., their virtual lives were transformed.

          Most obviously, the incidence of childhood obesity fell by more than 4 percent, a change that resonated throughout the simulated children’s lives and society. There were about half a million fewer cases of adult-onset heart disease, diabetes, cancer and strokes in this simulation, and the society-wide costs associated with these illnesses dropped by about $32 billion every year if the children romped about for 25 minutes three times per week and by almost $37 billion if they moved for an hour every day.

          The impacts were even more substantial when the researchers assumed that 100 percent of the children who are now sedentary got regular exercise. In this scenario, the annual total costs during adulthood from obesity-associated medical expenses and lost productivity plummeted by about $62 billion when children were active three times a week and by more than $120 billion every year when all of the virtual children played and moved for at least an hour each day.

                                                         From: https://www.nytimes.com May 3, 2017

    According to the article, the researchers, taking into account the current reality of children in the US, fed the computer program with the information about the lack of exercising and the calorie intaking patterns and made the computer model go through the growing process year by year, thus revealing that these children
    Escolha uma alternativa para a questão dc285e44-cb
  • DC24425B-CB

    Inglês

    Interpretação de texto | Reading comprehension
    UECE · 2017MédioEntre para guardar nos favoritos

                                                  T E X T


          If all of the children who currently are sedentary started exercising every day, societies could save enormous amounts of money in the coming decades and have healthier citizens as a whole, according to a remarkable new study. In the United States alone, we could expect to save more than $120 billion every year in health care and associated expenses. The study is the first to use sophisticated computer simulations to arrive at a literal and sobering societal price tag for allowing our children to be sedentary.

          Inactivity is, of course, widespread among young people today. Recent research shows that in the United States and Europe, physical activity tends to peak at about age 7 for both boys and girls and tail off continually throughout adolescence. More than two-thirds of children in the United States rarely exercise at all.

          The immediate health consequences for inactive children and their families are worrisome. Childhood obesity, which is linked to lack of exercise, is common, as is the incidence of Type 2 diabetes and other health problems related to being overweight among children as young as 6.

          But the long-term financial costs of inactivity in the young, both for them and society as a whole, have never been quantified. So for the new study, which was published this week in Health Affairs, researchers with the Global Obesity Prevention Center at Johns Hopkins University in Baltimore and other institutions decided to create a bogglingly complex computer model of what the future could look like if we do or do not get more of our children moving.

          The researchers began by gathering as much public data as is currently available about the health, weight and physical activity patterns of all 31.7 million American children now aged 8 to 11, using large-scale databases from the Census Bureau, the Centers for Disease Control and Prevention, and other groups.

          The researchers fed this information into a computerized modeling program that created an electronic avatar for every American child today. In line with reality, two-thirds of these children were programmed to rarely exercise and many were overweight or obese.

          The scientists then had the simulated children grow up. Using estimations about how calorie intake and activity patterns affect body weight, the program changed each virtual child’s body day-by-day and year-by-year into adulthood. Most became increasingly overweight.

          As the simulated children became adults, the scientists then modeled each one’s health, based on obesity-associated risks for heart disease, diabetes, stroke and cancer, and also the probable financial price of dealing with those diseases (adjusted for future inflation), both in terms of direct expenses for hospitalizations, drugs and so on, and lost productivity because of someone’s being ill.

          The results were staggering. According to the computer model, the costs of today’s 8- to 11- year-olds being inactive and consequently overweight would be almost $3 trillion in medical expenses and lost productivity every year once the children reached adulthood and for decades until their deaths.

          But when the researchers tweaked children’s activity levels within their model, the numbers began to look quite different. If they presumed that, in an imaginary America, half of all children exercised vigorously for about 25 minutes three times a week, such as during active recess or sports or, more ambitiously, ran around and moved for at least an hour every day, which is the amount of youth exercise recommended by the C.D.C., their virtual lives were transformed.

