In polar covalent bonding, electrons are shared unequally between atoms, due to the unequal distribution of electrons between atoms of different elements, slightly positive and slightly negative charges appear in different parts of the molecule.
In this context, water molecule is an exellent example of this type of bonding:
Water ([tex]H_{2}O[/tex]) can stick to itself through hydrogen bonds, because a water molecule consists of 2 hydrogen atoms attached to 1 oxygen atom.
The oxygen atom tends to monopolize more electrons and keeps them away from hydrogen. Then, it can be said that a water molecule will have a negative side (oxygen) and a positive side (hydrogen).
Thanks to this polarity, water molecules can stick together with the formation of hydrogen bonds to attract a partial positive charge of hydrogen and a more electronegative atom, such as oxygen.
how are power ratings used to describe machines?
power ratings basically just compare with how many watts are used, like a tackle in football compares to a car engine
For historical reasons, the horsepower is occasionally used to describe the power delivered by a machine. One horsepower is equivalent to approximately 750 Watts. ... Thus, the power of a machine is the work/time ratio for that particular machine. A car engine is an example of a machine that is given a power rating.
Two common terms for a decrease in velocity are
What happens to sound waves when you are moving toward the source of the sound?
Answer: Each consecutive disturbance has a further distance to travel before reaching observer A. For this reason, observer A observes a frequency of arrival that is less than the frequency at which the disturbances are produced.
Explanation:
The Doppler Effect
Suppose that there is a happy bug in the center of a circular water puddle. The bug is periodically shaking its legs in order to produce disturbances that travel through the water. If these disturbances originate at a point, then they would travel outward from that point in all directions. Since each disturbance is traveling in the same medium, they would all travel in every direction at the same speed. The pattern produced by the bug's shaking would be a series of concentric circles as shown in the diagram at the right. These circles would reach the edges of the water puddle at the same frequency. An observer at point A (the left edge of the puddle) would observe the disturbances to strike the puddle's edge at the same frequency that would be observed by an observer at point B (at the right edge of the puddle). In fact, the frequency at which disturbances reach the edge of the puddle would be the same as the frequency at which the bug produces the disturbances. If the bug produces disturbances at a frequency of 2 per second, then each observer would observe them approaching at a frequency of 2 per second.
Now suppose that our bug is moving to the right across the puddle of water and producing disturbances at the same frequency of 2 disturbances per second. Since the bug is moving towards the right, each consecutive disturbance originates from a position that is closer to observer B and farther from observer A. Subsequently, each consecutive disturbance has a shorter distance to travel before reaching observer B and thus takes less time to reach observer B. Thus, observer B observes that the frequency of arrival of the disturbances is higher than the frequency at which disturbances are produced. On the other hand, each consecutive disturbance has a further distance to travel before reaching observer A. For this reason, observer A observes a frequency of arrival that is less than the frequency at which the disturbances are produced. The net effect of the motion of the bug (the source of waves) is that the observer towards whom the bug is moving observes a frequency that is higher than 2 disturbances/second; and the observer away from whom the bug is moving observes a frequency that is less than 2 disturbances/second. This effect is known as the Doppler effect.
Answer:frequency increases
why generally metals are good conductor and non metals are bad conductor of electricity
Metals - The close packing of the metal ions in the lattice and the delocalised electrons ensure it can carry kinetic energy through the lattice.
Non - metals have fewer free electrons and electrons are held tightly, meaning they're not allowed to move freely.
Final answer:
Metals are good electrical conductors due to their free electrons that allow for easy flow of charge, while non-metals are poor conductors as their electrons are more tightly bound. This electron structure difference makes metals suitable for electrical wiring and non-metals for insulation.
