The sign of weak economy in a country is that there would be rising inflation rates.
What is a weak economy?A weak economy is defined as the type of financial situation that occurs when there is weak to negligible growth of the financial state of a country.
The characteristics of a weak economy include the following:
Increase in the rate of unemployment: With high jobless numbers, consumers will lose their purchasing power and eventually lower demand.Rising inflation in the society: This is an unevenly rising prices which inevitably reduces the purchasing power of some consumers.Declining property sales: When there is decrease in sales of property, this means that there is impending economic depression.Increasing credit card debt defaults: A rise in debt default means that people are losing their ability to pay, which signals an economic depression.Learn more about financial economy here:
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The simple interest on $200 at 12% for 2 years is
a. $6
b. $12
O
c. $24
d. $48
e. $120
Help! :/
Answer:
d. $48
Explanation:
1 year = 12% = 0.12
2 years = 12% × 2
2 years = 24% = 0.24
24% of $200 = 0.24 × 200
24% of $200 = $48
Therefore the interest on $200 for 2 years is $48
:)
Which of the following pathways for the transformation of cellular energy most likely evolved first?
Coenzyme that transfers electrons from the Krebs Cycle to the mitochondrial electron transport chain at a lower energy level than that of electrons entering at the beginning of the chain.
The first phase of both aerobic and anaerobic respiration is known as glycolysis. Therefore, it is most likely that this method for converting cellular energy came into being first.
What are the three basic mechanisms through which cells produce energy?Glycolysis, the citric acid cycle, and the electron transport chain are three distinct metabolic pathways that work together to form cellular respiration. While the other two mechanisms are aerobic, glycolysis is anaerobic.
Which came first, oxygen or photosynthesis?The process of photosynthesis is what allows for sophisticated life to exist on Earth. Photosynthesis is also the source of all oxygen on our planet. Both oxygenic and anoxygenic photosynthesis is possible. Oxygenic photosynthesis splits water molecules with the help of light energy, releasing oxygen, electrons, and protons.
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which statement correctly compares how euglenas and amoebas move? euglenas move using flagella, while amoebas move using cilia. euglenas move using pseudopods, while amoebas move using flagella. euglenas move using flagella, while amoebas move using pseudopods. euglenas move using cilia, while amoebas move using pseudopods.
Euglena uses flagella to move, while amoeba uses pseudopods to move.
Euglena is a type of protist, a diverse group of heterotrophic or autotrophic unicellular organisms. Many species of Euglena have long, whip-like structures called flagella that they use for swimming and locomotion in water.
Amoebas are also a type of protist and move using a different mechanism called pseudopodia. Pseudopodia are temporary extensions of cell membranes that allow amoebas to move and change shape while crawling and flowing through the environment. Amoebas do not use flagella or cilia for locomotion.
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Photosynthesis consists of which of the following? A. Some of the carbon from dead organisms is returned to the atmosphere B. Decomposers break down the dead material returning CO2 to the atmosphere via respiration and continuing the cycle C. Producers takes in CO2 D. All listed choices
Photosynthesis consists of producers taking in CO₂ which is therefore denoted as option C.
What is Photosynthesis?This is referred to as the process in which green plants manufacture food in the presence of sunlight and employs the use of various compounds in other to produce glucose.
The plants involved in this process are referred to as primary producers and it employs the use of the green pigment known as chlorophyll which traps the sunlight and provides energy for the reaction to occur in the cells of the plants. This ensures that food is available to other members of the ecosystem such as consumers e.g animals , humans etc.
They take in carbon dioxide and water and produce glucose and oxygen as the product in this type of reaction and it can be seen below:
6CO₂+ 6H₂O → C₆H₁₂O₆ + 6O2.
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Conservation biologists are trying to save a population of orchids in Hawaii from extinction. If the population currently contains about 50 individuals and is expected to sustain an r of 0.048, predict the size of the population in 10 years.
Using Equation 51.6, Nt = 50e(0.048)(10) = 81; the orchid population will grow to only about 81 individuals in 10 years.
The orchid population will grow to only about 81 individuals in 10 years.
51.6, Nt = 50e(0.048)(10) = 81.
Cold weather is usually a density-independent factor as it affects pythons in the same way regardless of whether they are low or high in numbers. As pythons become denser density-dependent factors such as competition for food increase.
The Burmese python is one of the Greater Everglades' most destructive and harmful invasive species preying on native birds mammals and even alligators. Pythons compete for food with native wildlife including mammals birds and other reptiles. A severe mammal decline in the Everglades National Park is linked to the Burmese python.
