The acceleration due to gravity on the surface of the other planet is approximately 77.98 m/s².
To find the acceleration due to gravity on another planet, we can use the formula:
Weight = Mass × Acceleration due to gravity
On Earth, your weight is given as 742.32 N, and the acceleration due to gravity is 9.80 m/s².
We can rearrange the formula to solve for mass:
Mass = Weight / Acceleration due to gravity
So, on Earth, your mass would be:
Mass on Earth = 742.32 N / 9.80 m/s²
Mass on Earth = 75.63 kg
Now, let's consider the surface of another planet where your weight is given as 5900.91 N.
We'll use the same formula and solve for the acceleration due to gravity on that planet:
5900.91 N = Mass × Acceleration due to gravity on the other planet
Substituting the value of mass we calculated earlier:
5900.91 N = 75.63 kg × Acceleration due to gravity on the other planet
Now, we can solve for the acceleration due to gravity on the other planet:
Acceleration due to gravity on the other planet = 5900.91 N / 75.63 kg
Acceleration due to gravity on the other planet ≈ 77.98 m/s²
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A locust jumps at an angle of 55. 0° and lands 0. 750 m from where it jumped
The locust jumped a total distance of 0.750 m at an angle of 55.0°. Using the sine and cosine functions, we can calculate the horizontal and vertical components of the jump.
What is angle?Angle is a geometric figure formed by two lines or rays diverging from a common point. It is measured in degrees, and is used to indicate the amount of turn between the two lines or rays. Angles are often used in geometry, engineering, and physics to measure the size of objects or the amount of turn in a path. Angles are also used to indicate direction, such as in a compass. In mathematics, angles can be used to calculate the area and volume of shapes, as well as the length of curves.
The horizontal component is 0.666 m and the vertical component is 0.450 m. This means the locust jumped 0.666 m horizontally and 0.450 m vertically.
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where do we use friction in day to day life
Answer:
walking in ground
while playing carrom
In pairs figure-skating competition, a 65-kg man and his 45-kg female partner stand facing each other both at rest on the ice. If they push apart and the woman has a velocity of 1.5 m/s eastward, what is the velocity of her partner? (Neglect friction.)
Answer:
The final velocity of her partner is approximately -1.04 m/s or 1.04 m/s in the opposite direction to her direction of motion
Explanation:
The given parameters are;
The mass of the man, m₁ = 65 kg
The mass of the woman, m₂ = 45 kg
Taking the relative initial velocity of the man and the woman as 0 m/s, we have;
The initial velocity of the man, v₁₁ = 0 m/s
The initial velocity of the man, v₁₂ = 0 m/s
The final velocity of the woman, v₂₂ = 1.5 m/s
The final velocity of the man = v₂₁
Therefore, we have, by the conservation of momentum principle;
The total initial momentum = The total final momentum
Which gives;
m₁ × v₁₁ + m₂ × v₁₂ = m₁ × v₂₁ + m₂ × v₂₂
Substituting the known values;
65 × 0 + 45 × 0 = 65 × v₂₁ + 45 × 1.5
∴ 65 × v₂₁ + 45 × 1.5 = 0
45 × 1.5 = - 65 × v₂₁
v₂₁ = 45 × 1.5/(-65) ≈ -1.04 m/s
The final velocity of the man, her partner = v₂₁ ≈ -1.04 m/s.
Compare the density of a 1,000,000 kg iceberg to that of a 10 g ice cube taken from the
iceberg. Explain your answer.
ANYONE ASAPP ITS SO IMPORTANT PLSSS
Answer:
The density of the 1,000,000 kg iceberg = The density of the 10 g iceberg
Explanation:
The given quantities of iceberg that will be the basis of the comparison of the densities of the iceberg;
The mass of the iceberg = 1,000,000 kg
The mass of the ice cube taken from the iceberg = 10 g
The density of a substance, is the measure of the mass of the substance per volume of the substance, it is a constant for the substance
\(Density = \dfrac{Mass}{Volume}\)
For the iceberg, the density of the iceberg is the property that indicates the volume occupied by a given mass of the iceberg
Because of density, we can estimate that the volume occupied by a 1,000 kg iceberg is 10 times the volume occupied by a 100 kg iceberg
We can write
The density of the 100 kg iceberg = 100 kg/(x m³)
The density of the 1,000 kg iceberg = 1,000 kg/(10 × x m³) = 100 kg/(x m³)
Therefore, the density of the 100 kg iceberg = The density of the 1,000 kg iceberg
Similarly,
The density of the 1,000,000 kg iceberg = The density of the 10 g iceberg because the 10 g iceberg was obtained from the 1,000,000 kg iceberg, and therefore, they have the same density.