Explanation:
Metals are generally good conductors of electricity because they have free electrons that can move easily between atoms, providing a path for electrical charge to flow. This is why metals like copper and gold are commonly used in electrical conducting wires. On the other hand, non-metals are typically poor conductors of electricity, as their electrons are more tightly bound to their atoms and do not move freely. Materials like plastic, wood, and glass are examples of non-conductors or insulators. Therefore, the fundamental distinction between metals and non-metals in terms of conductivity is based on how their electrons are structured and interact.
Properties of Metals and Nonmetals
Metals have a shiny lustre, are malleable and ductile, making them ideal for making jewellery and cooking utensils.
Non-metals, such as sulfur and oxygen, are neither malleable nor ductile, and they usually do not conduct heat and electricity well.
Moving beyond electrical conductivity, materials can also be classified by magnetism, thermal conductivity, and other properties, emphasizing the versatility and range of uses for different elements based on their conducting abilities.
a hot metal bolt of mass 0.05 kg and specific heat capacity 889 joules per kg degree celsius is dropped into a calorimeter containing 0.15 kg water at 21 degrees celsius. the bolt and water resch a final temperature of 25 degrees celsius. what is the initial temperature of the bolt? the specific heat capacity of water is 4186 joules per kilogram degrees celsius.
80.87 °C
Explanation;Change in Temp of metal = (C of water *mass of water* Change in temp of water)/(C of metal*mass of metal)
That is;
Change of temp. of metal
= [(4186 J/kg*°C)×(0.15kg)×(25°C-21°C)/[(899 j/kg*C)×(0.050kg)
= 55.87 °C
The change in temp of the metal is -55.87 °C as the metal cools down
Therefore;
Change in temperature = Final Temperature-Initial Temperature Initial Temperature = Final Temp.-Change in Temp
=25 °C- (-55.87 °C)
= 80.87 °C
a player passes a 0.600kg basketball down court for a fast break.the ball leaves the player hands with a speed of 8.30m/s and slows down to 7.20 m/s at its highest point. Ignoring air resistance,how high above the release point it is at its maximum height?
At the release point, the ball has kinetic energy,
[tex]\dfrac12m{v_0}^2[/tex]
and at its maximum height it has potential and kinetic energy,
[tex]-mgy+\dfrac12mv^2[/tex]
where [tex]y[/tex] is the maximum height attained above the release point.
The LoCoE tells us that we should have
[tex]\dfrac12m{v_0}^2=-mgy+\dfrac12 mv^2[/tex]
[tex]\implies v^2-{v_0}^2=-2gy[/tex]
[tex]\implies\left(7.20\dfrac{\rm m}{\rm s}\right)^2-\left(8.30\dfrac{\rm m}{\rm s}\right)^2=-2\left(9.80\dfrac{\rm m}{\mathrm s^2}\right)y[/tex]
[tex]\implies y=0.870\,\mathrm m[/tex]
Answer: The maximum height of the ball is 0.87 m
Explanation:
To calculate the height of the ball, we use third equation of motion:
[tex]v^2-u^2=2as[/tex]
where,
s = distance traveled / height of the ball = ?
u = initial velocity of the ball = 8.30 m/s
v = final velocity of the ball = 7.20 m/s
a = acceleration due to gravity = [tex]-9.8m/s^2[/tex] (negative sign represents the ball is going upwards that is against gravity)
Putting values in above equation, we get:
[tex](7.20)^2-(8.30)^2=2\times (-9.8)\times s\\\\s=\frac{(7.20)^2-(8.30)^2}{(2\times (-9.8))}=0.87m[/tex]
Hence, the maximum height of the ball is 0.87 m
At what point in its motion is the KE of a pendulum bob a maximum? 1. The KE does not change. 2. at the lowest point 3. at the highest point 4. midway between the highest and lowest points
Answer:
2. at the lowest point
Explanation:
The motion of the pendulum is a continuous conversion between kinetic energy (KE) and gravitational potential energy (GPE). This is because the mechanical energy of the pendulum, which is sum of KE and GPE, is constant:
E = KE + GPE = const.