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describe the thickness, texture, and inner surface of the wall of the urinary bladder of the fetal pig.
The urinary bladder of a fetal pig is sac like, muscular and expandable walls with a thickness of 10mm and a firm texture.
What is a fetal pig?Fetal pigs are unborn pigs used in elementary and advanced biology classes for learning through dissection. They are extracted from diseased sows killed in meat industries. They are used in the study of mammalian anatomy.
These pigs are usually 10-15mm and 20-30 days of age and their highest is 50-70mm in length and 60-70 days old. The urinary bladder has a firm texture and a thickness of about 10mm and also they walls are muscular lining and a sac like shape.
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How is the structure of a fat cell related to its function of storing fat for later use?
Answer:
Explanation:aaaaaa
what you would do as an anthropologist regarding these customs based on what you have learned about the work of anthropology throughout the semester. Would you work to eliminate these customs because they cause harm to some members of the community? Or, would avoid changing any aspect of these cultures simply because their customs offend our sensibilities?
Anthropologists investigate the idea of culture and how it relates to people's lives in various historical and geographic contexts. In order to understand our own society better, they research other cultures. For aid in interpreting the present, they research the history.
In what ways does anthropology advance our knowledge of colonialism's effects?In order to fulfil colonial demands, anthropological study also looks at the culture of the colonial endeavour itself, emphasising the establishment of hierarchies and the process of resource exploitation.
The study of every facet of human existence is possible thanks to anthropology. It serves as a portal to the abyss. We may learn about ourselves, our past, present, and future via the study of anthropology. The study of anthropology fosters global interconnectedness.
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which of the following tests uses gel electrophoresis to separate the proteins in a sample based on their size before reacting them with antibodies?
Gel electrophoresis for proteins in Western blotting (Immunoblot). A method for analyzing individual proteins in a protein mixture is called Western blotting, commonly known as immunoblotting (e.g. a cell lysate).
Which two types of gel electrophoresis gels are there?kinds of gel. Agarose and polyacrylamide gels are the two forms of gel that are most frequently employed. Different sizes and types of analytes work well with each type of gel. Polyacrylamide gels offer a very high resolving capacity for tiny DNA fragments and are typically employed for proteins.
Which electrophoresis method is employed to analyze the protein sample?In proteomic research, where resolution of hundreds of proteins on a single gel is occasionally required, 2D PAGE offers the best resolution for protein analysis.
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Would an action potential be possible without the presence of proteins? Explain your response.
A. Yes, the action potential would be possible since the Na+ being hydrophobic can enter the neuron through the phospholipid bilayer.
B. No, the action potential would not be possible since Na+ being hydrophilic would not be able to move across the plasma membrane.
C. No, the action potential would not be possible since Na+ being hydrophilic would not be able to move across the plasma membrane unless ATP was available
Without the channels that proteins provide, ions could not traverse the plasma membrane and an action potential could not occur.
What is action potential?An action potential occurs when the membrane potential of a specific cell location rapidly rises and falls. This depolarization is followed by depolarization in the surrounding areas. Animal cells that display action potentials fall into the category of excitable cells, which also includes neurons, muscle cells, and some plant cells.
The cell membrane is made up of a lipid bilayer that incorporates larger protein molecules. Because it efficiently blocks the flow of electrically charged ions, the lipid bilayer acts as an insulator.
Action potentials are generated by channel proteins, which switch from a closed to an open state in response to the voltage difference between the interior and exterior of the cell.
Therefore, without proteins, action potential is not conceivable.
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In aquatic ecosystems, net primary productivity is most limited by which of the following?A. whether the water is fresh water or saltwater.B. the speed at which the water moves.C. available sunlight and nutrients.D. waves and tides.
Net primary productivity is most limited by available sunlight and nutrients.
Nutrients limit primary production in aquatic ecosystems. When a nutrient is limiting an element that must be added for production to increase in a particular area. The nutrient that are most limiting in marine production is either nitrogen or phosphorus.
In general, Phosphorus is the most limiting factor in net primary production in aquatic ecosystems. This is true for both lakes and marine ecosystems, these approaches include bioassays. This occurs when the concentrations of dissolved inorganic nutrients are limiting from nutritional inputs.
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the phosphorolytic cleavage of glycogen is energetically advantageous because the released sugar is already ____
The phosphorolytic cleavage of glycogen is energetically advantageous because the released sugar is already phosphorylated so we do not need and ATP molecule to allow for phosphorylation.
