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![Three blocks of masses 2kg, 3kg, and 5 kg are placed in contact as shown in the diagram. A horizontal force of 30 N is applied on the 2kg block. Find the Three blocks of masses 2kg, 3kg, and 5 kg are placed in contact as shown in the diagram. A horizontal force of 30 N is applied on the 2kg block. Find the](https://search-static.byjusweb.com/question-images/toppr_invalid/questions/1479846_1045466_ans_f6a49c245abe4bf1b2ff0c3be37d78f0.jpg)
Three blocks of masses 2kg, 3kg, and 5 kg are placed in contact as shown in the diagram. A horizontal force of 30 N is applied on the 2kg block. Find the
![Let m 1=1 kg m 2=2 kg and m 3=3 kg in figure.Find the accelerations of m1, m2, and m3 . The string from the upper pulley to m 1 is 20 Let m 1=1 kg m 2=2 kg and m 3=3 kg in figure.Find the accelerations of m1, m2, and m3 . The string from the upper pulley to m 1 is 20](https://search-static.byjusweb.com/question-images/byjus/infinitestudent-images/ckeditor_assets/pictures/219472/content_5_28.png)
Let m 1=1 kg m 2=2 kg and m 3=3 kg in figure.Find the accelerations of m1, m2, and m3 . The string from the upper pulley to m 1 is 20
![8. A bar of mass m is held as shown between 4 disks each of mass m' and radius r = 75 mm Determine the acceleration of the bar immediately after it 8. A bar of mass m is held as shown between 4 disks each of mass m' and radius r = 75 mm Determine the acceleration of the bar immediately after it](https://toppr-doubts-media.s3.amazonaws.com/images/1803539/18726386-a027-47aa-9304-6915c275affd.jpg)
8. A bar of mass m is held as shown between 4 disks each of mass m' and radius r = 75 mm Determine the acceleration of the bar immediately after it
![Two blocks of mass = 2 kg and M = 5 kg are in contact on a frictionless table. A horizonatal force F (= 35 N) is applies to m. Find the Two blocks of mass = 2 kg and M = 5 kg are in contact on a frictionless table. A horizonatal force F (= 35 N) is applies to m. Find the](https://learnqa.s3.ap-south-1.amazonaws.com/images/1611295310760633410G88hTjeZKTdgFLHW.png)
Two blocks of mass = 2 kg and M = 5 kg are in contact on a frictionless table. A horizonatal force F (= 35 N) is applies to m. Find the
![Two blocks of masses m1=5 kg and m 2=6 kg are connected by a light string passing over a light frictionless pulley as shown in figure. The mass m 1 is at Two blocks of masses m1=5 kg and m 2=6 kg are connected by a light string passing over a light frictionless pulley as shown in figure. The mass m 1 is at](https://df0b18phdhzpx.cloudfront.net/ckeditor_assets/pictures/911813/original_3.png)
Two blocks of masses m1=5 kg and m 2=6 kg are connected by a light string passing over a light frictionless pulley as shown in figure. The mass m 1 is at
![Two blocks of masses m = 5 kg and M = 10 kg are connected by a string passing over a pulley B as sho - YouTube Two blocks of masses m = 5 kg and M = 10 kg are connected by a string passing over a pulley B as sho - YouTube](https://i.ytimg.com/vi/2Bw65DVJKW0/maxresdefault.jpg)
Two blocks of masses m = 5 kg and M = 10 kg are connected by a string passing over a pulley B as sho - YouTube
![An Atwood's machine consists of two masses m1 and m2 ,which are connected by a massless inelastic cord that passes over a pulley.The pulley has a radius R and a mass M An Atwood's machine consists of two masses m1 and m2 ,which are connected by a massless inelastic cord that passes over a pulley.The pulley has a radius R and a mass M](https://homework.study.com/cimages/multimages/16/nnnnnn946641422738322012.jpg)
An Atwood's machine consists of two masses m1 and m2 ,which are connected by a massless inelastic cord that passes over a pulley.The pulley has a radius R and a mass M
![Two blocks of mass = 2 kg and M = 5 kg are in contact on a frictionless table. A horizonatal - YouTube Two blocks of mass = 2 kg and M = 5 kg are in contact on a frictionless table. A horizonatal - YouTube](https://i.ytimg.com/vi/jsOZFQd0Yb4/maxresdefault.jpg)