          Most obviously, the incidence of childhood obesity fell by more than 4 percent, a change that resonated throughout the simulated children’s lives and society. There were about half a million fewer cases of adult-onset heart disease, diabetes, cancer and strokes in this simulation, and the society-wide costs associated with these illnesses dropped by about $32 billion every year if the children romped about for 25 minutes three times per week and by almost $37 billion if they moved for an hour every day.

          The impacts were even more substantial when the researchers assumed that 100 percent of the children who are now sedentary got regular exercise. In this scenario, the annual total costs during adulthood from obesity-associated medical expenses and lost productivity plummeted by about $62 billion when children were active three times a week and by more than $120 billion every year when all of the virtual children played and moved for at least an hour each day.

                                                         From: https://www.nytimes.com May 3, 2017

    In terms of how the study was conducted, the text mentions that researchers used a computer program that made it possible for every child to be
    Escolha uma alternativa para a questão dc24425b-cb
  • DC20A828-CB

    Inglês

    Interpretação de texto | Reading comprehension
    UECE · 2017MédioEntre para guardar nos favoritos

                                                  T E X T


          If all of the children who currently are sedentary started exercising every day, societies could save enormous amounts of money in the coming decades and have healthier citizens as a whole, according to a remarkable new study. In the United States alone, we could expect to save more than $120 billion every year in health care and associated expenses. The study is the first to use sophisticated computer simulations to arrive at a literal and sobering societal price tag for allowing our children to be sedentary.

          Inactivity is, of course, widespread among young people today. Recent research shows that in the United States and Europe, physical activity tends to peak at about age 7 for both boys and girls and tail off continually throughout adolescence. More than two-thirds of children in the United States rarely exercise at all.

          The immediate health consequences for inactive children and their families are worrisome. Childhood obesity, which is linked to lack of exercise, is common, as is the incidence of Type 2 diabetes and other health problems related to being overweight among children as young as 6.

          But the long-term financial costs of inactivity in the young, both for them and society as a whole, have never been quantified. So for the new study, which was published this week in Health Affairs, researchers with the Global Obesity Prevention Center at Johns Hopkins University in Baltimore and other institutions decided to create a bogglingly complex computer model of what the future could look like if we do or do not get more of our children moving.

          The researchers began by gathering as much public data as is currently available about the health, weight and physical activity patterns of all 31.7 million American children now aged 8 to 11, using large-scale databases from the Census Bureau, the Centers for Disease Control and Prevention, and other groups.

          The researchers fed this information into a computerized modeling program that created an electronic avatar for every American child today. In line with reality, two-thirds of these children were programmed to rarely exercise and many were overweight or obese.

          The scientists then had the simulated children grow up. Using estimations about how calorie intake and activity patterns affect body weight, the program changed each virtual child’s body day-by-day and year-by-year into adulthood. Most became increasingly overweight.

          As the simulated children became adults, the scientists then modeled each one’s health, based on obesity-associated risks for heart disease, diabetes, stroke and cancer, and also the probable financial price of dealing with those diseases (adjusted for future inflation), both in terms of direct expenses for hospitalizations, drugs and so on, and lost productivity because of someone’s being ill.

          The results were staggering. According to the computer model, the costs of today’s 8- to 11- year-olds being inactive and consequently overweight would be almost $3 trillion in medical expenses and lost productivity every year once the children reached adulthood and for decades until their deaths.

          But when the researchers tweaked children’s activity levels within their model, the numbers began to look quite different. If they presumed that, in an imaginary America, half of all children exercised vigorously for about 25 minutes three times a week, such as during active recess or sports or, more ambitiously, ran around and moved for at least an hour every day, which is the amount of youth exercise recommended by the C.D.C., their virtual lives were transformed.

          Most obviously, the incidence of childhood obesity fell by more than 4 percent, a change that resonated throughout the simulated children’s lives and society. There were about half a million fewer cases of adult-onset heart disease, diabetes, cancer and strokes in this simulation, and the society-wide costs associated with these illnesses dropped by about $32 billion every year if the children romped about for 25 minutes three times per week and by almost $37 billion if they moved for an hour every day.

