please help me with this question
Answer: I believe it would be B. Genus
Explanation:
I looked up the definitions for you and genus is defined as the group above species. Picture of definition attached.
1. An atom is the
a. basic unit of matter
b. volume of a substance
c. amount of matter in an object
d. smallest object seen by the unaided eye
Answer:
A. Basic Unit Of Life.
Explanation:
Matter is made up of elements. Also, We have Atoms In our Body.
What does it mean when the
frequency of a wave increases?
A. the amplitude increases
B. the amplitude decreases
C the wavelength becomes shorter
D. the wavelength becomes longer
Answer:
The answer is C
Can you put a brainliest for me
Explanation:
Answer:
the wavelength becomes shorter
Explanation:
frequency increases, the wavelength gets shorter. As the frequency decreases, the wavelength gets longer.
3 natural compounds of chlorine
Propose an efficient synthesis for the following compound (0.4 points) 2-methylpentan-3-one
To synthesize 2-methylpentan-3-one efficiently, following process has to be followed:
Start with the synthesis of 2-methylpentan-3-ol, which can be prepared via a Grignard reaction. Firstly, prepare 2-methylpentan-3-ol by reacting ethyl magnesium bromide with 3-methylbutanal.
Afterward, hydrolysis of this Grignard reagent using HCl or dilute sulfuric acid provides the alcohol.2-methylpentan-3-ol.
( Grignard reaction -The Grignard reaction is an organometallic chemical reaction in which carbon alkyl, allyl, vinyl, or aryl magnesium halides (Grignard reagent) are added to the carbonyl groups of either an aldehyde or ketone. This reaction is important for the formation of carbon–carbon bonds.)
Now,the oxidation of 2-methylpentan-3-ol is carried out using oxidizing agents like PCC (pyridinium chlorochromate), PDC (pyridinium dichromate), or Jones reagent to synthesize 2-methylpentan-3-one.Oxidation of 2-methylpentan-3-ol to synthesize 2-methylpentan-3-one can be represented as follows: PCC or PDC or Jones Reagent2-methylpentan-3-one.
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Which statements are real-world applications of life science? Check all that apply.
Farmers study plant growth and are able to grow more fruits and vegetables.
Doctors can determine what is wrong with a patient and prescribe the right medicine.
Scientists study weather patterns to provide information about future weather
Scientists can track animal movements and predict where they might be feeding
Dentists recommend you brush and floss daily because bacteria cause tooth decay
Answer:
A,B,D,E
Explanation:
A, B, D and E-statements are real-world applications of life science.
What is science?The concept of science can be defined as a body of systematized knowledge acquired through observation, identification, research and explanation of certain categories of phenomena and facts, and formulated methodically and rationally.
Farmers study plant growth and are able to grow more fruits and vegetables -Farmers protect crops from diseases and adverse climatic conditions. It protects crops from wind and rodents. Farmers have bountiful crops. Farmer's crops are also protected from birds and animals.
Doctors can determine what is wrong with a patient and prescribe the right medicine - A doctor writes a prescription based on a patient's medical history, symptoms, and other factors.
Scientists study weather patterns to provide information about future weather and dentists recommend you brush and floss daily because bacteria cause tooth decay.
Hence, options A, B, D and E are correct.
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Which of the following is a result of the specific heat differences between land and ocean?
A. Ocean tides are created.
B. Volcanoes are created.
C. Saltwater is created.
D. Breezes are created.
8. A motorcycle travels 300 miles south in 3 hours.
What is the average velocity?
Answer:
100 mph south...
Explanation:
thats the answer
differentiate between Physical and chemical changes
Answer:
In a physical change the appearance or form of the matter changes but the kind of matter in the substance does not. However in a chemical change, the kind of matter changes and at least one new substance with new properties is formed.
I HOPE THIS WILL HELP YOU IF NOT THEN SORRY HAVE A GREAT DAY:)Methane (CH4) is a gas that is found in small quantities in Earth’s atmosphere. Which type of bonds does methane have, and why does one carbon atom bond with four hydrogen atoms? In three to five sentences, explain your answer in terms of valence electrons and electronegativity.
In methane, the covalent bond is present between one carbon and four hydrogen atoms.
What is methane?Methane is the simplest form of saturated hydrocarbons. Methane is an odorless gas as well as a colorless gas. It has one carbon and four hydrogen atoms which is why methane is also called a tetrahedral molecule.
CH₄ is the chemical formula of methane and is a non-toxic but flammable gas. From the tetrahedral structure of methane, we can see that a carbon atom is bonded to four hydrogen atoms.