In its cleavage reaction, glycogen phosphorylase uses a phosphate molecule, connecting it to the sugar as it is released. A second enzyme, phosphoglucomutase, then shifts the position of the phosphate to a neighboring carbon atom in the sugar, making the sugar ready for breakdown by glycolysis.
Thereby, glucose can be obtained from glycogen. Glycogen phosphorylase causes phosphoroclastic cleavage into glycogen, and produces glycogen-1-phosphate.
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The tryptophan operon in some bacteria is a repressible operon. Which of the following statements correctly describes this operon?
A) It is permanently active.
B) It is activated only when tryptophan is present in the growth medium.
C) It is activated only when glucose is present in the growth medium.
D) It is deactivated whenever tryptophan is added to the growth medium.
The statement describing the operon is D. It is deactivated whenever tryptophan is added to the growth medium.
Operons are groups of structural genes that are expressed in a coordinated manner and are simultaneously under the control of a single regulatory signal. This makes the process of genetic expression in cells more efficient because nerve disorders are involved in the same series of metabolic reactions.
Some prokaryotes use the tryptophan operon system to control gene expression. In the tryptophan operon, the operons are transcribed together to code for components required in the production of the amino acid tryptophan. The mechanism of this operation is controlled by suppression of the end products of expression and attenuation. In some bacteria, controlling gene expression uses negative control involving the activity of a regulatory gene. This operon will be deactivated whenever tryptophan is added to the growth medium so that the process of genetic expression in cells is more efficient.
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complete the graphic organizer to define the characteristics of homozygous and heterozygous genotypes and phenotypes by selecting the correct phrases from the drop-down menus.
Genotype Homozygous- Both alleles are similar
Genotype Heterozygous- The alleles are different
Phenotype Heterozygous- They are created by the dominant allele
Phenotype Homozygous- If the allele is dominant or recessive the opposite phenotype will be expressed.
The genotype is a collection of genes in DNA that are mainly accountable for distinctive traits or characteristics, whereas the phenotype is an organism's physical appearance or characteristic.
An person's genotype is the integration of alleles that they obtain for a specific gene. A person's phenotype is the sum of their noticeable traits and characteristics. The genotype of an organism is directly inherited from its parents, whereas the phenotype is solely effected by genotype.
There are three possible genotypes, PP (homozygous dominant), Pp (heterozygous), and pp (homozygous recessive). All three have distinct genotypes but the first two have the same phenotype (purple) as distinguishable from the third (white).
The observable characteristics of an individual, like height, eye color, and blood type, are referred to as phenotypes.
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2. In which of the following processes does change take place over the longest
period of time?
a. evolution
b. respiration
c. exocytosis
hd. photosynthesis
Answer:
Im pretty sure its a
Explanation:
because evolution is never ending
briefly describe the path of blood as it circulates through the heart
. Given the brain size and pelvic dimensions of Homo erectus, their infants were likely:
b) physically active at birth
c) altricial (helpless at birth)
d) large brained
e) were strong enough to grasp onto their mothers
(C) Given the brain size and pelvic dimensions of Homo erectus, their infants were likely altricial (helpless at birth)
what is Homo erectus?This is a type of extinct human that existed between 1.6 million and 250,000 years ago, during the Pleistocene Epoch. Homo erectus was the first human species to have a flat face, a prominent nose, and probably scant body hair coverage. It also possessed a more contemporary gait and body proportions.
what is altricial ?This can simply mean a being hatched, born, or having young that are hatched, born, or having young that are hatched, born, in a very immature and defenseless condition, requiring care for a while.
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A number of plant species have a recessive allele for albinism; homozygous albino individuals are unable to synthesize chlorophyll. If a heterozygous tobacco plant is allowed to self-pollinate and 500 of its seeds germinate –
How many of these offspring will be expected to have the same genotype as the parent plant?
How many seedlings will be expected to be albino?
If we denote the recessive allele of the gene as p and the dominant allele as P, the offspring will be of phenotypic ratio 3:1 those with chlorophyll to those without chlorophyll respectively.
What is the percentage of genotype?Genotypically, 25% would be homozygous for dominant allele, 50% heterozygous and 25% homozygous recessive. See attached punnet square.
A number of plant species have a recessive allele for albinism homozygous albino individuals are unable to synthesize chlorophyll. If a heterozygous tobacco plant is allowed to self-pollinate and 500 of its seeds germinate.