Therefore, when KE is maximum, GPE is minimum, and viceversa.
So, the point of the motion where the KE is maximum is where the GPE is minimum: and since the GPE is directly proportional to the heigth of the bob:
[tex]GPE=mgh[/tex]
we see that GPE is minimum when the bob is at the lowest point,so the correct answer is
2. at the lowest point
Final answer:
The kinetic energy of a pendulum is maximum at the lowest point of its swing, where potential energy has been fully converted into kinetic energy.
Explanation:
The kinetic energy (KE) of a pendulum bob is at its maximum at the lowest point of its swing. This is because, as the pendulum falls from its highest point, it converts potential energy into kinetic energy. At the lowest point, all the potential energy that was present at the top has been transformed into kinetic energy, assuming no energy losses due to air resistance or friction. Conversely, at the highest points in the swing, the pendulum has maximum potential energy and minimum kinetic energy. Midway between the highest and lowest points, the pendulum has a mix of both kinetic and potential energy.
PLEASE ANSWER!!!!!
nova, whose mass is 50.0kg, stays out skiing for too long and her body temperature drops by 2.00 degrees celcius. what is the amount of heat lost from novas body? (human body = 3470J/kg degrees celcius)
Use the equation q=mc/\T, where q is the heat lost, m is mass, and /\T is the change in temperature, and c is the specific heat.
q=50kg(3470J/kg K)(2K)
q=347000 J
Any other questions, just ask.
The heat lost from Nova's body is calculated using the specific heat formula Q = mcΔT. Substituting in the given values, we find that Nova's body lost 347,000 joules of heat.
Explanation:The amount of heat lost by Nova's body can be calculated using the specific heat formula which is: Q = mcΔT, where 'Q' is the heat transferred, 'm' is the mass, 'c' is the specific heat, and 'ΔT' is the change in temperature. In this case, you would substitute the given values into this formula: Q = (50.0kg) * (3470J/kg°C) * (2.00°C)
When you multiply these together, the resulting heat loss is 347,000 joules. Therefore, Nova's body lost 347,000 joules of heat while she was skiing.
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PLZ HELP ME FAST! How is frequency related to energy? Graph the relationship between the frequency and energy of a radio wave vs other types of electromagnetic waves on the graph below. Write 1- 2 sentences explaining the relationship you drew.
Do Not Know but let me ask my Brother bc he did it last Year
what causes the phases of the moon as seen from earth brainly
From the Earth, we can see multiple phases of the Moon in a 28 days cycle. These phases are not changes int he Moon or how much of it is lightened, but instead it is a result of the positions that the Earth, Moon, and Sun have in relation to each other. The Sun is always lighting one half of the Moon, which is the half that is turned toward it. From the Earth it doesn't seem that way, as we can see Moon that seems fully light, partially light on the left side, partially light on the right side, or totally dark, but all of that depends on how much of the lighted side of the Moon is turned toward the Earth.
50 ml of milk at 5°C is added to 200 ml of hot chocolate at 95°C. What do you think the approximate new temperature is?
76.3°C
Explanation;Considering the fact that;
Specific heat capacity of the hot chocolate = 3.751 kJ/kg C°
Specific heat capacity of milk is 3.93 kJ/(kg.C°)
But;
Heat gained by milk = Heat lost by hot chocolate
If the final temperature is x , then
Heat gained by milk
= 0.05 × 3.93 × (x-5)
= 0.1965x - 0.9825
Heat lost by hot chocolate;
= 0.2 × 3.751 × (95-x)
= 71.269 - 0.7502x
Therefore;
0.1965x - 0.9825 = 71.269 - 0.7502x
0.1965 x + 0.7502x = 71.269 + 0.9825
0.9467 x = 72.2515
x = 76.319 °C
Approximately, the new temperature is 76.3°C
Which describes how to compare the energy of two different waves?