          The impacts were even more substantial when the researchers assumed that 100 percent of the children who are now sedentary got regular exercise. In this scenario, the annual total costs during adulthood from obesity-associated medical expenses and lost productivity plummeted by about $62 billion when children were active three times a week and by more than $120 billion every year when all of the virtual children played and moved for at least an hour each day.

                                                         From: https://www.nytimes.com May 3, 2017

    The new study conducted in the US linking the lack of children’s physical activity and the huge expenses in the coming years was carried out with data about children
    Escolha uma alternativa para a questão dc20a828-cb
  • DC1CDF48-CB

    Inglês

    Interpretação de texto | Reading comprehension
    UECE · 2017MédioEntre para guardar nos favoritos

                                                  T E X T


          If all of the children who currently are sedentary started exercising every day, societies could save enormous amounts of money in the coming decades and have healthier citizens as a whole, according to a remarkable new study. In the United States alone, we could expect to save more than $120 billion every year in health care and associated expenses. The study is the first to use sophisticated computer simulations to arrive at a literal and sobering societal price tag for allowing our children to be sedentary.

          Inactivity is, of course, widespread among young people today. Recent research shows that in the United States and Europe, physical activity tends to peak at about age 7 for both boys and girls and tail off continually throughout adolescence. More than two-thirds of children in the United States rarely exercise at all.

          The immediate health consequences for inactive children and their families are worrisome. Childhood obesity, which is linked to lack of exercise, is common, as is the incidence of Type 2 diabetes and other health problems related to being overweight among children as young as 6.

          But the long-term financial costs of inactivity in the young, both for them and society as a whole, have never been quantified. So for the new study, which was published this week in Health Affairs, researchers with the Global Obesity Prevention Center at Johns Hopkins University in Baltimore and other institutions decided to create a bogglingly complex computer model of what the future could look like if we do or do not get more of our children moving.

          The researchers began by gathering as much public data as is currently available about the health, weight and physical activity patterns of all 31.7 million American children now aged 8 to 11, using large-scale databases from the Census Bureau, the Centers for Disease Control and Prevention, and other groups.

          The researchers fed this information into a computerized modeling program that created an electronic avatar for every American child today. In line with reality, two-thirds of these children were programmed to rarely exercise and many were overweight or obese.

          The scientists then had the simulated children grow up. Using estimations about how calorie intake and activity patterns affect body weight, the program changed each virtual child’s body day-by-day and year-by-year into adulthood. Most became increasingly overweight.

          As the simulated children became adults, the scientists then modeled each one’s health, based on obesity-associated risks for heart disease, diabetes, stroke and cancer, and also the probable financial price of dealing with those diseases (adjusted for future inflation), both in terms of direct expenses for hospitalizations, drugs and so on, and lost productivity because of someone’s being ill.

          The results were staggering. According to the computer model, the costs of today’s 8- to 11- year-olds being inactive and consequently overweight would be almost $3 trillion in medical expenses and lost productivity every year once the children reached adulthood and for decades until their deaths.

          But when the researchers tweaked children’s activity levels within their model, the numbers began to look quite different. If they presumed that, in an imaginary America, half of all children exercised vigorously for about 25 minutes three times a week, such as during active recess or sports or, more ambitiously, ran around and moved for at least an hour every day, which is the amount of youth exercise recommended by the C.D.C., their virtual lives were transformed.

          Most obviously, the incidence of childhood obesity fell by more than 4 percent, a change that resonated throughout the simulated children’s lives and society. There were about half a million fewer cases of adult-onset heart disease, diabetes, cancer and strokes in this simulation, and the society-wide costs associated with these illnesses dropped by about $32 billion every year if the children romped about for 25 minutes three times per week and by almost $37 billion if they moved for an hour every day.