Therefore, If we denote the recessive allele of the gene as p and the dominant allele as P, the offspring will be of phenotypic ratio 3:1 those with chlorophyll to those without chlorophyll respectively.
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The Hawaiian bobtail squid is able to glow from luminescent Vibrio fischeri bacteria held in its light organs. As it swims at night near the ocean surface, it adjusts the amount of light visible to predators below to match the light from the stars and moon. Predators have a hard time seeing the illuminated squid against the night sky. The bacteria glow in response to a molecule that regulates expression of genes involved in light-producing chemical reactions. The regulator controls production of the genes' mRNA. Therefore, the light-producing genes are under____.
transcriptional control
The light-producing genes are under transcriptional control
Why do Hawaiian bobtail squids glow?
A bobtail squid's light organ contains a single species of bacterium that emits a bright glow that gives the animal nighttime protection from predators by enabling it to blend with the moonlight below the waves. The species whose genome was recently examined is closely linked to the depicted Euprymna bobtail squid.
These patterns are illuminated by gigas and related squids to produce visual messages that may be clearly seen in the deep, dark ocean. The body glows from thousands of tiny subcutaneous (s.c.) photophores (bioluminescent organs) buried in the muscle tissue, backlighting the pigmentation patterns.
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Millions of years ago, the ancestors of giraffes had short necks and used to eat leaves from the bushes on the ground. A
genetic mutation caused one giraffe's neck to be taller. This long-necked giraffe was able to eat leaves that were higher up on
trees. This gave it an advantage as it was able to access more food than other giraffes. Over millions of years, all of the
giraffes became long-necked. Which type of environmental factor caused this mutation to be inherited?
Answer:Natural selection.
It is the process by which certain traits become more common in a population over time. It occurs when individuals with certain traits are more likely to survive and reproduce than those without those traits. This leads to the traits becoming more common in the population over time. Natural selection is one of the main mechanisms of evolution.
identify the fluid filled space between the cornea and iris. view available hint(s)for part a identify the fluid filled space between the cornea and iris. posterior segment anterior chamber posterior chamber anterior segment
The anterior chamber is the fluid filled space between the cornea and iris.
What are the main fluids in eye ?The area between the cornea and iris known as the anterior chamber is filled with fluid. The clear, watery fluid called aqueous humour lies between the cornea and the anterior vitreous.
A clear liquid called aqueous humour fills the space between the lens and cornea. The liquid bathes and nourishes the lens while preserving eye pressure.
The vitreous humor, also referred to as vitreous fluid, is a clear, colourless gel-like substance that fills the space in the eye between the lens and the retina.
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T/F. influenza viruses that have undergone antigenic drift are more problematic than those that have undergone antigenic shift because antigenic drift leads to annual influenza epidemics.
It is true to say that influenza viruses that have undergone antigenic drift are more problematic than those that have undergone antigenic shift because antigenic drift leads to annual influenza epidemics.
Influenza viruses (IAV) causes flu in birds and a few vertebrates, and is the main types of the class Alphainfluenzavirus of the infection family Orthomyxoviridae. Kinds of all subtypes of flu An infection have been detached from wild birds, in spite of the fact that sickness is unprecedented.
Influenza are an infections are negative-sense, single-abandoned, divided RNA infections. The few subtypes are marked by a H number (for the sort of hemagglutinin) and a N number (for the kind of neuraminidase).Some disengages of flu An infection cause extreme illness both in homegrown poultry and, once in a while, in humans. Periodically, infections are communicated from wild sea-going birds to homegrown poultry, and this might cause an episode or lead to human flu pandemics.
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The pigment that is extremely important to photosynthesis is called___.
Pigment
Stomata
Chlorophyll
Chloroplasm
Previous
the place where light is brought into focus (to form an image) in the human eye is called the the place where light is brought into focus (to form an image) in the human eye is called the lens. optic nerve. pupil. retina. cornea.
Together with the cornea, the lens helps to properly focus light on the retina.
What is the quiz question about how light travels via the eye?The cornea lets light through, which bends it. 2 The iris's pupil allows light to freely flow through. Vitreous humor allows for the passage of light. 4) The retina absorbs light rays and transforms them into impulses.
How does light enter the eye?It initially penetrates the cornea, where a small amount of light is refracted. The aqueous humor, a clear liquid, is the next medium through which the light travels. It passes through the pupil, which is encircled by the iris, the colored portion of the eye that regulates how much light enters the eye.
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which organelles are not found in. plant cells
Answer:
CENTRIOLE
Explanation:
The organelle not found in plant cells is the centriole. Plant cells have a large central vacuole that holds water and minerals for the cell.