You calculated a equivalent capacitance of 0.72 μF ± 0.08 μF. If the manufacturer has labeled the capacitor as 0.5 μF ± 10%, is this consistent with your result?
To determine if the manufacturer's label is consistent with your calculated equivalent capacitance of 0.72 μF ± 0.08 μF, we need to compare the ranges of the values.
1. Determine the manufacturer's label range:
The manufacturer labeled the capacitor as 0.5 μF ± 10%. To find the range, we will calculate 10% of 0.5 μF.
0.5 μF * 10% = 0.05 μF
The range of the manufacturer's label is 0.5 μF ± 0.05 μF, meaning it could be between 0.45 μF and 0.55 μF.
2. Determine your calculated range:
You calculated the equivalent capacitance as 0.72 μF ± 0.08 μF. This means your calculated range is between 0.64 μF and 0.8 μF.
3. Compare the ranges:
Manufacturer's range: 0.45 μF to 0.55 μF
Your calculated range: 0.64 μF to 0.8 μF
Since there is no overlap between the two ranges, the manufacturer's label of 0.5 μF ± 10% is not consistent with your calculated result of 0.72 μF ± 0.08 μF.
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The force that causes electrons to flow through a conductor is known as:
Answer:
Voltage
Explanation:
the distance between the sun and moon is 480 light second. convert the distance into meter
Answer:
1.439 × 10¹¹ m is the answer.
Explanation:
1 light-second = 2.998 × 10⁸m
480 light-seconds = 480 × 2.998 × 10⁸
= 1439.04 × 10⁸
= 1.439 × 10¹¹
∴ 1.439 × 10¹¹ m is the answer.
The distance converted into the meter will be 1.439×10¹¹ m.In one light second, there are 2.998 ×10⁸ m.
What is the distance?Distance is a numerical representation of the distance between two objects or locations.
The distance can refer to a physical length or an estimate based on other factors in physics or common use. |AB| is a symbol for the distance between two points A and B.
The given data in the problem is;
The distance between the sun and moon is,d= 480 light second
\(\rm d_m\) is the distance in meter
As we know,
\(\rm 1\ light\ second = 2.998 \times 10^8m \\\\ 480\ light\ seconds = 480 \times 2.998 \times 10^8\ m \\\\ d_m= 1439.04 \times 10^8 \\\\ d_m = 1.439 \times 10^{11}\)
Hence the distance converted into the meter will be 1.439×10¹¹ m.
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what is a major selecting factor for astronomers looking to place a telescope atop a mountain
A crane used 250,000 Joules of work to move a beam to the top of a building in 20 seconds. How much power did the crane use?
a) 5,000,000 W
b) 5,000 W
c) 50 J
d) 12,500 W
Answer:
12500W
Explanation:
Given parameters:
Work done = 250000J
Time taken = 20s
Unknown:
Power of the crane = ?
Solution:
Power is the defined as the rate at which work is being done;
Mathematically;
Power = \(\frac{work done}{time }\)
insert the parameters and solve;
Power = \(\frac{250000}{20}\) = 12500W
Which of the following graph is used for determining the instantaneous velocity from the slope?
A. distance-time graph
B. x - t graph
C. both of these
D. none of these
Answer:
B. x - t graph
Explanation:
A position-time (x-t) graph is a graph of the position of an object against (versus) time.
Generally, the slope of the line of a position-time (x-t) graph is typically used to determine or calculate the velocity of an object.
An instantaneous velocity can be defined as the rate of change in position of an object in motion for a short-specified interval of time. Thus, an instantaneous velocity is a quantity that can be found by measuring the slope of a line that is tangent to a point on the graph.
Hence, the x - t graph also referred to as the position-time graph is used for determining the instantaneous velocity from the slope.