          The impacts were even more substantial when the researchers assumed that 100 percent of the children who are now sedentary got regular exercise. In this scenario, the annual total costs during adulthood from obesity-associated medical expenses and lost productivity plummeted by about $62 billion when children were active three times a week and by more than $120 billion every year when all of the virtual children played and moved for at least an hour each day.

                                                         From: https://www.nytimes.com May 3, 2017

    In terms of the future financial costs for individuals and the society as a result of inactivity in young people, it is mentioned that they
    Escolha uma alternativa para a questão dc1cdf48-cb
  • DC1927CC-CB

    Inglês

    Interpretação de texto | Reading comprehension
    UECE · 2017MédioEntre para guardar nos favoritos

                                                  T E X T


          If all of the children who currently are sedentary started exercising every day, societies could save enormous amounts of money in the coming decades and have healthier citizens as a whole, according to a remarkable new study. In the United States alone, we could expect to save more than $120 billion every year in health care and associated expenses. The study is the first to use sophisticated computer simulations to arrive at a literal and sobering societal price tag for allowing our children to be sedentary.

          Inactivity is, of course, widespread among young people today. Recent research shows that in the United States and Europe, physical activity tends to peak at about age 7 for both boys and girls and tail off continually throughout adolescence. More than two-thirds of children in the United States rarely exercise at all.

          The immediate health consequences for inactive children and their families are worrisome. Childhood obesity, which is linked to lack of exercise, is common, as is the incidence of Type 2 diabetes and other health problems related to being overweight among children as young as 6.

          But the long-term financial costs of inactivity in the young, both for them and society as a whole, have never been quantified. So for the new study, which was published this week in Health Affairs, researchers with the Global Obesity Prevention Center at Johns Hopkins University in Baltimore and other institutions decided to create a bogglingly complex computer model of what the future could look like if we do or do not get more of our children moving.

          The researchers began by gathering as much public data as is currently available about the health, weight and physical activity patterns of all 31.7 million American children now aged 8 to 11, using large-scale databases from the Census Bureau, the Centers for Disease Control and Prevention, and other groups.

          The researchers fed this information into a computerized modeling program that created an electronic avatar for every American child today. In line with reality, two-thirds of these children were programmed to rarely exercise and many were overweight or obese.

          The scientists then had the simulated children grow up. Using estimations about how calorie intake and activity patterns affect body weight, the program changed each virtual child’s body day-by-day and year-by-year into adulthood. Most became increasingly overweight.

          As the simulated children became adults, the scientists then modeled each one’s health, based on obesity-associated risks for heart disease, diabetes, stroke and cancer, and also the probable financial price of dealing with those diseases (adjusted for future inflation), both in terms of direct expenses for hospitalizations, drugs and so on, and lost productivity because of someone’s being ill.

          The results were staggering. According to the computer model, the costs of today’s 8- to 11- year-olds being inactive and consequently overweight would be almost $3 trillion in medical expenses and lost productivity every year once the children reached adulthood and for decades until their deaths.

          But when the researchers tweaked children’s activity levels within their model, the numbers began to look quite different. If they presumed that, in an imaginary America, half of all children exercised vigorously for about 25 minutes three times a week, such as during active recess or sports or, more ambitiously, ran around and moved for at least an hour every day, which is the amount of youth exercise recommended by the C.D.C., their virtual lives were transformed.

          Most obviously, the incidence of childhood obesity fell by more than 4 percent, a change that resonated throughout the simulated children’s lives and society. There were about half a million fewer cases of adult-onset heart disease, diabetes, cancer and strokes in this simulation, and the society-wide costs associated with these illnesses dropped by about $32 billion every year if the children romped about for 25 minutes three times per week and by almost $37 billion if they moved for an hour every day.

          The impacts were even more substantial when the researchers assumed that 100 percent of the children who are now sedentary got regular exercise. In this scenario, the annual total costs during adulthood from obesity-associated medical expenses and lost productivity plummeted by about $62 billion when children were active three times a week and by more than $120 billion every year when all of the virtual children played and moved for at least an hour each day.