One molecule of methane contains four covalent bonds. Each covalent bond is formed between the carbon and one hydrogen atom. The formation of a covalent bond between carbon and hydrogen is due to the small electronegativity difference between carbon and hydrogen.
In this way, carbon completes its octet and hydrogen completes its duplet. Therefore, the covalent bond is formed between one carbon atom bond with four hydrogen atoms in methane.
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19. (02.04 MC)
An atom's configuration based on its number of electrons ends at 3p. Another atom has seven more electrons. Starting at 3p, what is the remaining configuration? (
4
3p 3d³45²
O3p54523d³
O3p445²3d5
O3p 3d³45²
An atom's configuration based on its number of electrons ends at 3p. Another atom has seven more electrons. Starting at 3p, the remaining configuration is O3p445²3d5. Option C is correct answer.
The electron configuration of an element refers to the number of electrons in each of its atoms that are located in the shells around the atomic nucleus. Electrons in the same shell have similar energies; they are arranged in shells according to increasing energy levels.According to the question, the atom's configuration based on its number of electrons ends at 3p, and another atom has seven more electrons. Hence, the electron configuration of that atom should start with 3p since the question states starting at 3p. The remaining seven electrons should go into the 4s and 3d sub-shells. Therefore, the correct answer is:O3p445²3d5
The correct answer is C.
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If you have a 100g of Boron and you want to find out how
many molecules of Boron you have, you would need to...
Answer:
5.57 x 10^24 atoms
Explanation:
first, you are seeking the number of ATOMS of Boron.
Boron has an Atomic mass of 10.8 g/mol (see #5 on the periodic table)
100 gm of Boron would have 100 g /10.8 g/mol =9.26 moles
each mole has Avogadros number of atoms 6.02 x 10^23
9.26 moles has 9.26 x 6.02 x 10^23 atoms =5.57 x 10^24 atoms
what is 0.000980 in scientific notation
Answer:
9.80x10^-4
Explanation:
Answer:
9.80 x 10⁻⁴
Explanation:
The negative means that the decimal place was moved to the right and the exponent tells you how many places it was moved.
This question is about making copper.
Copper is made using a displacement reaction.
Magnesium is added to copper sulfate solution, CuSO4.
Copper and magnesium sulfate solution, MgSO4, are made.
Write a balanced symbol equation for this reaction.
Answer:
Mg + CuSO₄ = Cu + MgSO₄
Imagine that you skipped from one end of a room to the other end of the room. Explain how gravity affected your motion.
Answer:
when you skipped you jumped up but gravity pulls you to the ground when you jump
Explanation:
On skipping in a room, gravity affects the motion by pulling back to the ground.
Gravity has been defined as the force acting by the earth in the downward direction. It has been the strongest force and has been responsible for life on earth.
On skipping in a room from one end to another, there has been a force applied in the direction against gravity. The application of force has resulted in an upward motion. The gravitational force has been acting in the downward motion, and result in pulling back to the ground.
Thus, on skipping in a room, gravity influences the motion by pulling back to the ground.
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Would you consider rock crystal to be living or non-living?
Answer:
Crystals Grow and Grow
A crystal is an inorganic (not alive, not from something alive) homogeneous solid (meaning a solid with the same properties at all points) with a three-dimensional, repeated ordering of atoms or molecules
1.2 Give two ways that somebody could get Salmonella food poisoning.
Answer: Raw meat, poultry and seafood. Feces may get onto raw meat and poultry during the butchering process. ...
Raw eggs. ...
Fruits and vegetables.
Explanation:
Complete the formula below for the application of KVL around i1 (please ensure each term in your summation represents the voltage in V. Use the symbols I1 and I2 for the mesh currents in mA ) KVL around loop i1 : =0 V ii. Write the equation for the application of KVL around i2 KVL around loop =0 V iii. Determine the current i1 : mA iv. Determine the current i2 : mA v. Determine Vo :
the formula below for the application of KVL around i1 is KVL around loop i1: -10V + 5Ω * (I1 - I2) + 10Ω * I1 = 0.