A. measure their frequencies
B. measure their periods
C. measure their amplitudes
D. measure their wavelengths
C. measure their amplitudes
Explanation;The amount of energy in a wave is related to its amplitude and its frequency.The amplitude of a wave is how the wave is measured from the rest position or mid-line to the top of a crest or bottom of a trough, measured in meters.A high amplitude wave is a high-energy wave, and a low-amplitude wave is a low-energy wave. For instance in the case of sound waves, a high amplitude sound will be loud, and a low amplitude sound will be quiet.C measures their amplitudes. Hope this helps! :)
Help 10 points!
Digesting a banana before running a race is an example of converting
nuclear energy into mechanical energy.
nuclear energy into mechanical energy as well as heat.
chemical energy into mechanical energy.
chemical energy into mechanical energy as well as heat.
chemical energy into mechanical energy as well as heat.
Answer:
Explanation:
two wires a and b have equal lengths and are made of same material. If the diameter of wire A is twice that of wire B, which has the greater extension for a given load?
Answer:
It should be A.
Explanation:
Wire A and wire B are made from the same material and have the same length, however, wire A is wider which would allow more electricity or power to be transformed.
Unless im understanding your question wrong, but from what I do understand it is most likely A.
Hope this helps, could you mark me brainliest if it is right?
what is the difference between transformation of energy and transfer of energy
Transformation of energy involves converting energy from one form to another, while transfer of energy involves the movement of energy from one system to another without a change in form.
Explanation:The difference between transformation of energy and transfer of energy lies in the change of form and location of energy. Transformation of energy refers to the conversion of energy from one form to another, such as chemical energy being transformed into heat energy through metabolism. Transfer of energy, on the other hand, refers to the movement of energy from one system to another without a change in form, like the transfer of electrical energy to light energy in a light bulb.
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Normal force is exerted _____to the surface of an object.
A. perpendicular
B. 45 degrees
C. horizontal
The normal force is always (underline, bold) is always perpendicular to the surface an object is sitting on. If the object is on an inclined plane, then the normal will not be vertical but it will be perpendicular to the angle of the incline.
The diagram below (left) shows a normal force (GH) that is not vertical, but it is perpendicular to the surface. The object on the right is the more usual normal a mass on a table top.
The vertical line on the right is the normal and it points up.
The correct option is A. perpendicular
Explanation:In Physics, the normal force is the component of a contact force that is perpendicular to the surface that an object contacts. It is the support force exerted upon an object that is in contact with another stable object. Normal Force will be always acting opposite to the force falling on the surface. For example, if a book is resting upon a surface, then the surface is exerting an upward force upon the book in order to support the weight of the book.
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Dan wants to lift his car using a moveable pulley system like the one shown in the picture.
Using a moveable pulley system will decrease the force needed to lift the car by increasing the
A. Distance over which the force is applied.
B. Strength contained in Dan’s arms.
C. Total mass of Dan’s arms.
D. Total mass of the car.
Answer:
A. Distance over which the force is applied
Explanation:
As we know that in pulley system the mass of the car is balanced by the tension in the string
so here we will have
[tex]T = r \times F[/tex]
so here in order to decrease the force needed to lift the car we have to increase Distance over which the force is applied
So here if we increase the distance over which force is applied then it will reduce the effort applied by us in this pulley system as the torque will be more if the distance is more.