For example;
Given that the equation of motion is S(t) = 4t² + 2t + 10. Find the instantaneous velocity at t = 5 seconds.
Solution.
\( S(t) = 4t^{2} + 2t + 10\)
Differentiating the equation, we have;
\( S(t) = 8t + 2 \)
Substituting the value of "t" into the equation, we have;
\( S(5) = 8(5) + 2 \)
\( S(5) = 40 + 2 \)
S(5) = 42 m/s.
Answer:
B. x - t graph
Explanation:
Thus, an instantaneous velocity is a quantity that can be found by measuring the slope of a line that is tangent to a point on the graph. Hence, the x - t graph also referred to as the position-time graph is used for determining the instantaneous velocity from the slope.
A charge of 6.5 x 10-5 C is attracted by another charge with a force of 250 N when
they are separated by 0.15 m. Find the magnitude of the other charge.
8.65 X 105 C
9.62 × 10-2 C
6.15 x 10-6 C
O 9.62 x 10 c
Answer:
We can use Coulomb's law to solve this problem:
F = k * q1 * q2 / r^2
where F is the force between the two charges, k is Coulomb's constant (k = 9 x 10^9 N m^2 / C^2), q1 and q2 are the magnitudes of the charges, and r is the distance between them.
We know the force F, the distance r, and the magnitude of one of the charges q1. We can rearrange the equation to solve for the magnitude of the other charge q2:
q2 = F * r^2 / (k * q1)
Substituting the values we have:
q2 = (250 N) * (0.15 m)^2 / (9 x 10^9 N m^2 / C^2 * 6.5 x 10^-5 C)
Simplifying:
q2 = 8.65 x 10^5 C
Therefore, the magnitude of the other charge is 8.65 x 10^5 C.
How does charging by conduction work?
Answer:
During charging by conduction, both objects acquire the same type of charge. If a negative object is used to charge a neutral object, then both objects become charged negatively. ... In this case, electrons are transferred from the neutral object to the positively charged rod and the sphere becomes charged positively.
What is the input energy in a kettle?
Answer:
its electrical energy input converted into heat input energy
what is the resistance (in ω) of twenty-one 215 ω resistors connected in series
The total resistance of twenty-one 215ω resistors connected in series is 4515ω. The resistance of twenty-one 215ω resistors connected in series can be calculated using the formula for resistors in series. The formula is:
Total Resistance (R_total) = R1 + R2 + ... + Rn
where R1, R2, ... Rn are the individual resistances of the resistors connected in series. In this case, there are twenty-one 215ω resistors connected in series, so we can write the formula as:
R_total = 215ω + 215ω + ... + 215ω (21 times)
To simplify the calculation, we can multiply the resistance of one resistor (215ω) by the total number of resistors (21):
R_total = 215ω × 21
Now, simply multiply the values:
R_total = 4515ω.
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using your probe, find a point at the selected voltage on the teledeltos paper. mark the location and voltage of that point on the white photocopied page. use the grid marks on the black paper to help transfer your readings onto the photocopy
To find a point at the selected voltage on the teledeltos paper and mark its location and voltage on a white photocopied page, use the probe and grid marks on the black paper to assist in transferring the readings accurately.
The teledeltos paper contains a pattern of conductive ink that changes color based on the applied voltage. To locate a specific point at the desired voltage, a probe can be used to measure the voltage at different locations on the teledeltos paper. Once the desired voltage is detected, the location and voltage of that point can be marked on a white photocopied page.
To ensure accurate transfer of the readings, the grid marks on the black paper can be utilized. The grid marks provide reference points that allow for precise alignment when transferring the location and voltage onto the photocopy. By aligning the grid marks on both the teledeltos paper and the photocopy, the corresponding position and voltage reading can be transferred accurately, providing a visual representation of the selected point on the teledeltos paper.
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a beam of light of which of the following pure colors is made up of photons of the lowest energy?
A beam of light of the pure color red is made up of photons of the lowest energy.
A beam of light made up of photons with the lowest energy corresponds to the pure color red. Red light has the longest wavelength and lowest frequency, resulting in the least amount of energy among the visible light spectrum.
The pure colour red corresponds to a beam of light made composed of photons with the lowest energy. The visible light spectrum's least energetic colour is red since it has the longest wavelength and lowest frequency.