Centrosomes and lysosomes are organelles found only in animal cells and not in plant cells.
Organelles are biological structures that perform specific functions within the cell. Organelle means "small organ". The body is made up of various organs, and even within cells, there are "small organs" that perform specific functions. They have membrane compartments or structures of cells. Organelles are membrane compartments or structures within cells that perform specific functions. An organelle refers to any cellular structure, whether membrane-bound or not, that performs a specific function. Some examples are mitochondria, chloroplasts, and cell nuclei. They all have specific functions within the cell that help the cell sustain itself.
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which of the following receptor detects pain sensations? which of the following receptor detects pain sensations? free nerve endings lamellated corpuscle meissner's corpuscle merkel discs
The skin's free nerve endings, known as nociceptors, have a high threshold for mechanical, chemical, or thermal stimuli and respond only when the strength of these stimuli is high enough to cause tissue injury. The input from these receptors is perceived as pain.
Which of the following receptors senses pain?Nociceptors are sensory receptors that detect signals from damaged tissue or the danger of injury, as well as substances generated by the damaged tissue. Nociceptors are free (bare) nerve terminals present in the skin, muscle, joints, bone, and viscera .
Meissner corpuscles respond to skin indentations of less than 10 micrometres and are especially sensitive to low-frequency vibrations ranging from 10 to 50 Hertz.
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the symbols for the nitrogen
atoms, N, is shown. What atom
besides N do you think forms the
rings that make up the bases?
O Carbon
O Oxygen
O Phosphorus
O Sulfur
Quick breads include items such as pancakes, waffles, biscuits, scones, _____, coffee cakes, cornbreads, flatbreads, and banana nut bread.
Quick breads include items such as pancakes, waffles, biscuits, scones, _cream puffs____, coffee cakes, cornbreads, flatbreads, and banana nut bread.
What are quick breads ?Quick breads are bread-like goods that use baking powder and baking soda in place of yeast to leaven them.
Three varieties of fast breads exist:
Pour batters: These can be "poured" directly from the mixing bowl due to their thin nature. Batter drops: need to be scraped into the baking pan from the bowl because they are very thick.
A soft dough is one that can be rolled and shaped by hand.
Quick breads are rather self-explanatory; they are so named because they can be prepared quickly. Coffeecakes and quick bread loaves employ baking soda or powder as leavening agents and need little to no kneading. Flavorings include fruits, nuts, cereals, vegetables, and spices.
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The function of the iodine in the starch hydrolysis test is to - make starch visible - act as a mordant - make glucose visible - make the cells visible
The function of the iodine in the starch hydrolysis test is c)make glucose visible. So, correct option is c.
Starch hydrolysis test is utilized to recognize microscopic organisms that can hydrolyze starch (amylose and amylopectin) utilizing the chemicals a-amylase and oligo-1,6-glucosidase. Frequently used to separate species from the genera Clostridium and Bacillus. In view of the enormous size of amylose and amylopectin particles, these living beings might not go through the bacterial cell at any point wall.
To involve these starches as a carbon source, microorganisms should discharge a-amylase and oligo-1,6-glucosidase into the extracellular space. These chemicals break the starch atoms into more modest glucose subunits which can then enter straightforwardly into the glycolytic pathway. To decipher the consequences of the starch hydrolysis test, iodine should be added to the agar.
Hence, correct option is c.
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(Complete question) is:
The function of the iodine in the starch hydrolysis test is to -
a) make starch visible
b)act as a mordant
c)make glucose visible
d)make the cells visible
Using the model below label and define the purpose of the following in relation to transcription: Promoter: Introns: Transcription Factors: Poly-A Signal Sequence: RNA polymerase: Poly-A Tail: Enhancer: Template: Transcription Start Site: Non-Template: Exons: 5' Cap:
RNA polymerase connects to a promoter sequence close to the start of a gene to start transcription (directly or through helper proteins).
What is the primary function of RNA polymerase during transcription?Transcribing RNA molecules using DNA as a template is the primary task of RNA polymerase. The transcription process, in which the data held in a DNA molecule is copied into a new molecule of mRNA, is greatly aided by the multi-unit intermediate enzyme known as RNA polymerase (messenger RNA).
What do exons and introns do?Prior to the RNA molecule being translated into a protein, introns are non-coding regions of an RNA transcript or the DNA encoding it. Exons are the regions of DNA (or RNA) that contain the protein-coding information.
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