                                                         From: https://www.nytimes.com May 3, 2017

    According to the text, the lack of exercise in childhood years is associated with very early health problems such as
    Escolha uma alternativa para a questão dc1927cc-cb
  • DC1587A4-CB

    Inglês

    Interpretação de texto | Reading comprehension
    UECE · 2017DifícilEntre para guardar nos favoritos

                                                  T E X T


          If all of the children who currently are sedentary started exercising every day, societies could save enormous amounts of money in the coming decades and have healthier citizens as a whole, according to a remarkable new study. In the United States alone, we could expect to save more than $120 billion every year in health care and associated expenses. The study is the first to use sophisticated computer simulations to arrive at a literal and sobering societal price tag for allowing our children to be sedentary.

          Inactivity is, of course, widespread among young people today. Recent research shows that in the United States and Europe, physical activity tends to peak at about age 7 for both boys and girls and tail off continually throughout adolescence. More than two-thirds of children in the United States rarely exercise at all.

          The immediate health consequences for inactive children and their families are worrisome. Childhood obesity, which is linked to lack of exercise, is common, as is the incidence of Type 2 diabetes and other health problems related to being overweight among children as young as 6.

          But the long-term financial costs of inactivity in the young, both for them and society as a whole, have never been quantified. So for the new study, which was published this week in Health Affairs, researchers with the Global Obesity Prevention Center at Johns Hopkins University in Baltimore and other institutions decided to create a bogglingly complex computer model of what the future could look like if we do or do not get more of our children moving.

          The researchers began by gathering as much public data as is currently available about the health, weight and physical activity patterns of all 31.7 million American children now aged 8 to 11, using large-scale databases from the Census Bureau, the Centers for Disease Control and Prevention, and other groups.

          The researchers fed this information into a computerized modeling program that created an electronic avatar for every American child today. In line with reality, two-thirds of these children were programmed to rarely exercise and many were overweight or obese.

          The scientists then had the simulated children grow up. Using estimations about how calorie intake and activity patterns affect body weight, the program changed each virtual child’s body day-by-day and year-by-year into adulthood. Most became increasingly overweight.

          As the simulated children became adults, the scientists then modeled each one’s health, based on obesity-associated risks for heart disease, diabetes, stroke and cancer, and also the probable financial price of dealing with those diseases (adjusted for future inflation), both in terms of direct expenses for hospitalizations, drugs and so on, and lost productivity because of someone’s being ill.

          The results were staggering. According to the computer model, the costs of today’s 8- to 11- year-olds being inactive and consequently overweight would be almost $3 trillion in medical expenses and lost productivity every year once the children reached adulthood and for decades until their deaths.

          But when the researchers tweaked children’s activity levels within their model, the numbers began to look quite different. If they presumed that, in an imaginary America, half of all children exercised vigorously for about 25 minutes three times a week, such as during active recess or sports or, more ambitiously, ran around and moved for at least an hour every day, which is the amount of youth exercise recommended by the C.D.C., their virtual lives were transformed.

          Most obviously, the incidence of childhood obesity fell by more than 4 percent, a change that resonated throughout the simulated children’s lives and society. There were about half a million fewer cases of adult-onset heart disease, diabetes, cancer and strokes in this simulation, and the society-wide costs associated with these illnesses dropped by about $32 billion every year if the children romped about for 25 minutes three times per week and by almost $37 billion if they moved for an hour every day.

          The impacts were even more substantial when the researchers assumed that 100 percent of the children who are now sedentary got regular exercise. In this scenario, the annual total costs during adulthood from obesity-associated medical expenses and lost productivity plummeted by about $62 billion when children were active three times a week and by more than $120 billion every year when all of the virtual children played and moved for at least an hour each day.

