Longest rod that can be placed in a room is nothing but its diagonal.
How do you find the length of the longest rod that can be placed?
We can find the maximum length of the longest rod that can be placed inside the cuboid by using the formula length of diagonal of a cuboid. We know that [{text{Length of diagonal of a cuboid}} = sqrt {{l^2} + {b^2} + {h^2}} ].
What will be maximum length the rod that can be placed in the room of the dimensions 6m 8m 10m?
Longest rod which can be placed is diagonally. So length of longest rod in such a room is: 15m.
What is the length of the longest rod that can be placed in a room of dimensions 10 m 10 m 5 m?
Find the length of the longest pole that can be put in a room of dimensions (10m × 10m × 5m). Therefore, the length of the longest pole that can be put in the room is 15m.
What is the length of the largest rod that can be put in a hall of dimensions 23 m 10 m 10 m?
so longest rod that can be put in a hall = 27 m.
What is the length of the longest rod that can be placed in a room that is 12 m long 9 m broad and 8 m high?
The length of the longest rod that can be placed in the room is 17 m.
What is the length of the longest rod that can be placed in a room which is 6 Metres long 8 Metres broad and 20 Metres high?
question_answer Answers(4)
Longest rod that can be placed in a room is nothing but its diagonal. Longest rod that can be placed in a room is nothing but its diagonal. Thus the length of the longest rod is 17 m.
What will be the length of longest rod that can be placed inside a cuboid?
For a cuboid the longest rod that can be placed inside it is the length of the diagonal. Originally Answered: a room is 10*12*15.
What is the length of the longest rod that can be placed in a room 13m long 24 Metre broad and 18 Metre height?
The length of the longest rod that can be placed in a room of 30 m long, 24 m broad and 18m high is. = √1800=√2×900=30√2 mts.
What is the longest pole that can be put in a room of dimensions L 10cm by 10cm and H 5 cm?
Hence, the longest pole which can be put in a room is 15m.
What is the length of the longest rod that can be fitted in a cubical vessel of edge 10 cm?
Hence, the length of the longest rod that can be fitted in a cubical vessel is 10√3 cm.
How many persons can be accommodated in a hall of length 16 meters?
Given that hall of Length = 16 m, Breadth = 12.5 m, Height = 4.5 m. Therefore, number of men that can be accommodated = 900 / 3.6 = 250.
What is the length of the longest rod that can fit in a cubical vessel of side 10cm?
∴ The length of the longest rod is 19√3 cm.
How long an iron rod can be placed?
Answer Expert Verified
so longest rod that can be placed in the room is along it’s diagonal. =16.062 m (approx.)
What is the length of the largest rod that can be placed in the cylindrical vessel of radius 2.5 inch and height 12 inch?
Thus you can fit in a rod 10*2^0.5 or 14.14 units long.
What is the length of the longest rod of negligible thickness that can fit into a rectangular box of dimensions 9cm * 12cm * 36cm?
The required length of the longest stick is 26 cm.
What is the length of the diagonal of a cuboid having 30 cm long 24 cm broad and 18 cm high?
a) Longest rod that can be placed in a room is nothing but its diagonal. Length of diagonal of a cuboid = meters. Volume of cuboid = 30 × 24 × 18 = 12960 m³.
What is the length of longest stick that can be fitted in a cubical vessel of edge 20cm long?
The length of the edges of the cuboid is 20 cm. The length of the longest stick that can be placed in it is equal to the distance from one corner to the corner on the opposite face that lies diagonally opposite to it. This length is equal to L = `sqrt(20^2 + 20^2 + 20^2)` using the Pythagorean Theorem.
What is the longest distance in a cube?
Longest distance between two points of the cube is when it is the diagonal of the cube. Let the length of the side of the cube be $ a=10cm $ . The longest distance is the diagonal of the cube which is AG from the above figure.
What is the length of diagonals of a cube of side a CM?
Length of body diagonal of a cube = √3 x units.
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