SPPMMC TEAM - Quizzes (S/P) - Part 160 | SPPMMC

SPPMMC TEAM - Quizzes (S/P) - Part 160

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1898 quizzes

Showing Quizzes: 10 (1591-1600) [Part -160]

Publisher UID: 3

Publisher Name: SPPMMC TEAM

Publisher Link/Slug: sppmmc-team-3

Date of Joining: 2023-01-26

Q1591. Where did Sattriya dance originated?
Q1591. Where did Sattriya dance originated?

(A) Odisha
(A) Odisha
(B) West Bengal
(B) West Bengal
(C) Uttar Pradesh
(C) Uttar Pradesh
(D) Assam
(D) Assam
Answer: (D) Assam
Answer: (D) Assam
Sattriya dance originated in the 15th century in a monastery in Sattra, Assam. It was a key part of the neo-Vaishnavite movement led by Srimanta Sankardev, who believed in the importance of devoutly chanting the name of God.
Sattriya dance originated in the 15th century in a monastery in Sattra, Assam. It was a key part of the neo-Vaishnavite movement led by Srimanta Sankardev, who believed in the importance of devoutly chanting the name of God.

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2024-03-03

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Q1592. Whose name was Partha in Mahabharata?
Q1592. Whose name was Partha in Mahabharata?

(A) Krishna
(A) Krishna
(B) Yudhishthira
(B) Yudhishthira
(C) Arjuna
(C) Arjuna
(D) Bhima
(D) Bhima
Answer: (C) Arjuna
Answer: (C) Arjuna
In the Hindu epic Mahabharata, Arjuna is also known as Partha and Dhananjaya. Arjuna is a central figure and protagonist in the epic, and is the third of five Pandava brothers, from the lineage of the Kuru.
In the Hindu epic Mahabharata, Arjuna is also known as Partha and Dhananjaya. Arjuna is a central figure and protagonist in the epic, and is the third of five Pandava brothers, from the lineage of the Kuru.

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@719

2024-03-03

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Q1593. What is the lower fixed point of fahrenheit scale?
Q1593. What is the lower fixed point of fahrenheit scale?

(A) 0°F
(A) 0°F
(B) 32°F
(B) 32°F
(C) 180°F
(C) 180°F
(D) 212°F
(D) 212°F
Answer: (B) 32°F
Answer: (B) 32°F
The lower fixed point in Fahrenheit scale is 32 degree and upper fixed point in Fahrenheit scale is 212 degree. The difference between the two is 180, hence number of division is 180.
The lower fixed point in Fahrenheit scale is 32 degree and upper fixed point in Fahrenheit scale is 212 degree. The difference between the two is 180, hence number of division is 180.

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@718

2024-03-03

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Q1594. What is the normal temperature of human body?
Q1594. What is the normal temperature of human body?

(A) 37°C
(A) 37°C
(B) 38°C
(B) 38°C
(C) 97°C
(C) 97°C
(D) 98°C
(D) 98°C
Answer: (A) 37°C
Answer: (A) 37°C
Normal body temperature is considered to be 37°C (98.6°F); however, a wide variation is seen. Among normal individuals, mean daily temperature can differ by 0.5°C (0.9°F), and daily variations can be as much as 0.25 to 0.5°C.
Normal body temperature is considered to be 37°C (98.6°F); however, a wide variation is seen. Among normal individuals, mean daily temperature can differ by 0.5°C (0.9°F), and daily variations can be as much as 0.25 to 0.5°C.

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@717

2024-03-03

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Q1595. Sound waves can't travel through
Q1595. Sound waves can't travel through

(A) Water
(A) Water
(B) Air
(B) Air
(C) Steel
(C) Steel
(D) Vaccum
(D) Vaccum
Answer: (D) Vaccum
Answer: (D) Vaccum
Sound waves cannot travel in a vacuum. It can travel only through a material medium. e.g., solids, liquids and gases.
Sound waves cannot travel in a vacuum. It can travel only through a material medium. e.g., solids, liquids and gases.

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@716

2024-03-03

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Q1596. What is the audible range of frequencies for normal human ears?
Q1596. What is the audible range of frequencies for normal human ears?