                                                         From: https://www.nytimes.com May 3, 2017

    As to how physically active American and European children are, recent studies show that
    Escolha uma alternativa para a questão dc1587a4-cb
  • DC11A582-CB

    Biologia

    Ciclos biogeoquímicos
    UECE · 2017MédioEntre para guardar nos favoritos

    Considerando o ciclo do carbono, analise as seguintes afirmações:


    I. O dióxido de carbono na atmosfera é absorvido pelas plantas, sendo o carbono contido em sua molécula devolvido à atmosfera pelo processo de fotossíntese.

    II. Os animais comem vegetais, decompõem seus açúcares e liberam carbono na atmosfera, nos oceanos e no solo.

    III. Plantas e animais são decompostos pela ação de microrganismos que devolvem carbono ao meio ambiente.

    IV. Os animais, através da respiração, retiram da atmosfera parte do carbono assimilado, na forma de CO2.


    Está correto o que se afirma somente em

    Escolha uma alternativa para a questão dc11a582-cb
  • DC0DECC5-CB

    Biologia

    A química da vida
    UECE · 2017MédioEntre para guardar nos favoritos
    Sobre proteínas que foram desnaturadas sob condições de elevadas temperaturas, é correto afirmar que
    Escolha uma alternativa para a questão dc0decc5-cb
  • DC0A3449-CB

    Biologia

    Cadeias e teias alimentares
    UECE · 2017FácilEntre para guardar nos favoritos
    Todo ser vivo precisa de nutrientes, que são obtidos por meio de relações complexas estabelecidas entre os diferentes grupos de organismos existentes na natureza. Essas relações são representadas por diagramas denominados teias alimentares. Uma teia alimentar que apresenta uma forrageira, um bovino e um ascomiceto compreende, respectivamente, um produtor,
    Escolha uma alternativa para a questão dc0a3449-cb
  • DC06A21D-CB

    Biologia

    Ecologia e ciências ambientais
    UECE · 2017MédioEntre para guardar nos favoritos
    Com o objetivo de resolver o problema de erosão em sua propriedade, um fazendeiro comprou mudas de plantas indicadas por um biólogo. Essas mudas apresentam raízes fasciculadas, nervuras paralelas e flores trímeras, portanto, são representantes das
    Escolha uma alternativa para a questão dc06a21d-cb
  • DC032354-CB

    Biologia

    Identidade dos seres vivos
    UECE · 2017DifícilEntre para guardar nos favoritos

    Em experimentos realizados com ratos, por pesquisadores da Universidade da Califórnia, observou-se que os pulmões desses roedores produziram mais da metade das plaquetas. Segundo Mark Looney, autor principal do estudo, isso significa que os pulmões humanos podem produzir sangue, uma função totalmente inesperada, e que precisa ser investigada.

    Fonte: http://super.abril.com.br/ciencia/descobertafuncao-inesperada-dos-pulmoes/


    Considerando o conhecimento atual sobre o sistema respiratório humano, é correto afirmar que

    Escolha uma alternativa para a questão dc032354-cb
  • DBFF78FF-CB

    Biologia

    Hereditariedade e diversidade da vida
    UECE · 2017MédioEntre para guardar nos favoritos
    Os genes letais foram identificados, em 1905, pelo geneticista francês Lucien Cuénot. A acondroplasia é uma forma de nanismo humano condicionada por um alelo dominante D que prejudica o desenvolvimento ósseo. Pessoas que apresentam a acondroplasia são heterozigotas e pessoas normais são homozigotas recessivas. Assinale a opção que corresponde ao genótipo em que o gene é considerado letal.
    Escolha uma alternativa para a questão dbff78ff-cb
  • DBFB273B-CB

    Biologia

    Identidade dos seres vivos
    UECE · 2017MédioEntre para guardar nos favoritos

    O mal de Alzheimer era considerado uma doença que surgia devido à degeneração das células do hipocampo, área cerebral da qual dependem os mecanismos da memória. No entanto, pesquisadores italianos publicaram estudo na revista Nature Communications, em abril de 2017, no qual afirmaram que o mecanismo de origem da doença está na área tegmental ventral, onde é produzida a dopamina.