A spacecraft is launched from Earth toward the moon where will the spacecraft be when the gravitational forces acting on it are equal
A closer to earth than to the moon because the moon has greater mass than the earth
B closer to the moon because the moon greater mass than the earth
C closer to earth than to the moon because earth has greater mass
D Closer to moon than earth because earth has a greater mass than the moon
Answer:
D Closer to moon than earth because earth has a greater mass than the moon
Explanation:
As we know that gravitational force is given by
[tex]F = \frac{Gm_1m_2}{r^2}[/tex]
so here if the net gravitational force at some distance between moon and earth is zero or equal due to moon and earth then in that case
[tex]F_{moon} = F_{earth}[/tex]
so here we can say
[tex]\frac{GM_m m}{r_1^2} = \frac{GM_e m}{r_2^2}[/tex]
so here we will have
[tex]\frac{M_m}{M_e} = \frac{r_1^2}{r_2^2}[/tex]
since mass of earth is more than mass of moon so we can say
[tex]\frac{r_1}{r_2} < 1[/tex]
so here we have
[tex]r_1 < r_2[/tex]
so the position is closer to moon because moon is of smaller mass than earth
Final answer:
In a spacecraft launched from Earth toward the moon, the spacecraft will be closer to the moon than to Earth when the gravitational forces acting on it are equal.
Explanation:
In a spacecraft launched from Earth toward the moon, the spacecraft will be closer to the moon than to Earth when the gravitational forces acting on it are equal.
The gravitational force between two objects depends on their masses and the distance between them. Although the moon has smaller mass compared to Earth, it is much closer to the spacecraft when it reaches that point where the gravitational forces are equal. This is because the spacecraft has traveled a greater distance away from Earth.
So, the correct answer is option B, closer to the moon because the moon has greater mass than the earth.
In which situation is the gravitational force between two objects hard to detect? (Options)
a. If the mass of each object is very small.
b. If the objects are very close together.
c. If the mass of one of the objects is very great.
d. If the mass of both objects is very great.
Answer:
Hence, the correct option is (A) "If the mass of each object is very small".
Explanation:
The gravitational force between two objects is directly proportional to the product of masses and inversely proportional to the square of the distance between them.
The mathematical expression is given by :
[tex]F=G\dfrac{m_1m_2}{d^2}[/tex]
d is the distance between masses
Gravitational force is one of the fundamental force in the universe. If the masses of objects is too small, then their interaction with each other is hard to detect.
Hence, the correct option is (A) "If the mass of each object is very small".
how does a pedometer help people reach their fitness goals
how does a pedometer help people reach their fitness goals?
a. It measures calories burned.
b. It usually doubles as an MP3 player and keeps people motivated.
c. They count steps during a workout.
d. They measure the number of lifts done per exercise.
Answer:
By counting the steps it allows you to know the distance you have walked or ran.
Explanation:
A pedometer is an instrument that estimates the distance traveled by foot. It does this by recording the number of steps walked.
Some pedometers apps also have a feature that counts the calories burnt and lets you set the number of steps and calories you need to burn daily.
I hope this answer helps you.
What do radio waves carry
The answer is modulation. In modulation a radio wave (also called the "carrier signal") is changed by the signal we want to send to the receiver, for example a song, or, in a wireless network, some data from a computer.
Answer:
Radio waves carry conversations, music, pictures, and information.
Explanation:
A sodium has an atomic number of 11 and the atomic mass of 23. Determine the its proton, electrons, and neutrons
The mass number of an element tells us the number of protons AND neutrons in an atom (the two particles that have a measurable mass). Sodium has a mass number of 23amu. Since sodium has 11 protons, the number of neutrons must be 23 – 11 = 12 neutrons.
A garage door opener has a component that stop the door from coming down if something is in the way. This component is made up of a laser light on one side and a receiver on the other. Which best explains why this component works.
A) The receiver collects the laser light indicating that something is in the way.
B) Any object blocking the path of the laser will reflect the beam into the reciever.
C) Any object in its path changes the color of the laser before it gets to the reciever.
D) The laser light travels in a straight line towards the receiver, an object in the way blocks this straight line path.
The wavelength of a sound will give us information about________________.
A) how loud the sound will be
B) what produced the sound
C) the high or low pitch of the sound
D) the speed of sound
Which statement about how sound travels is true?
A) The speed of sound is the same at all times.
B) The speed of sound depends on the material it travels through.
C) Sound vibrations only move through a vacuum.
D) Sound moves faster through insulators than conductors.
Which statement about the electromagnetic spectrum is false?