A stream of photons travelling in a wave-like pattern, each carrying energy, and travelling at the speed of light can be compared to electromagnetic radiation. It was noted in that part that the energy of the photons is the only distinction between radio waves, visible light, and gamma rays. The lowest energy photons are found in radio waves. Radio waves lack the energy that microwaves do. There are even more in infrared, which is followed by visible, ultraviolet, X, and gamma rays.
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1. In general
, which type of compound tends to have the lowest melting point?
O A. Molecular solids
O B. Network solids
O C. lonic salts
O D. Metals
Jose has two bar magnets. He pushes the ends of the two magnets together and then lets it go. The magnets move quickly apart. Which of the following statements best explains why this happens
A.The north poles of the two magnets are facing each other.
B.One magnet is a north pole & one magnet is a south pole.
C.The ends of the magnets repel each other but the centers attract. D.One magnet is storing energy & one magnet is releasing energy.
Answer:
A. like poles repel or push apart
Listen When the reflection of an object is seen in a flat mirror, the distance from the mirror to the image depends on the distance of both the observer and the object to the mirror. the distance from the object to the mirror. the size of the object. the wavelength of light used for viewing. Question 22 (2 points) Listen Which is an example of refraction? A fish appears closer to the surface of the water than it really is when observed from a riverbank. A parabolic mirror in a headlight focuses light into a beam. Light is bent slightly around corners. In a mirror, when you lift your right arm, the left arm of your image is raised. 1
A fish appears closer to the surface of the water than it really is when observed from a riverbank. Refraction is the bending of light as it passes from one medium to another with a different optical density. In the case of the fish appearing closer to the surface of the water, this is an example of refraction because the light rays coming from the fish underwater undergo bending at the air-water interface.
When light passes from water (a denser medium) to air (a less dense medium), it changes its direction due to the difference in optical density. This bending of light causes the fish to appear higher or closer to the surface of the water than its actual position.
The other options mentioned in the question are not examples of refraction:
A parabolic mirror in a headlight focusing light into a beam is an example of reflection and focusing of light using a curved surface.
Light bending slightly around corners is an example of diffraction, not refraction.
In a mirror, when you lift your right arm, the left arm of your image is raised. This is an example of lateral inversion due to reflection, not refraction.
Therefore, the correct example of refraction from the given options is when a fish appears closer to the surface of the water than it really is when observed from a riverbank.
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The Earth rotates on its axis once every 24 hours. Due to this motion, roughly how many full hours would you expect to pass between two subsequent high tides at any given location on the Earth
The rotation of the Earth on its axis causes a periodic change in the position of the Moon and the Sun relative to any given location on the Earth's surface.
Earth is typically viewed as a massive, rotating, and gravitationally-bound celestial body that orbits around the sun. It has a radius of approximately 6,371 kilometers and a mass of approximately 5.97 x 10^24 kilograms. Earth's rotation on its axis produces day and night cycles, and its orbital motion around the sun produces the yearly cycle of seasons.
Earth's gravity plays a crucial role in many physical phenomena, such as tides, atmospheric pressure, and the motion of objects on its surface. Additionally, Earth's magnetic field helps to protect the planet from the charged particles of the solar wind. In terms of energy, Earth receives radiation from the sun and emits radiation in the form of heat.
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What does the force between electric charges depend on
Answer:
Electric force and the inverse square law
Both forces act along the line joining the objects (masses or charges). Both forces are inversely proportional to the square of the distance between the objects, this is known as the inverse-square law.
Which one of the following statements is not a characteristic of a plane mirror? a) The image is real.
(b) The magnification is +1.
(c) The image is always upright.
(d) The image is reversed right to left.
(e) The image and object distances are equal in magnitude.
A plane mirror doesn't have the magnification of +1, for example. It is not a feature of a plane mirror that the image is real.
Which of the following features of the picture created by a plane mirror virtual erect extended laterally inverted does not apply?Except for option B, all three of these traits are those of a virtual image created in a plane mirror. In a plane mirror, the image that is created is erect, not inverted.
Which four principles of planar mirror apply?Laterally inverted is the image. The image's dimensions match those of the object. The distance between the object in the mirror and the image that is produced by it are the same.
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How to calculate maximum height given initial velocity.