(A) 20 Hz to 2000 Hz
(A) 20 Hz to 2000 Hz
(B) 20 Hz to 20,000 Hz
(B) 20 Hz to 20,000 Hz
(C) 200 Hz to 2000 Hz
(C) 200 Hz to 2000 Hz
(D) 200 Hz to 20,000 Hz
(D) 200 Hz to 20,000 Hz
Answer: (B) 20 Hz to 20,000 Hz
Answer: (B) 20 Hz to 20,000 Hz
The audible range of an average human ear lies between 20 Hz to 20,000 Hz. Humans cannot hear sounds having frequency less than 20 Hz and greater than 20,000 Hz.
The audible range of an average human ear lies between 20 Hz to 20,000 Hz. Humans cannot hear sounds having frequency less than 20 Hz and greater than 20,000 Hz.

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@715

2024-03-03

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Q1597. Why the sky appears blue?
Q1597. Why the sky appears blue?

(A) Reflection of light
(A) Reflection of light
(B) Refraction of light
(B) Refraction of light
(C) Dispersion of light
(C) Dispersion of light
(D) Diffraction of light
(D) Diffraction of light
Answer: (C) Dispersion of light
Answer: (C) Dispersion of light
Blue colour of the sky is due to dispersion or scattering of light. The two most common types of matter present in the atmosphere are gaseous nitrogen and oxygen. These particles are most effective in scattering the higher frequency and shorter wavelength portions of the visible light spectrum.
Blue colour of the sky is due to dispersion or scattering of light. The two most common types of matter present in the atmosphere are gaseous nitrogen and oxygen. These particles are most effective in scattering the higher frequency and shorter wavelength portions of the visible light spectrum.

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@714

2024-03-03

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Q1598. Beyond what distance a normal eye can see objects clearly?
Q1598. Beyond what distance a normal eye can see objects clearly?

(A) 20 cm
(A) 20 cm
(B) 30 cm
(B) 30 cm
(C) 25 cm
(C) 25 cm
(D) 35 cm
(D) 35 cm
Answer: (C) 25 cm
Answer: (C) 25 cm
For a clear vision, the image must be on the retina. The image distance is therefore fixed for clear vision and it equals the distance of retina from eye lens. It is about 25 cm for a grown up person. A person can theoretically have clear vision of an object situated at any large distance from the eye.
For a clear vision, the image must be on the retina. The image distance is therefore fixed for clear vision and it equals the distance of retina from eye lens. It is about 25 cm for a grown up person. A person can theoretically have clear vision of an object situated at any large distance from the eye.

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@713

2024-03-03

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Q1599. The speed of light is maximum in
Q1599. The speed of light is maximum in

(A) Glass
(A) Glass
(B) Water
(B) Water
(C) Air
(C) Air
(D) Vaccum
(D) Vaccum
Answer: (D) Vaccum
Answer: (D) Vaccum
The speed of light is maximum in a vacuum. Vacuum is the least dense medium with no obstruction to the path of light. Its refractive index is equal to unity, hence, the speed of light is maximum in a vacuum.
The speed of light is maximum in a vacuum. Vacuum is the least dense medium with no obstruction to the path of light. Its refractive index is equal to unity, hence, the speed of light is maximum in a vacuum.

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@712

2024-03-03

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Q1600. Against whom did Mula Gabharu died fighting with?
Q1600. Against whom did Mula Gabharu died fighting with?

(A) Mir Jumla
(A) Mir Jumla
(B) Mirza Nathan
(B) Mirza Nathan
(C) Det Chung
(C) Det Chung
(D) Turbaq
(D) Turbaq
Answer: (D) Turbaq
Answer: (D) Turbaq
On the fourth day of the war, she saw her husband's murderer, the commander Turbak Khan. Seeing her husband's murderer in the war zone, Nang Mula bravely fought with Turbak Khan. But Turbak Khan was a trained fighter and so he killed Mula Gabharu. After her death, the Ahom soldiers were awakened in new strength.
On the fourth day of the war, she saw her husband's murderer, the commander Turbak Khan. Seeing her husband's murderer in the war zone, Nang Mula bravely fought with Turbak Khan. But Turbak Khan was a trained fighter and so he killed Mula Gabharu. After her death, the Ahom soldiers were awakened in new strength.

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@710

2024-03-03

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