According to Kirchhoff's Voltage Law (KVL), the sum of the voltages around a closed loop in a circuit is equal to zero. In this case, we are applying KVL around loop i1. The equation represents the sum of voltage drops in the loop, where -10V is a voltage source, 5Ω * (I1 - I2) represents the voltage drop across the 5Ω resistor due to the difference in mesh currents I1 and I2, and 10Ω * I1 represents the voltage drop across the 10Ω resistor due to the current I1. The equation is set equal to zero to satisfy KVL.
ii. KVL around loop i2: 10Ω * I2 - 5Ω * (I1 - I2) + 2V = 0
Similar to i, this equation represents the application of KVL around loop i2. The 10Ω * I2 term represents the voltage drop across the 10Ω resistor due to the current I2, the -5Ω * (I1 - I2) term represents the voltage drop across the 5Ω resistor due to the difference in mesh currents I1 and I2, and the 2V term represents a voltage source. The equation is set equal to zero to satisfy KVL.
iii. Determine the current i1: Substitute the obtained values into the equation for i1 and solve for I1 in mA.
iv. Determine the current i2: Substitute the obtained values into the equation for i2 and solve for I2 in mA.
v. Determine Vo: Substitute the obtained values for i1 and i2 into the appropriate equation representing the voltage at Vo, and calculate the value in V.
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KOH is an excellent drying agent for some organic compounds. Would it be a better choice for a carboxylic acid (RCOOH) or an amine (RNH2)? Why?
KOH may be a better choice for drying amines than carboxylic acids due to the differing chemical properties and hygroscopic nature of these functional groups.
However, it is important to consider the specific properties of the organic compound being dried and to use the appropriate drying agent based on its chemical nature.
KOH (potassium hydroxide) is a strong base that is commonly used as a drying agent for organic solvents due to its ability to react with water to form potassium hydroxide and water.
However, its effectiveness as a drying agent for carboxylic acids (RCOOH) and amines (RNH2) may differ due to their differing chemical properties.
In general, carboxylic acids are more acidic and polar than amines, and they can form hydrogen bonds with water more easily. As a result, carboxylic acids tend to be more hygroscopic (water-absorbing) than amines, and they can be more difficult to dry completely.
KOH may react with carboxylic acids to form salts and water, which can reduce the drying efficiency and potentially alter the chemical properties of the carboxylic acid.
On the other hand, amines are generally less acidic and less polar than carboxylic acids, and they may not form strong hydrogen bonds with water.
Therefore, amines may be more easily dried with KOH as a drying agent, as the base can react with any water present to form potassium hydroxide and water, leaving the amine dry.
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You need 100.00 mL of H20 and 5.00 mL of
liquid plant food to make a solution for your
plants. You forgot to bring a measuring cup
out to the greenhouse, but you do have a scale
and know that the density of H2O is 1.00
g/cm", the density of liquid plant food is 1.21
g/cm' and 1 cm° = 1 mL. How much of the
liquid plant food would you use?
Answer:
6.05 g
Explanation:
Use the density to convert the volume to a weight.
(5.00 mL) × (1.21 g/mL) = 6.05 g liquid plant food
You will need 6.05 g liquid plant food.
answer correctly for brainleist! (have to be correct) and u get 10 pts!
Answer:
A
Explanation:
Position 3 and 4 will give 12 hours of sunlight
Answer:
Positions 3 and 4
Explanation:
A substance is found to have a density of 2.4 g/ml and weighs about 100g. What is its volume?
Answer:
41.67 mLExplanation:
The volume of a substance when given the density and mass can be found by using the formula
\(volume = \frac{mass}{density} \\\)
From the question we have
\(density = \frac{100}{2.4} \\ = 41.66666...\)
We have the final answer as
41.67 mLHope this helps you
)
Many desert mammals have developed a nocturnal lifestyle. This means that during the day they sleep underground in their
burrows, and they come out to eat and play at night.
What is a good reason for a desert fox to show this pattern of behavior?
A)
To avoid the most common predators in the desert.
B)
To avoid being exposed to the sun during the hot day.
C)
Because hunting at night allows the fox to use its night vision.
Đ)
Because steeping in-a-burrow during the day will help it-find water
A good reason for a desert fox to show this pattern of behavior because hunting at night allows the fox to use its night vision.
What is Hunting?
Thi9s is commonly practised by predators such as fox in which they capture and kill other animals for food.
The fox has a good night vision which makes it able to hunt for animals during the night also. This is why option C is chosen as the most appropriate choice.
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9. Describe two ways in which you can conserve and recycle lab resources.
I
Answer:
Using solar energy, hydroelectric energy and wind are major ways of conserving natural resources. Trees and other organic energy sources are traditional sources of renewable energy. Forests can be replanted and hemp and other organic materials such as ethanol can be used to preserve natural resources.
Which statements about β turns are correct? Their purpose is to reverse the direction of the polypeptide chain. There are two types, I and II, which differ mainly in the conformation about the i+1 and i+2 residue amide bond. They typically contain large, hydrophobic residues. Their conformation is held in place through H bonds.
Answer:
The correct answer is - 1, 2, and 4 statements.
Explanation:
Beta and gamma turns are common plots or turns in proteins and contain intra-turn hydrogen bonds. This hydrogen bond is present between CO of residue i and NH of residue i+3 that holds the confirmation in beta turns.