PLEASE HELP! Place these bodies of our solar system in the proper order of formation.
(THIS NOT PHYSICS THIS IS ASTRONOMY)
- solar nebula
- inner planets
- outer planets
- the sun
- planetesimals
Answer:
1. Solar Nebula
2. The Sun
3. Planetesimals
4. Inner planets
5. Outer planets
Explanation:
A star is formed in a molecular cloud of gas and dust, mainly composed of hydrogen and helium. The Nebular Theory establishes, for the formation of the solar system, that the cloud starts to collapse under its own gravity when it receives a shock wave from a near event, for example, a supernova explosion. That results in the cloud breaking in small pieces, and those pieces constitute a possible future star.
Then it begins to accrete and rotate as a consequence of the angular momentum. In the center of that disk when it reaches the necessary temperature and pressure a protostar will born.
Around the star, in this case the Sun, fragments of dust combine until they get a meaningful size (planetesimals). According with chemical distribution on the disk of the future solar system, rocky and iron were closer to the Sun and gasses and ice were in the outer part of disk. That may explain why the inner planets are terrestrial and the outer planets are giant gasses.
does changing position of charges change the magnitude
Answer:
No, they will not change.
Explanation:
Give the scientific word for these 3 words
A magnet produced using an electric current
A machine that converts kinetic energy into electrical energy in a power station
A machine that spins when high-pressure steam is blown at it
4. Calculate the momentum for each scenario:
a. .02 kg mass moving at 300 m/s
b. 2 kg mass moving at 40 m/s
c. 200 kg mass moving at 4 m/s
a) Answer:
Momentum = 6 kgm/s
Explanation:
Momentum = mass × velocity
Given that,
mass = 0.02 kg velocity = 300 m/s
Therefore, momentum = (0.02 × 300)kgm/s
Momentum = 6 kgm/s
b) Answer:
Momentum =80 kgm/s
Explanation:
Momentum = mass × velocity
Given that,
mass = 2 kg velocity = 40 m/s
Therefore, momentum = (40 × 2)kgm/s
Momentum = 80 kgm/s
c) Answer:
Momentum = 800 kgm/s
Explanation:
Momentum = mass × velocity
Given that,
mass = 200 kg velocity = 4 m/s
Therefore, momentum = (200 × 4)kgm/s
Momentum =800 kgm/s
All of the following choices are examples of commonly used assessment methods for body
composition EXCEPT
A. waist to hip ratio
B. bioelectrical impedance analysis
C. the spongy bob technique
D. skinfold measurements this is PE please help mee
Answer:
letter D
Explanation:
sana po makatulong po sa inyo
ANSWER ASAP!!!!!!!!
Southwest Airlines has two mission statements: one for customers and one for _____ .
Answer:
Employees
Explanation:
1) The corporate mission statement of Southwest Airlines states that the airline is focused on the provision of the high quality customer service that will also be given with kindness, a good nature, pride that reflect the essence of the Company
2) The mission statement for the employees is the provision of an equal opportunity and stable work environment that promotes personal development and learning.
Escriba la cantidad que representan los siguientes expresiones, dada en
notación cientifica.
a) 7.1 x 10
6) 2.3 x 103
C) 1.56 10
d) 4. 19. 4. 104
Answer:
Comencemos con la primera:
si tenemos algo como:
7.1*10^n
Simplemente lo que tenemos que hacer es:
si n es positivo, movemos n veces el punto para la derecha, si no tenemos dígitos, completamos con ceros.
si n es negativo, movemos n veces el punto a la izquierda.
a) 7.1*10
aca tenemos n = 1
entonces movemos una vez el punto a la derecha:
7.1*10 = 71. = 71
b) 2.3*10^3
aca n = 3, entonces movemos el punto 3 veces a la derecha:
2.3*10^3 = 23__.
Tenemos dos huecos ahí, los cuales serán completados con ceros, entonces:
2.3*10^3 = 2,300. = 2,300
c) 1.56*10
n = 1, entonces movemos el punto una vez a la derecha:
1.56*10 = 15.6
d) 4.10^4
acá tenemos n = 4
entonces movemos el punto 4 veces a la derecha, recordar que debemos completar con ceros:
4.10^4 = 40,000. = 40,000