    Fonte: http://www.jornalciencia.com/pesquisadores-italianos-podem-ter-descoberto-a-causa-do-alzheimer/


    Em relação ao sistema nervoso, é correto afirmar que

    Escolha uma alternativa para a questão dbfb273b-cb
  • DBF79B27-CB

    Biologia

    Evolução biológica
    UECE · 2017FácilEntre para guardar nos favoritos
    O fixismo e o evolucionismo foram correntes de pensamento utilizadas para explicar a diversidade das espécies. Sobre essas correntes, é correto afirmar que
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  • DBE91447-CB

    Química

    Glicídios, Lipídios, Aminoácidos e Proteínas.
    UECE · 2017MédioEntre para guardar nos favoritos

                Imagem da questão de Química, UECE 2017, Glicídios, Lipídios, Aminoácidos e Proteínas.

    A obesidade é o acúmulo de gordura no corpo, causado quase sempre por um consumo excessivo de calorias na alimentação, superior ao valor usado pelo organismo para sua manutenção e realização das atividades do dia a dia, ou seja, a obesidade acontece quando a ingestão alimentar é maior do que o gasto energético correspondente. Assinale a opção que associa corretamente o alimento que causa obesidade com a classe de compostos orgânicos nele predominante.
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  • DBE55205-CB

    Química

    Grandezas: massa, volume, mol, massa molar, constante de Avogadro e Estequiometria.
    UECE · 2017MédioEntre para guardar nos favoritos

                Imagem da questão de Química, UECE 2017, Grandezas: massa, volume, mol, massa molar, constante de Avogadro e Estequiometria.

    A massa atômica de um elemento é calculada a partir da
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  • DBE173FE-CB

    Química

    Fórmulas, Balanceamento e Leis ponderais das reações químicas
    UECE · 2017FácilEntre para guardar nos favoritos

                Imagem da questão de Química, UECE 2017, Fórmulas, Balanceamento e Leis ponderais das reações químicas

    A reação que ocorre no airbag pode ser representada pela seguinte equação não balanceada: NaN3(s) + Fe2O3(s) → Na2O2(s) + Fe(s) + N2(g). Sobre essa equação, é correto afirmar que
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  • DBDE09D8-CB

    Química

    Termoquímica: Energia Calorífica, Calor de reação, Entalpia, Equações e Lei de Hess.
    UECE · 2017MédioEntre para guardar nos favoritos

                Imagem da questão de Química, UECE 2017, Termoquímica: Energia Calorífica, Calor de reação, Entalpia, Equações e Lei de Hess.

    Um estudante de química, usando um calorímetro caseiro com temperatura 25 °C e 1 atm de pressão, queimou 5 mL de etanol produzindo dióxido de carbono gasoso e água líquida. Sabendo-se que a densidade absoluta do etanol é 0,79 g/mL e o calor produzido a pressão constante é 28 kcal, a variação de entalpia de combustão do etanol é aproximadamente
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  • DBDA778B-CB

    Química

    Principais Funções Orgânicas: Funções Oxigenadas: Cetona, Aldeído, Éter, Éster, Ácido Carboxílico, Anidrido Orgânico e Cloreto de Ácido.
    UECE · 2017FácilEntre para guardar nos favoritos

                Imagem da questão de Química, UECE 2017, Principais Funções Orgânicas: Funções Oxigenadas: Cetona, Aldeído, Éter, Éster, Ácido Carboxílico, Anidrido Orgânico e Cloreto de Ácido.

    As cetonas são encontradas na natureza, em flores e frutos. Em geral, são líquidos de odor agradável. Muitas cetonas artificiais e naturais são usadas como perfumes e alimentos. Algumas são substâncias medicinais, como os compostos cetônicos da urina. No que diz respeito às cetonas, é correto afirmar que
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  • DBD6BAE7-CB

    Física

    Calorimetria
    UECE · 2017MédioEntre para guardar nos favoritos
    A energia necessária para aquecer uma certa massa de água é a mesma nos seguintes casos:
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