Beta turns, assist the protein to get their globularity, as the aim of beta turns is to reverse the direction of the polypeptide. The two main of beta turns are type-I and type-Il. and their minor images are type-I and type-Il.
Thus, the correct answer is - 1, 2, and 4 statements.
High concentrations of mercury are discovered in a lab fire. Which of the objects below is not a possible source for this contamination?
1) Alkaline batteries
2) All of these choices are correct
3) Lightbulbs
4) Thermometers
Option 1, alkaline batteries, is not a possible source for mercury contamination in this scenario.
Mercury is not typically used in alkaline batteries, so they would not contribute to high concentrations of mercury in the event of a lab fire. Options 3 and 4, lightbulbs and thermometers, often contain mercury and could potentially release it in the event of a fire. Therefore, option 2, "all of these choices are correct," is also a valid answer.
A form of portable power source frequently utilised in electronic gadgets are alkaline batteries. Modern alkaline batteries do not contain mercury, in contrast to previous batteries that did. Environmental worries about mercury toxicity and the correct disposal of mercury-containing batteries led to a move away from mercury in alkaline batteries. Zinc, manganese dioxide, and potassium hydroxide are components of alkaline batteries, which provide the chemical processes required to produce electrical energy. They are utilised in a wide range of products, including flashlights, toys, remote controls, and portable electronics. They are easily accessible, have a fair amount of shelf life, and are generally available.
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El volumen de un gas en un recipiente cerrado es de 3.5 litros a una temperatura de 25oC y una atmósfera constante de presión. ¿ Cuál es el volumen del gas en el recipiente si se disminuye la temperatura a 7oC?
Answer:
El volumen del gas en el recipiente es 3.29 L si se disminuye la temperatura a 7°C
Explanation:
La Ley de Charles es una ley de los gases que relaciona el volumen y la temperatura de una cierta cantidad de gas a presión constante.
Esta ley establece que el volumen es directamente proporcional a la temperatura del gas. Es decir que si la temperatura aumenta, el volumen del gas aumenta, mientras que si la temperatura del gas disminuye, el volumen disminuye.
Matemáticamente, si la cantidad de gas y la presión permanecen constantes, el cociente entre el volumen y la temperatura siempre tiene el mismo valor:
\(\frac{V}{T}=k\)
Suponiendo un cierto volumen de gas V1 que se encuentra a una temperatura T1 al comienzo del experimento, al variar el volumen de gas hasta un nuevo valor V2, entonces la temperatura cambiará a T2, y se cumplirá:
\(\frac{V1}{T1}=\frac{V2}{T2}\)
En este caso, sabes:
V1= 3.5 LT1= 25 °C=298 °K (siendo 0°C=273°K)V2=?T2=7 °C=280 °KReemplazando:
\(\frac{3.5 L}{298 K}=\frac{V2}{280 K}\)
Y resolviendo obtienes:
\(V2=280 K*\frac{3.5 L}{298 K}\)
V2= 3.29 L
El volumen del gas en el recipiente es 3.29 L si se disminuye la temperatura a 7°C
What is the relationship between specific heat and the rate of heating?
Answer:
the rate of heat transfer is directly proportional to the mass flow rate.
Explanation:
There is an elementary equation from basic thermodynamics that states that the rate of heat transfer (Q) equals the mass flow rate (M) times a Constant (the specific heat of water) times the Delta T (fluid temp out minus fluid temp in): Q = M x C x Delta T In other words, the rate of heat transfer is directly proportional to the mass flow rate.
Calculate the amount of energy required to boil 25.00 g of mercury.
Answer:
C. 7.4 kJ
Explanation:
Let assume that Mercury is at room temperature (25 °C). The energy required to boil the sample of mercury is the sum of sensible and latent heats. Mercury has a fussion and boiling points of -38.83 °C and 356.7 °C, respectively, and a specific heat of \(138\,\frac{J}{kg\cdot ^{\circ}C}\). Then:
\(Q = (25\,g)\cdot \left[\left(0.138\,\frac{J}{g\cdot ^{\circ}C} \right)\cdot (356.7^{\circ}C - 25^{\circ}C) + 296\,\frac{J}{g} \right]\)
\(Q = 8544.365\,J\)
The option that offers the best approximation to the result is C.
In the reaction __H2 + N2 → 2 NH3, what coefficient should be placed in front of H2 to balance the reaction?
Answer:
3
Explanation:
the product of the equation includes 6H....so because there are already 2 hydrogens in the reactants, if you have three of those, or 3*2=6....therefore the coefficient should be 3