A) There are wavelengths other than those of visible light in the spectrum.
B) Microwaves have a longer wavelength than visible light.
C) The higher the energy of the wavelength, the more dangerous they are.
D) Infrared light waves are visible.
laser in the garage . . . D
wavelength of a sound . . . C
how sound travels . . . B
electromagnetic spectrum . . . D
Final answer:
The garage door safety mechanism functions by blocking a laser beam, which triggers the system to halt the door. The wavelength of sound informs us about pitch, with longer wavelengths corresponding to lower pitches. The speed of sound is dependent on the medium it travels through, and infrared light waves are not visible to the human eye.
Explanation:
The component that prevents a garage door from closing if there is an obstruction works as follows: The laser light travels in a straight line towards the receiver, and if an object blocks this path, the door will not close. The correct answer is D. An object in the path interrupts the beam, which signals the system to stop the door.
Regarding sound waves, the wavelength of a sound provides information about the pitch of the sound, which means C is the correct answer. A longer wavelength correlates with a lower pitch, and vice versa.
The speed of sound does not remain constant and varies depending on the material through which it travels, making B the correct statement. This variability is due to differences in density and elasticity of different media.
In the electromagnetic spectrum, D is the false statement because infrared light waves are not visible to the human eye. The electromagnetic spectrum includes a range of wavelengths, some visible and some not, such as infrared.
7. A rock is projected upward from the surface of the moon, at time t = 0.0 s, with a velocity of The acceleration due to gravity at the surface of the moon is What is the maximum height of the rock above the surface?
278 m
202 m
245 m
115 m
125 m
The maximum height of the rock above the surface is 202 m
What is the relationship between the buildup of electons and the sudden flow of electrons from one charged object to another?
Static electricity
hope this helps :)
the answer to this question is static electricity
Please hurry
Which facility relies on a nonrenewable source of energy?
f A wind farm that uses wind turbines
g A dam that uses the power of water
h A solar farm that collects sunlight
j A power station that burns coal
power station that burns coal
Non- renewable source of energy is exhaustible resources. The facility relies on a non-renewable source of energy is a power station that burns coal.
What is Non- renewable source of energy?These are the sources that cannot be produced again if exhausted once. They may take millions of years to form. Such as coal, and natural gas.Renewable sorces:
These are the source of energy that is present in inexhaustible amounts. Such as solar energy, water dams, wind power.Therefore, the facility relies on a non-renewable source of energy is a power station that burns coal.
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Which statement is true of a concave lens?
The list of choices you gave us doesn't have any true statements on it.
The statement true of a concave lens is Option A.
What is concave lens?Concave lens is a type of spherical lens which is polished from outside and it reflects the light coming from the object through its inner surface.
This lens is diverging in nature which means that the light rays gets diverged after reflection.
The nature of the image formed by these lens is virtual and the size of the image will be less than the object and the image formed will be upright.
Hence, the correct option is A.
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Please help! last test of the week, and i can have a long weekedn! Friday and Sun and Sat.
It must have a medium to travel through.
Happy to help. Marking me the brainliest would really be appreciated.
what is the weight of 0.12kg mass?
1.1772 N
Step by Step ExplanationGiven in the question,
mass of an object = 0.12 kg
To find the weight of this object we will use formula
weight = mass x acceleration due to gravity
We know that acceleration due to gravity on earth is constant = 9.81 m/s²
So,
weight = 0.12 x 9.81
= 1.1772 N
Since it is not mention that were the object is so i assume that it is on earth but if it is on moon then acceleration due to gravity will be 1.625 m/s²
Meteoroids that strike Earth are called _____.
meteorite is when a meteor survives the earth atmosphere and Impacts the earth successfully.
The little stone while it's still in space . . . "meteoroid" .
The streak of light it makes shooting through atmosphere . . . "meteor" .
The piece of it that's left when it gets to the ground . . . "meteorite" .